Lupron

Short and Long Term Consequences of Lupron for Precocious Puberty

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As a child, at around age 5, I started experiencing severe pain in my legs and back. I had migraines from hell that made me feel as if my head were going to explode. I had hair in places that no five-year-old should and I needed a bra for kindergarten. I looked down on all my peers because I was a good 12 inches taller than most of them. I always had to be the mom when playing house in kindergarten. My parents struggled to find help for me because no doctor could explain why I hurt and felt the way I did. Finally, after being hospitalized for over a week my parents had answers. I was diagnosed with a hormone imbalance. The doctors in the area where I lived had no answers about how to treat me, so I was sent to a specialist in Augusta Georgia. He then called my diagnosis precocious puberty, a hormonal imbalance. After more needles and tests, he decided to start me on Lupron.

I took Lupron as a child from 1989 to 1994 for my hormone imbalance. I received a shot once a month in my thigh and sometimes in my butt cheek. I can remember the burn of the Lupron going into my body like it was yesterday. The injection always took me a week to recover from. I experienced soreness in the injection spot and redness every time I received Lupron. I could not run and play as a child. My legs either hurt or my mind would make me feel as though I had no purpose. From the outside, the Lupron shots were a success. The shots slowed my abnormal hair growth in private places and stopped my breast from growing, but on the inside, where it counts, what was the Lupron doing to me?

After being on the Lupron for half a year, I had lumps in my thighs where I received the injections (which I still have today). One time it crippled my legs, leaving me on crutches for two months when I was 7 years old. Yet still, I guess my doctor felt it would be more beneficial for me to continue my treatment with the Lupron because I received injections for 3 to 4 more years.

While on Lupron, I struggled daily to focus. I had blurred vision. I battled depression and I hurt daily. I couldn’t be active in sports due to my low bone mass and what kid feels like playing ball when her body feels like it’s been beaten with the bat already? By age 11, I finished up my treatment. I saw my doctor a handful of times after and then I was written off as cured, and I did feel good and enjoyed life for a few years.

At age 15, I began to battle depression. I struggled to remember things. I was diagnosed with asthma. My sight was getting worse and I had an eating disorder where I never wanted food due because my stomach felt like someone was squeezing it with all their might. I fainted several times because I was dizzy. I struggled to stand and I would walk holding onto things. My legs, arms, fingers, and toes would tingle and go numb. My doctor at the time seemed to always just prescribe me Lortabs for the pain and never dug any further to figure out why I felt the way I did. At age 17, I overdosed on Lortabs not trying to hurt myself but only trying to find relief from the pain. I didn’t realize that my body couldn’t handle all the medicine I was putting into it. My mom found me in my room and rushed me to the hospital where my stomach was pumped and I had to drink this disguising chalky drink. My pain seemed to decrease shortly after I turned 20. I looked and felt like the average healthy person. I had my first baby at 21 and my second at age 22. I had healthy pregnancies and healthy babies. I had my third baby at age 32 and again I was a healthy mama and had a healthy baby.

For the past two years, however, I have been experiencing a pain that is all too familiar. I feel as though my body and mind are failing me. I cannot pinpoint why all of this is happening to me. I am now 34 years old and experiencing horrific body aches and pains. I’m searching for answers as I struggle to hold my baby and even get out of bed due to the pain I feel. I hurt in all my joints, my back, my neck and I have leg pains that put me on my knees and unable to walk. My feet and ankles swell, my arms, fingers, and toes tingle with pain. I sometimes drop things because I can’t squeeze my fingers together to hold them. I am experiencing night sweats, hot flashes, nausea, and abnormal weight loss. I have dropped 90 pounds in 15 months. My stomach hurts every day and I never feel hungry. I have so many other symptoms, I feel as though I’m falling apart. I am working with my doctor now to try and find answers. I want to find quality in my life again. I want to feel good when I wake up and not have to lay in bed for at least an hour (waiting for pain meds to kick in) before I can move. Most importantly, I want to be able to pick my baby up out of her crib and hold her and not cry because it hurts my body so bad.

I am in the beginning stages of trying to figure out why I feel this way. I have had blood work drown which was good and I have a CT scan this week. It never even crossed my mind that all of this could be the side effects of taking Lupron as a child until I started reading other people’s stories. Please help?? What test do I need to take to help find answers? What meds are helping restore bone mass? What are other past Lupron patients experiencing and what is working to help them find quality in life again? Thanks in advance for your help!

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This story was published originally on June 18, 2018. 

They Say Lupron Is Safe

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In addition to the adverse event of dizziness reported during and post Lupron use, just reading and trying to understand Lupron’s literature can also be dizzying. So much of the research and information about this drug is utterly baffling; some circumstances have been manipulated by slick design, with information hidden or suppressed, other Lupron information can be readily disproved by known facts, and all this is admixed with conflicts of interest. In the process, decades of victims have accumulated and are without any real medical or legal advocacy. All the while, the powers that be have essentially appeared inert.

The contradictions found within Lupron documentation are indeed baffling and Lupron’s history is littered with instances of nefarious machinations. In prior installments of this series, the conflicting information about Lupron’s metabolism has been explored (part 4), as well as addressing the fact that Lupron is categorized as a hazardous, Pregnancy Category X drug (meaning it should be avoided by any woman who is or who may become pregnant), yet Lupron is prescribed to women in IVF, egg donation and surrogacy (part 3).  Since there are numerous other examples of puzzling – just plain wacky (inexplicable and unacceptable) – ‘circumstances’ surrounding Lupron, this final installment will look at a number of these head-scratchers, as well as reviewing some of the more notorious slick maneuvers associated with Lupron. (The other installments in this series were Part 1, Part 2, and Part 5.)

Why has Lupron’s manufacturer made statements that can be proven inaccurate?

Oral Lupron:  No — Yes — Maybe so?

Lupron’s labels and the literature ubiquitously proclaim that Lupron “is not active when given orally” – yet early investigation shows information to the contrary. None other than Andrew Schally, who is responsible for the isolation of the GnRH molecule (allowing the subsequent manufacturing of its analogs), and who won the 1977 Nobel Prize in Medicine for doing so, co-authored a 1975 article on the oral administration of Lupron. Thirteen healthy men were given Lupron (known only chemically, at the time, as “D-Leu-6 des-Gly-NH2-10”) by mouth, and within 45 minutes “the analogue had produced a statistically significant increase in mean plasma LH concentration”, and “the times of maximum LH activity noted … by mouth were not much different from those observed after parenteral injection”.

While the majority of men in this study did not have raised FSH concentrations, the remaining subjects had a significantly different mean change in plasma FSH concentrations “24 hours after the oral dose”. The article notes that “[a]lthough [Lupron] seemed to have little effect on FSH release, the interpretation depends upon how the results are expressed.” Discussion of Lupron’s parenteral effects decades later noted “the lack of long-term suppression of FSH observed in some patients” (American Hospital Formulary Service, Drug Information, 1994; p. 644). So it would appear that both oral and parenteral routes of Lupron have induced similar LH and FSH responses.

Andrew Schally stated 42 years ago that “oral administration [of Lupron] can now be added to the previously established effective methods [of intravenous, subcutaneous, and intramuscular administration].” Yet Lupron’s labels continue to state that it is “not active when given orally”.

Lupron Induces Menopause – NOT

In Lupron brochures for its use in endometriosis, the manufacturer states: “GnRH … acts on the pituitary to stimulate two other hormones, LH and FSH. … When LUPRON DEPOT is administered monthly, production of these hormones is reduced to the very low levels found after menopause” (emphasis mine). Yet, any medical textbook describes menopause as “FSH and LH (mainly FSH) are produced thereafter in large and continuous quantities” (emphasis mine) (‘Textbook of Medical Physiology’, A.C. Guyton.  1981.  6th Edition.  W.B Saunders Co. Philadelphia; p. 1016).

And most astoundingly, the hormonal profile of a menopausal woman – increased FSH/LH, decreased estrogen (“hypergonadotropic hypogonadism”) does not match the hormonal profile of a woman on Lupron – decreased FSH/LH, decreased {sometimes} estrogen (“hypogonadotropic hypogonadism”).  (See ‘Chart 1″ on page 2 here.)  Yet women are repeatedly told Lupron will put them into a temporary “menopause”.

Endometriosis Clinical Trials’ Data versus Claim in Lupron’s Label

Lupron’s female labels state the drug’s hypoestrogenic effect “is reversible on discontinuation of therapy”. However, an independent analysis of the endometriosis clinical trials’ raw data conducted during a product liability litigation revealed “62.5% of study subjects had failed to return to baseline ovarian function one year after stopping Lupron.” (Issue discussed in further detail below.)

Lupron-induced Impotence 

Initial 1980s clinical trials for FDA approval of Lupron for use in palliative treatment of prostate cancer found that 2 out of 98 subjects experienced the adverse event of impotence. More than a decade later, it was reported that Lupron “strongly suppresses erectile function and sexual activity” and “sexual desire, sexual interest and sexual intercourse were totally annulled.”  Large scale studies have revealed “80%” of subjects using GnRHas reported being impotent, and a “267% increase in impotence was observed after one year of treatment”

A decrease in sex drive (reported by both sexes) and impotence are such well-known, expected, adverse effects of Lupron that the drug has for some time been used (court ordered at times) as ‘treatment’ for sex offenders (see here, here, and here).

It should be found curious that what has become accepted as a near-universal adverse event to Lupron (impotence) was claimed, in the initial clinical trials, to affect a mere “2 out of 98” subjects.

Infamous Fraudulent Marketing Schemes and Unlawful Off-label Promotion of Lupron

There is quite a history of Lupron being unlawfully promoted for off-label indications, including the company receiving “Notices of Adverse Findings” from the FDA about the company’s Lupron symposiums (deemed ‘indoctrinations‘ by the FDA).

In 2001, Lupron’s manufacturer paid $875 million, the then-highest criminal and civil fine in U.S. history, for its fraudulent marketing scheme to promote sales of Lupron, involving violations of the False Claims Act, 31 U.S.C. §§ 3729.  The landmark case highlighted the company’s monetary incentive schemes to physicians to boost Lupron sales. Internal confidential company memos detailed how urologists could earn $105,011.40 annually by prescribing Lupron to just 65 patients.  The U.S. government’s investigation revealed that the company provided many sales incentives, such as products, cash prizes, and trips, including a vacation referred to as the “Excalibur” – and the “Excalibur party was awarded annually to the top 30% of the [] sales force. …  At times in the 1990s, the annual budget for the Excalibur party exceeded $4,000,000” (see page 9 here).

More recent ideation can be gleaned from anonymous postings in a pharmaceutical ‘sales rep chat room’;  i.e., a few noteworthy 2010 posts state: “ABBOTT PAYS MILLIONS UNDER THE TABLE SO DOCS USE LUPRON” (emphasis in original) (posted 3/27/10 @ 7:45 PM);  and “the docs know who has buttered their bread, and we [Abbott] got very deep pockets” (posted 3/27/10 @ 9:41 AM)

Why was the preservative in daily Lupron given only to humans, and not given to the “study rats”?

The daily formulation of Lupron is prescribed to both the pediatric and adult population, and was the very first FDA approval Lupron received, in 1985.  This initial, approved formulation contains the preservative “benzyl alcohol”.  But curiously, the animal toxicology studies required for Lupron’s initial FDA approval were not done using Lupron and benzyl alcohol, but were done using Lupron and “normal saline” (NDA 19-010).  Shouldn’t these animal toxicology studies reflect the exact injection intended for humans?

The National Institute for Occupational Safety and Health (NIOSH) lists pages of toxicity data for benzyl alcohol, while the Material Safety Data Sheet (MSDS) for benzyl alcohol identifies that there is “no information available” for numerous areas (such as teratogenicity, neurotoxicity, reproductive effects – See ‘Section 11’ here). Why were rats spared the exposure to benzyl alcohol in their Lupron injections, when humans were and are exposed to the benzyl alcohol day after day in their daily Lupron injections?

Funny Business with Bones

In this discussion, it is important to note that human bones contain 2 different types of bone – cortical (or compact) bone and trabecular (or cancellous or spongy) bone (see here and here).

While there are studies which claim no adverse effect of Lupron/GnRHas on the bones of treated children (i.e., here), other published reports on treated children note leuprolide/GnRHas “may have an adverse effect upon bone health“. As early as 1991, “a small but significant decrease in bone mass” was noted in a small Italian study using another GnRH analog (triptorelin) in children with precocious puberty. Another small Italian study in 1995 using leuprolide to treat precocious puberty found a “reduction of trabecular bone mass”. In a small Taiwanese follow-up study of girls treated with either leuprolide or triptorelin, “45% of patients had lumbar bone mineral density less than 1 SD below that of normal young Taipei adults”, evidencing “45% of patients had decreased bone accretion during therapy“. And recently a small study in Turkey using leuprolide in children concluded “GnRHas may have an adverse effect on bone health” perhaps via an impact upon vitamin D levels.

As early as 1991, in gynecological uses of GnRHas, evidence indicated that there was little or no change in cortical bone density, however “[t]he great majority of studies of trabecular bone show a significant reduction in bone mass in both spine and distal radius during 6 months of agonist therapy … between 5-10% of baseline”. Another early study in treatment of endometriosis found “bone loss induced by GnRH analogs may be associated with adverse effects on cancellous [trabecular] microstructure which are unlikely to be reversed following cessation of therapy.”  (An increased rate of bone loss in men receiving Lupron and other GnRHas has also been reported, i.e. here.)

It is important to note that most of the bone mineral testing done using Lupron or other GnRHas in adults have been done using DEXA (Dual-energy X-ray absorptiometry) or DPA (Dual-photon absorptiometry) scans; and there have been GnRHa studies using DEXA in precocious puberty bone mineral density assessments. Another study, using triptorelin in precocious puberty subjects, evaluated bone mineral density by assessment with DEXA and concluded that while bone mineral density was significantly lower at discontinuation of GnRHa, later DEXA scans showed values “not significantly different from controls.”  (But what would QCT [quantitated computerized tomography] scans have revealed?)

Bone density scans such as DEXA/DXA and DPA assess both cortical and trabecular bone – and studies using DEXA and DPA scans have revealed adverse effects from GnRHas  (i.e. bone mineral density “decreased significantly [6 months: -6.0%, 12 months: -8.0%]”).  However, QCT scans assess only trabecular bone and are most effective at detecting “the significant trabecular bone loss of the vertebrae and hip [associated] with GnRH agonists”.  (See also here.)

GnRHas appear to have “a significant negative impact on trabecular bone mass.  … Initial studies [in women] with dual-photon absorptiometry [DPA] were unable to detect any appreciable bone loss with GnRH agonists.  … Quantitated computerized tomography [QCT] always shows significant trabecular bone loss of the vertebrae and hip with GnRH agonists. Depot preparations appear to produce more marked loss than daily intranasal sprays.”  (emphasis mine).

Early investigations of leuprolide and buserelin’s effect upon cortical and trabecular bone mineral content in women with endometriosis identified that “[b]ecause QCT of the spine measures only the trabecular bone … any significant change affecting mainly the trabecular bone is more readily detected earlier by the QCT”, and “[b]ecause DPA measures both trabecular and cortical bone, a significant reduction in true trabecular bone mass actually may be diluted … thus giving a lack of significant change.”

In further illustration of this point, note that Lupron’s label for endometriosis from 1991 through 1996 stated “after 6 months the vertebral trabecular bone density as measured by QCT was decreased by an average of 13.5%”, however in 1996 Lupron’s endometriosis label was changed to read the “vertebral bone density as measured by DEXA was decreased by an average of 3.9%” (1991 – 1995 Physicians Desk Reference, Lupron Depot 3.75 mg).  By using data only from DEXA scans, the significant bone density loss previously detected by QCT was eliminated.  Current Lupron Depot 3.75 mg label states “vertebral bone density as measured by dual energy x-ray absorptiometry (DEXA) decreased by an average of 3.2%”.   By continuing to use data only from DEXA scans, the “significant” bone density loss detectable by QCT is ensured to remain undetected.

In a 2000 study of bone markers and bone mineral density during growth hormone treatment in children with growth hormone deficiency, it was noted that future research should be carried out “by the direct measurement of bone density using quantitative computer tomography [QCT]. Mineralization is only one facet of bone strength, however; other important components (e.g. bone structure and geometry) should be addressed in future paediatric studies.”  (See also here.)  A PubMed literature search of ‘QCT bone pediatric GnRHa’ produced zero results for humans, but one result was found for a report on rats  (in which bone mineral density was “significantly decreased in GnRHa-treated rats” and concluded “a delay in the onset of sexual maturation may cause prolonged, possibly irreversible defect in bone mineralization”).

In a 1995 study, bone biopsies and microscopic analyses (histomorphometric analysis) were done on women treated with GnRHas and the “results suggest that bone loss induced by GnRH analogs may be associated with adverse effects on cancellous [trabecular] microstructure which are unlikely to be reversed following cessation of therapy.”  Microscopic scan photographs of a 28 year old woman treated with GnRHa for 6 months show “severe disruption of the cancellous microstructure in the post-treatment biopsy” – see photo on page 6 here.

It would appear that without a body of data specific for QCT results, appropriate conclusions cannot be reached about the effects of GnRHas upon the type of bone (trabecular) that is most impacted by GnRHas. All the above points to the need to assess Lupron/GnRHas effect upon trabecular bone through QCT scans – and it would seem that to do otherwise would hinder data collection.

Yet many Lupron studies and follow-up studies have been designed using non-QCT bone density scans, and often it is wrist (and not hip or vertebral) scans that are performed. A perverse analogy comes to mind, relating to the heinous act of sick individuals who hide dangerous items (i.e., needles, razor blades) into the center of Halloween candy – and the community safeguards that have been enacted to X-Ray the candy in order to assess and ensure safety (i.e., here and here): What if these community resources were not offering to X-Ray the candy but instead were offering to merely photograph the candy in attempts to ‘assess and ensure safety’?

Tricks in the Courtroom Yield Treats for Lupron’s Manufacturer

The only lawsuit to make it to trial (in 2011), the case of Karin Klein v. TAP, Abbott, stemmed from Karin’s prescription of Lupron Depot 3.75 mg in 2005 as a 17 year old for endometriosis – and resulted in the development of (among others) a thyroid disorder. Pre-2005 Lupron Depot 3.75 mg labels, and post-2005 Lupron Depot 3.75 mg labels (domestic and foreign), warned of thyroid adverse events, but the company removed this warning for the 2005 label – the year of Karin’s prescription.

At trial, Karin was prevented from presenting to the jury any pre-2005 or post-2005 Lupron Depot 3.75 mg labels acknowledging thyroid adverse events, and the trial judge only allowed the jury to consider the 2005 label which lacked the warning. Lupron manufacturer’s principal medical expert, Dr. Richard Blackwell, under oath falsely stated “the thyroid gland … There are no receptors for GnRH. So there is no basic key on the thyroid gland for Lupron. Therefore, it is absolutely biologically impossible for Lupron to affect the thyroid gland. No textbook, no article has ever supported that contention. It’s simply biologically impossible” (emphasis mine) – see page 20 here.

Of note, Dr. Richard Blackwell has a history of receiving monies to study Lupron in women – see ‘Birmingham Center’ in this ‘Multicenter Lupron Study Group’. Also note that the latter study’s lead investigator, Dr. Andrew Friedman, was found guilty of fabricating and falsifying approximately 80% of data in 4 Lupron studies.

When the Klein jury heard Lupron’s expert medical witness proclaim it was “biologically impossible” for Lupron to affect the thyroid gland, they could not possibly know this physician was committing perjury. (Perjury is a felony, and if convicted involves fines and/or imprisonment up to 5 years – see here and here). If only the jury had known that evidence of this misinformation was just a keyboard away – a simple PubMed search (up to, and including, 2005) reveals the following published medical journal articles that evidence it is absolutely biologically possible for Lupron to affect the thyroid gland’:

“The first report to demonstrate the association of thyroid disorder with leuprolide [Lupron] injections” (2000), “Possible induction of Grave’s disease & painless thyroiditis by GnRHa’s” (2003), “The role of leuprolide acetate therapy in triggering auto-immune thyroiditis” (2005).

Serving as an “expert”, this is information that must certainly have been known, yet as a ‘hired gun’ for the drug company, the existence of this information was emphatically denied – leading the jury to believe it was impossible for Lupron to cause Karin’s thyroid disorder, and resulted in the jury finding in favor of the drug company. And thus the queue of Lupron litigation that was forming in anticipation of a Klein victory suddenly evaporated in the face of unmitigated, unethical, unlawful, unseemly, unchallenged ‘expert’ machinations.

To quote a ‘friend of the court’ brief filed on behalf of Klein by the organization “Consumer Attorneys of California”:

“[Klein was] entirely shackled in the evidence she was allowed to present. It is particularly galling to have qualified (and expensive) expert witnesses on hand to testify [on behalf of Klein], only for them to be shut down before the jury and precluded from offering competing expert opinions. The pattern shown by the record is deeply disturbing. Virtually every discovery and evidentiary ruling, and other orders of significance, went for one party [Lupron’s manufacturer]. Klein was not entitled to a perfect trial, but at least an evenhanded one. Such a one-sided proceeding was not the fair trial our system demands” (emphasis mine) – see page 6 here.

Klein ultimately petitioned the U.S. Supreme Court which refused to hear the case – great news for Lupron’s manufacturer, terrible news for young, disabled Klein, and chilling repercussions for society at large and Lupron victims in particular. Apparently, perjury under oath by paid medical experts, grossly misleading a jury, and the denial of a right to fair trial are issues deemed not significant by the U.S. Supreme Court.  For further information on the Klein matter, see here, here and here.

Obscuring the Drug’s Hazardous Status

Lupron is categorized by the FDA as a “Pregnancy Category X drug” (page 20, “leuprolide” – meaning any woman who is or who may become pregnant should avoid exposure), yet it became a staple of ovulation induction medication regimens in infertility, egg donation, and surrogacy. Lupron’s labels do state there is “a potential hazard to a fetus” (and oddly the most wording is found within the male Lupron Depot label). Lupron is classified by the National Institute for Occupational Safety and Health (NIOSH) as a “hazardous drug” (page 20, “leuprolide”), however nowhere in any of Lupron’s labels is there identification that Lupron is classified as a “hazardous drug” (i.e., pediatric, female, male);  nor does the label advise that as a result of this classification by NIOSH, special requirements apply for the handling, preparation, and administration of “hazardous drugs” (see here and here).

Around 2008, curious changes took place within Lupron labels (multiple indications) whereby it appears that cleverly, as if hiding evidence in plain sight, the “References” section of the labels now contained 4 citations – yet there are no corresponding footnotes within the label’s text for any one of these 4 citations. These 4 new “References” are as follows: (#1) NIOSH Alert, Preventing occupational exposures to antineoplastic and other hazardous drugs in healthcare settings; 2004. U.S. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, NIOSH Publication No. 2004-165;  (#2) 1999 OSHA Technical Manual on Hazardous Drugs; (#3) 2006 ASHP guidelines on hazardous drugs; and (#4) 2005 Oncology Nursing guidelines on hazardous drugs (see pages 6, 14, 25, 36, and 47). Again, most curiously, not one of these 4 citations/”References” — or the information the citation source contains — were referred to, mentioned, identified, or discussed, at all, within the Lupron labels.

And presently, revised labels no longer contain the 4 citations mentioned above (see pediatric, female, male); and the labels continue to omit any identification of Lupron as a “hazardous drug”.

Measures Undertaken to Silence Critics

The Cardiac Stent Internal Memo

When Lupron’s manufacturer was under investigation for potential fraud related to its cardiac stents, numerous critical articles were written by a Baltimore Sun news columnist – and the drug company apparently targeted this columnist. As reported in a 2010 Senate Committee on Finance (examining a “clear example of potential fraud, waste and abuse”), “one Abbott official suggested that local connections or the “Philly mob” should intervene to silence Baltimore Sun columnist Jay Hancock for his coverage of the scandal, saying “someone needs to take this writer outside and kick his ass!”

Not a ‘seal of approval’ – the Hidden Lupron Endometriosis Clinical Trials’ Data

To the best of my knowledge, no one other than Dr. Redwine has independently analyzed the thousands of pages of raw data from the 1980s clinical trials for Lupron’s initial use in adult females (Lupron Depot 3.75 mg, for endometriosis). The conclusion from this independent analysis was that fraudulent data and misleading outcomes were found within these trials’ raw data. In one example, the raw data showed that “62.5%” of subjects had failed to return to baseline ovarian function one year after stop of study – yet Lupron’s label states Lupron’s hypoestrogenic effect “is reversible on discontinuation of drug therapy.” (For further information, see Part 3 of this series; the FDA’s response to Dr. Redwine’s request for an investigation into this serious matter; and here.)

It certainty appears that Lupron’s manufacturer intends to keep this raw data hidden from public view. Years ago the company sought and obtained a court-ordered seal on the raw data from these endometriosis clinical trials (see page 6 here), ensuring that this data will remain concealed from the public and any inquiring eyes.

Several years ago, when my assistance was sought by a Lupron victim whose attorney had retired in the middle of her case, the opportunity was used to file a motion to request the Court remove this seal (see “Reply Motion … and a Request that Court Seal on Defendants’ Clinical Trial Data Be Lifted”, Document # 135, Case 1:11-cv-04860, filed 2-20-14,  Paulsen v. Abbott, Takeda, TAP, US District Court, Northern District of Illinois, Eastern Division). No response from the Court was ever forthcoming from this request to unseal the raw data. The Paulsen case remains pending (see also here). A request to Lupron’s manufacturer to lift their seal also was unsuccessful (personal correspondence, 2015).

Suppression of Lupron’s Risks in Physician Continuing Medical Education

Renowned endometriosis surgeon Dr. Redwine became an outspoken critic of the use of Lupron in gynecology, and his opinion was reinforced by more than 700 women in his surgical practice who relayed harm from prior Lupron exposure. Dr. Redwine had most honorably refused the Lupron sales representative’s offer of $100,000 if he would prescribe Lupron to his patients. In 1994, Dr. Redwine wrote a ‘letter to editor’ in a fertility journal stating

“Inclusion of patients with a poor response to GnRHa therapy has not always occurred in outcome analysis in the published medical literature” (Letters:  Pros and Cons of “Add-Back” Therapy. 1994. Fertility and Sterility, 61:2:404).

According to Dr. Redwine’s expert medical testimony in the Klein case (in which he describes Lupron as being “unsafe and harmful in addition to being ineffective”), the following incident from the 1990s is described: Dr. Redwine was scheduled to be a speaker at a continuing medical education forum but was prevented from doing so by Lupron’s manufacturer because of his opposition to the use of Lupron. The drug manufacturer “interfered in the continuing medical education of physicians in order to enhance the sales of Lupron Depot” (see other excerpts of Dr. Redwine’s testimony here).

Peculiar Omission of Lupron/GnRHa Data in Studies of Health Disorders in Women With Endometriosis

Bone Density Loss

In 1989, a leading Lupron/GnRHa investigator in precocious puberty and gynecology concluded in a study that reduced bone mass (“significantly decreased cortical and trabecular bone mass”) was associated with the disease endometriosis. However, another study which found contrasting findings reported that “women with endometriosis do not have reduced bone density … One explanation for the difference between the results of this study and those of Comite et al. is that they included women who previously had been treated with GnRH agonists and these agonists are associated with bone loss.” (For further elaboration on these studies, see here.)

In my opinion, claims that the disease of endometriosis is associated with bone density loss, while appearing to deliberately omit the endometriosis patients’ common history of prior use of Lupron (which is known to causes bone density loss), is a treacherous concept and a slick maneuver — seeming to shield and manipulate iatrogenic, adverse drug effects into an ‘endometriosis-disease-related’ (and non-tort) phenomenon. This is something that deserves attention.

Autoimmune and Endocrine Disorders, Fibromyalgia, Chronic Fatigue Syndrome and Atopic Diseases

A 2002 publication (“High rates of autoimmune and endocrine disorders, fibromyalgia, chronic fatigue syndrome and atopic diseases among women with endometriosis: a survey analysis”) also failed to make any mention of Lupron or other GnRHas as treatment for endometriosis. This survey analysis, co-authored by the President of the Endometriosis Association (which has received hundreds of thousands of dollars from Lupron and other GnRHa manufacturers) also failed to identify the reported adverse events to Lupron (the most commonly prescribed medical therapy for endometriosis) – which have included autoimmune and endocrine disorders, fibromyalgia-like syndrome, chronic fatigue syndrome, and atopic diseases.

Yet, the survey upon which this analysis drew its conclusion does contain reference to Lupron/GnRHa use in the survey participants. In fact, of the 4000 surveys tabulated, 59% of survey respondents reported a history of Lupron/GnRHa use (‘Key Results from North American Membership Survey’, Endometriosis Association, 1998.  Presented at VI World Congress on Endometriosis). Given that the majority of the endometriosis respondents reported a history of Lupron/GnRHa use, how could this fact and highly significant confounding factor be ignored?

In my opinion, claims that the disease of endometriosis is associated with autoimmune and endocrine disorders, fibromyalgia, chronic fatigue syndrome and atopic diseases, while appearing to deliberately omit the endometriosis patients’ common history of prior use of Lupron (which is known to cause autoimmune and endocrine disorders, fibromyalgia-like symptoms, chronic fatigue syndrome and atopic diseases), is a treacherous concept and a slick maneuver — seeming to shield and manipulate iatrogenic, adverse drug effects into an ‘endometriosis-disease-related’ (and non-tort) phenomenon.  This is something that deserves attention.

Coronary Heart Disease

Upon initial FDA approval for men in 1985, Lupron was alleged to have ‘insignificant cardiac adverse events’. (For further details on cardiac adverse events provided to and withheld from FDA by the manufacturer prior to approval, see page 4 here.) Subsequently, Lupron became the most prescribed GnRH analog. Decades later, a large study would show that the use of Lupron (and other GnRH analogs) for androgen deprivation therapy in management of prostate cancer was associated with a “10 – 50% increase” in the risks of coronary heart disease, myocardial infarction and sudden cardiac death (as well as fractures, strokes, and diabetes).

As a result of this and similar studies, the FDA issued a warning in 2010 concerning an increased risk of developing cardiovascular problems in men prescribed Lupron/GnRHas. The FDA acknowledged that there are no studies evaluating the cardiovascular risks of Lupron/GnRHas in children or women.  (To the best of my knowledge, there remains today no studies looking at Lupron/GnRHas cardiovascular risks in pediatric or female use; however there is presently an FDA “specific review” of nervous system and psychiatric events in children, and the NIH is in the midst of a study of long-term outcomes in transgender youth’s use of Lupron/GnRHas, evaluating “physiological and psychosocial impact, as well as safety”.)

In 2016, a cardiology journal published a study based on survey responses from the large-scale ‘Nurses’ Health Study II’ database, and this study associated endometriosis with an increased risk of coronary heart disease. Can you guess which drug was not queried in this ‘Nurses’ Health Study II’ survey? This survey sought information on the woman’s use of alcohol, cigarettes, post-menopausal hormones, oral contraceptives, multivitamins, analgesics (including acetaminophen, aspirin, ibuprofen, indometacin, naproxen, nabumetone, ketoprofen, celecoxib, rofecoxib, and valdecoxib), but omitted any questions about the woman’s exposure to the most frequently prescribed treatment for endometriosis – Lupron/GnRHas.

My response to this inexcusable omission of Lupron/GnRHa exposure data was published in the journal – see “Article’s conclusions seriously flawed without data on Lupron/GnRHa use”. The authors of the study responded with inaccurate information on Lupron (see May 11, 2016 response), prompting me to submit a reply addressing this incorrect information. The journal failed to publish this corrective information, therefore I’ve published my reply on my own website.

In my opinion, claims that the disease of endometriosis is associated with coronary heart disease, while appearing to deliberately omit the endometriosis patients’ common history of  prior use of Lupron (which is known to cause numerous cardiovascular adverse effects in women – see ‘Cardiovascular Effects’, Left column here; and here), is a treacherous concept and a slick maneuver — seeming to shield and manipulate iatrogenic, adverse drug effects into an ‘endometriosis-disease-related’ (and non-tort) phenomenon. This trend is very troubling, and is something that deserves significant attention and investigation.

Conclusions

The above information, as well as information found within this series, the Kaiser Report, and other media sources (see here) should be more than sufficient indication that numerous investigations into the effects of Lupron (and all GnRHas) are warranted.

That there are large numbers of Lupron victims cannot be disputed – one need only have computer access to verify this sad fact. (For links to a large sampling of Lupron reviews, stories, posts and comments in various medication and legal websites, see here.) The petitions to Congress requesting an investigation into Lupron appear to have fallen on deaf ears; one petition started in 2009 states more than 21,000 messages have been sent to date. (Links to multiple petitions, in the U.S. and France, containing more Lupron horror stories, can be found here.)  There are more than ample numbers of Lupron victims complaining, the problem has been identified – what is needed is action.

Investigative reporters, the FDA, Congress, public health authorities, and the medical and legal community need to do their job and focus multiple spotlights on all the aspects of this drug, its effects, its associated harms, and the lack of medicolegal advocacy for its victims.

In my opinion, this drug should have been withdrawn from the market a long time ago – just how many more victims will it take?

Someone needs to be held responsible for all the suffering, and the ruined health, and careers, and lives of so many Lupron victims and their families. The devastation that Lupron has wrought ought to be criminal. People need to go to jail.

Or perhaps, they should just get a Lupron injection themselves.

Share your Story

If you have a Lupron story, please consider sharing it on Hormones Matter. Leave a comment and we will get back to you.

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More people than ever are reading Hormones Matter, a testament to the need for independent voices in health and medicine. We are not funded and accept limited advertising. Unlike many health sites, we don’t force you to purchase a subscription. We believe health information should be open to all. If you read Hormones Matter, like it, please help support it. Contribute now.

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Image by Peter Timmerhues from Pixabay.

This article was published originally on May 31, 2017. 

Rest in peace Lynne Millican, July 2024. 

Endometriosis, Lupron, and Fluoroquinolones: A Recipe for Autonomic Disintegration

17.6K views

I am sharing my health story in the hopes that someone can offer assistance. I had stage 4 endometriosis for years before it was diagnosed. On top of that, I have had reactions in antibiotics, including fluoroquinolones and was given Lupron. Each drug destroyed more of my health. I am currently bedridden, in pain and unable to function. I have lost hearing in my right ear, have Sjögren’s syndrome, Hashimoto’s, adrenal insufficiency, hypokalemia, electrolyte imbalances, IBS, MCS, Ocular migraines and recently, have been diagnosed with dysautonomia. My body feels like it is disintegrating. We believe that everything is related, that I have mitochondrial issues at the root of these illnesses, but to date, no one has been able to put the pieces together. With the help of my husband, I have put together my health history. We are looking for input.

Early Warning Signs

1985: late summer, I was hit by car while riding bicycle. I was banged up really bad and definitely had head injury.

1998: started feeling off, not sure yet at this point still very young

2001: birth of my first daughter. I developed severe preeclampsia and had an emergency C-section three days later. My daughter was 6 weeks early and spent two weeks in the intensive care unit.

2002-2003: I felt off at times and did go to GP on several occasions. I had pain shot to my back. I am not sure what it was but it took the pain away. I also kept saying just didn’t feel well. I felt off but nothing was found.

2005: the birth of our son and second C-section. I was on bed rest last three months of the pregnancy. I was given an antibiotic for some reason. I do not remember. I had a reaction to it and turned orange. The doctor gave me something else to counter the effects of the antibiotic and my color returned to normal. It was a normal birth.

2006-2007: I was still in pain. The pain moved to the abdominal area. I developed bowel issues, had and ovarian cyst. I saw gastrointestinal physician who did scans and found a thickening of the lining of uterus. He referred us back to the gynecologist who did D&C in 2007 and said I had very minuscule amount of endometriosis.

2008- 2009: still seeing OB for pelvic pain, also seeing multiple other doctors including a neurologist, internist, and surgeon. Everyone kept saying same thing: ‘Your fine. It’s in your head.” They wanted to put me on mood enhancers. I tried lorazepam and felt terrible on it, so I stopped after two weeks.

The Lupron Disaster

September 2009: I started doing Lupron injections from gynecologist. She was very forceful with me and stated “if you don’t do these injections I can’t help you.” She said it was the only way they could know if the pain was below the belly or above. I agreed reluctantly, but at that time still thought my doctors had their best interests in me. After the first injection, my doctor called at home on a Saturday to see how I was feeling. I responded I was already in pain, but it has now quadrupled and I feel like an old person. Every bone in my body hurt.  I couldn’t believe the amount of pain I was in. She said I had to get all 6 injections if it were to be able to help me.

At that time, my husband because of work only went to a few of my appointments. I soon began to have him go with me because I felt I was getting the run around.

Hearing Loss Post-Lupron: Let’s Add Fluoroquinolones and Steroids to the Mix

2010: the last injection was in February. I began to lose my hair. I had memory loss, stabbing and taser sensations in head. I was still getting pains in abdomen area. In September, I went in for ear pain. The ENT said it looked like a scratch, so he gave me fluoroquinolone drops. I had also taken other fluoroquinolone antibiotics for yeast infections earlier in the year. In October, I had sudden sensorineural hearing loss in the right ear. Within an hour, I called my husband told him my hearing was acting weird. I went totally deaf in my right ear, 8 months after my last injection of Lupron. My local ENT immediately gave me a shot of cortisone (I was able to still walk and drive). It all went crazy when my ENT put me on a large dose of oral prednisone for 14 days. Everything in my body went nuts. I was rolling out of bed, holding on to the walls to help me walk. I totally lost my balance. The oral prednisone really did a number on my head.  I had done genetic testing through 23andMe and our doctor upload the report to a reader called Opus23. It said that I should never take prednisone.

I went to Stanford Medical and saw top ENT and received three cortisone injections into the right ear drum. Had a 50/50 chance for recovery and for me it didn’t work. I left Stanford with them telling me they still don’t have all the answers yet when it comes to sudden hearing loss. They thought it was some sort of viral infection that attacked the ear drum and deafened the ear. After the hearing loss. I had three ER visits. This is when I first started having low potassium. I felt like I was about to pass out. I was still driving at this time, I didn’t know what to think.

2011 -2012: I began seeing a naturopathic physician. I also did a trip down to LA to the House Ear clinic to see some specialist regarding her hearing loss. They couldn’t help either. I left my current OB and started seeing the physician who was filling in. I ended up doing a partial hysterectomy with her after finding a growth at one of my numerous ER visits that year. I was still working and a full-time mommy, while dealing with massive pain in my lower abdomen and now starting to deal with multiple autoimmune diseases including: Sjögren’s syndrome, Hashimoto’s, adrenal insufficiency. In addition, a lot of my minerals and vitamins were off at that time. I suspect this was beginning of my dysautonomia. I also began seeing an endometriosis specialist at Stanford.

Was it Endometriosis All Along?

2013: On January 31st, I had laparoscopic surgery to clear the endometriosis. I had stage 4 endometriosis which took my appendix. The physician said my body was littered with endometriosis. He even checked up in my heart cavity to make sure no endometriosis had made its way up to the heart. Before the surgery, I was talking with the anesthesiologist and telling him about my hearing loss and my low potassium. That is when he stopped the surgery and I had to take a stress test. We left and went to Palo Alto heart center and did a stress test I fasted for 24 hours and then they had me go do a stress test on a treadmill on an empty stomach. I did it no problem and went back to the surgery center. That is when they did the laparoscopic surgery and found stage 4 endometriosis.

Also, I want to point out that we didn’t find out until much later that during the course of the endometriosis surgery, they had left surgical clips and suturing material in me. We discovered this at one of our many ER visits. The OR report from our doctor says nothing about these things being left inside of me. I believe this is an additional pain I have on top of the other complications in my abdomen area. Nothing like having a wad of surgical clips throughout my abdomen and suturing material left inside my already struggling body. We are trying to get these removed, but no surgeon will take my case.

Mitochondrial Damage and Autonomic Disintegration

April that year, I had another ER visit. I lost all bodily functions. My potassium was severely low. I would go to the ER in 2013 many more times.

2014: I had to stop working totally this year. I tried to come back and assist a friend of mine just being her loan officer assistant but the neurological pains and crazy foggy brain I was experiencing was just too much. Something that was so easy for me years earlier, I was now having trouble just doing basic loan officer task at this point. Strange neurological pains were becoming a normal. I stopped driving this year also. It was just getting to scary for me to continue. I continued to go to ER for multiple visits

2014- 2017: I went to the ER over 50 times for various reasons: heart pains, chest pains, shooting stabbing pains throughout my entire body. I almost always had low potassium. Over these years, we spent our life savings and pulled out a $100,000 from my husband’s 401k, which we spent on various treatment plans. We have traveled as far away to Philadelphia looking for answers. We even gutted our house when we were told at one time it must be mold that is killing me. We lived in a borrowed 5th wheel while my husband put our house back together. There have been numerous days where I felt I couldn’t go on one more minute. I felt like death was right around the corner.

In 2015 one of our doctors after reading my genetic report thought he found a breakthrough with a patient that had hypokalemia and Sjogren’s syndrome. He provided me a copy of the study they did on a girl with very similar symptoms to mine. He had our local compounding pharmacy mix a solution called Shohl’s. I took the solution after my doctor assured me I would be ok. Well, I tried it almost within in minutes I was convulsing and went into tachycardia. My husband called 911 ambulance took me to the ER. In route to hospital paramedic gave me nitroglycerin. I was monitored for several hours and eventually went home. During this time had been staying at my mother-in-law’s house for about 6 months because we weren’t sure at this point if something in our house was making me so sick. This was a very stressful time for me at this point we have no idea what’s going on and what’s causing this.

We did have some relief in 2017 when our local naturopathic doctor was able to get a new treatment called UBL or ultraviolet blood irradiation. I had about 6 months where I was feeling off, but having somewhat good days where I could semi-function. My viral count has been very high during these years, EBV, CMV, HHV6, etc., and possibly Lyme. If I push myself, I will crash for hours sometimes days until I start to get any strength back just to walk to the restroom.

Next, I went in for a completely different treatment called prolotherapy. I got one injection into my shoulder, and just like that my body reverted back to like I was before the UBL treatments. I was worse again. It was very strange my body reacted like that.

2016: I was diagnosed with dysautonomia by another specialist, an electrophysiologist cardiologist. I have several of the sub symptoms of dysautonomia including: postural orthostatic tachycardia syndrome (POTS), neurocardiogenic syncope (NCS), dizziness, vertigo, fainting, fast, slow or irregular heartbeat, chest pain, low blood pressure, problems with gastrointestinal system, nausea, disturbances in visual field, weakness, breathing difficulties, mood swings, anxiety, fatigue and intolerance to exercise, migraines, disrupted sleep patterns, temperature regulation problems, concentration and memory problem, poor appetite and overactive sense, especially when exposed to noise and light. We also met with a dozen or so other specialists. None were able to help.

I have multiple tears in both hips worse on right side. Multiple torn areas in the pelvic floor also.  Surgery is out of pocket and we have not been able to fly back and have surgery to repair those tears and hips yet as of 2019.

2018- 2019: I went to the ER only three times in 2018 and so far only three times in 2019. We try not to go because we know they never find much. I only go to be reassured that my vitals are still strong when I’m feeling at my worst. I have been denied disability. I had a neurocardiogenic seizure in the courtroom with judge and she still denied me. I have one last appeal that I am waiting on. I am not very hopeful that will go through. At this point, the dysautonomia, fibromyalgia/ chronic neurological pain and the low potassium are what are the hardest things for me to deal with. As of right now, we are concentrating on rebuilding my mitochondrial cells in hoping I can reverse some or most of the damage I think was a direct cause from the Lupron injections.

I was also on bio-identical progesterone creme from around 2012 to 2018. Then, in middle of 2018, my ND wanted me to try the bio-identical that went off the lunar moon cycle. It was a separate estrogen and progesterone creme in a plastic push-up type applicator. She said she was looking into it and thought it might help. Well, I tried it and had terrible side effects, I think most likely from the adding in the estrogen. After second month, I was having terrible stomach pains. I looked four months pregnant and was begging my husband to take me to the ER. The pain was worst at the part of the cycle where I took the estrogen only. I felt like she was going to die. In the past, I was always high in estrogen. I am not sure, but as soon as I introduced in that estrogen, it threw me out of whack terribly. I stopped that in November of 2018.

This is where I am now: in pain, unable to work or care for my children. My husband is my full-time caregiver. He takes care of our kids, shops cooks, does everything I used to do plus works his full-time job. I couldn’t do this without him. The doctors have run out answers. I believe it was the endometriosis all along, made infinitely worse by Lupron and the various rounds of antibiotics, including fluoroquinolones. The only way I can maintain my potassium levels is through huge daily doses. Otherwise, I slide into hypokalemia. We have a standing order at our local hospital to measure my potassium whenever I suspect it is low. We have sought treatment from dozens of specialists and spent our entire life savings and I am no better than I was 10 years ago. In fact, I am worse. Over the last 8 years, we have been supplementing with vitamins and minerals to try and repair the damage done to my mitochondria by the Lupron and the fluoroquinolones. Some things help and others do not. We are at wits end and do not know where to turn for help. Below is a list of supplements that I currently take.

Supplement List

Upon waking:

  • 600mg potassium,
  • 1 1/4 grain Naturethroid

Breakfast:

  • 3 200mg potassium. Daily total 1200mg
  • 1 Chewable Hydroxo B-12
  • 1 COQ10 100MG
  • 1 Biotin 10,000mcg chewable
  • 1 Chromium picolinate 200mcg chewable
  • 1 Desiccated adrenal from Standard process
  • 1 magnesium malate 100mg
  • 1 Thiamin 50mg
  • 1 Mitocore – it is like a multiple vitamin
  • 5 grams vitamin C, mixed with juice, plus I add Lugol’s iodine, colloidal silver, lymph drain and trace mineral mix.

Mid-morning:

  • 3 200mg potassium again – daily total 1800mg
  • B12 shot, a 100iu syringe

Lunch:

  • 3 200mg potassium, daily total 2400mg
  • 1 vitamin A 10.000iu
  • 1 vitamin K 90mcg
  • 1 Lugol’s iodine plus
  • 1 nettle leaf cap 400mg
  • 1 Monolaurin 600mg
  • 2 L-lysine 1000mg
  • 1 thiamin 50mg
  • 1 magnesium malate 100mg
  • 1 more Hydroxo B12

Diner:

  • 3 200mg potassium, daily total 3000mg
  • 1 thiamin 50mg
  • 1 milk thistle 150mg
  • 2 L-lysine 1000mg
  • 1 DHEA 25mg
  • 1 magnolia bark 450mg
  • 1 Digestive enzymes
  • 1 Dr. Berg Hair formula.
  • 1 L-carnitine 250mg

We Need Your Help

More people than ever are reading Hormones Matter, a testament to the need for independent voices in health and medicine. We are not funded and accept limited advertising. Unlike many health sites, we don’t force you to purchase a subscription. We believe health information should be open to all. If you read Hormones Matter, like it, please help support it. Contribute now.

Yes, I would like to support Hormones Matter.

Image: Maximum Speed of Raphael’s Madonna, Salvador Dali, 1954.

Posted originally on Aug 20, 2019.

Tank Estradiol and Lose Metabolic Flexibility: Pitfalls of Lupron and Oophorectomy

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Over the last several weeks, I have been looking at the role of estradiol in mitochondrial health. In the first post Hormones, Hysterectomy and the Aging Brain, we learned that estradiol depletion wreaks havoc on brain mitochondria turning them into misshapen donuts and blobs. Digging a little deeper, the next post (Lupron, Estradiol and the Mitochondria) pondered the connection between estradiol-depleting drugs such as Lupron, other Lupron-like drugs, and the devastating side effects that often follow suit. Could Lupron-mediated mitochondrial damage be at the root of these side effects? Quite possibly?  A question that remains is how. In this post, I will be digging even deeper into the role of estradiol in mitochondrial functioning, especially its role in something called metabolic flexibility.

A note of caution, while I focus on estradiol, the mitochondria, and what happens to health when we remove estradiol pharmaceutically via Lupron or surgically via oophorectomy, it is important to remember that estradiol is not the only hormone synthesized in the ovaries nor are the ovaries the only hormone-producing tissues. Moreover, the chemical castration induced by Lupron and other medications or via ovary removal disrupts and diminishes the synthesis of a myriad of hormones. Estradiol is simply where most of the research is focused, and so, it is where I too must focus, at least for the time being.

Steroid Hormones and Metabolic Flexibility: A Critical Factor in Post Lupron and Post Oophorectomy Ill Health

Steroid hormones regulate metabolic flexibility at the level of the mitochondria. Estradiol, the most frequently studied among the steroid hormones, plays a pivotal role in determining how food fuel is converted into cellular fuel or ATP.  When we eliminate estradiol with medications such as Lupron and other GnRH agonists or antagonists, or when we remove a woman’s ovaries, depleting her primary source for estrogen synthesis, metabolic flexibility diminishes significantly. With the lack of metabolic flexibility comes several health issues, some noticeable, like weight gain, and others less noticeable, at least initially, like cardiac and neurodegenerative diseases. A common component of each of these conditions is mitochondrial dysfunction. Mitochondrial dysfunction can be initiated and accumulated via a number of mechanisms and over time, so estradiol is not the only variable, but it is a key factor that is often ignored.

Mitochondria

Mitochondria are the cellular powerhouses that consume oxygen and transform the foods we eat into a currency that cells can use (ATP) to perform all of the intricate tasks needed for survival and health. Mitochondria are also the site of steroidogenesis (steroid synthesis), immune signaling, and all sorts of other functions that determine cellular life and death. When you think about it, how well the mitochondria perform these tasks affects health at every level of organismal physiology. Without the appropriate amount of mitochondrial energy/ ATP, cell function becomes deranged, and ultimately, grinds to a halt. When that happens, disease is imminent. Indeed, genetic perturbations of mitochondrial function are some of the most devastating diseases known to medicine.

One has to wonder, what happens when we perturb mitochondrial function from the outside in – via toxicant exposure or by eliminating critical hormones or other co-factors such as nutrients that are necessary to mitochondrial operations? Worse yet, what if an individual with unrecognized genetic defects in mitochondrial functioning faces additional mitotoxicant exposures; what then? Complex, multi-system disease – that’s what. I would argue that mitochondrial dysfunction represents the final common pathway, a convergence point, connecting an array of seemingly disparate disease processes. Mitochondrial metabolism, and specifically, metabolic flexibility, may be at the heart of the derangement, with estradiol, and likely other hormones, in the driver’s seat.

Metabolic Flexibility: Adapt and Survive

When we think of stress and flexibility in general terms, it is easy to recognize that the more flexible one is in his/her behaviors or coping mechanisms, the easier it is for one to respond to, and survive stressors. Flexibility means that options exist for when everything hits the fan. Imagine if there were no options or if you had to respond to each and every stressful event in your life using exactly the same behaviors or response patterns. You would not get very far. The same holds true for cell behavior, and more specifically, mitochondrial behavior. The mitochondria need options to respond to the differing needs of the cells that they supply with energy. If those options become limited in any way, the mitochondria become less effective. They produce less energy, scavenge fewer oxidants (toxicants), and when stressors present, cannot easily adapt. In fact, the more inflexible the mitochondria are forced to become, the less likely they, and the cells, tissues, organs, and organism within which they reside, will survive. Estradiol is integral to mitochondrial flexibility. Remove the estradiol and the mitochondria become less metabolically flexible and less able to respond to the demands of a changing environment.

Estradiol Equals Increased Mitochondrial Efficiency and Decreased ROS

Estradiol maintains metabolic flexibility via two important mechanisms: increased mitochondrial efficiency and ROS management. With the former, estradiol regulates metabolic flexibility by altering the expression of genes that control the enzymes within the fuel conversion pathways. It is a complex algorithm of responses, with some proteins upregulated and others downregulated. The net result, however, favors increased efficiency in ATP production by maximizing metabolic flexibility or adaptability to the environment.

With the latter, estradiol, along with progesterone, manage the clean-up tasks inherent to any energy production process. In effect, estradiol manages ROS both on the front end and the back end of mitochondrial ATP production. On the front end, increased metabolic efficiency and flexibility equals fewer ROS byproducts. On the backend, estradiol cleans up the byproducts of processing -ROS – and tempers the damage these byproducts can cause.

Estradiol, Pyruvate, and ATP

Of particular interest to our work here at Hormones Matter, estradiol upregulates a set of enzymes called the pyruvate dehydrogenase complex, PDC. The PDC, responsible for converting glucose into pyruvate, is the first step in the long process that nets multiple units of mitochondrial ATP. The PDC is key to carbohydrate metabolism and more recently has been linked to fatty acid metabolism, making this enzyme complex central to mitochondrial energy production. Diminished PDC derails mitochondrial functioning, producing serious diseases. Children born with genetic pyruvate dehydrogenase deficiency suffer serious neurological consequences and rarely live to adulthood.

Importantly, the PDC (like all of the enzymes within these cascades) is highly dependent upon nutrient co-factors to function properly. Thiamine and magnesium, are critical to the PDC complex. Since PDC function demands thiamine, children and adults with thiamine deficiency also suffer significant ill-health, ranging from fatigue and muscle pain, to disturbed cognitive function, disrupted autonomic function affecting multiple organs, psychosis, and even death if not identified. Thiamine deficiency is most well known as a disease associated with chronic alcoholism but has recently begun re-emerging in non-alcoholic populations relative to medication and vaccine reactions.  Many medications and environmental variables deplete thiamine and magnesium, diminishing mitochondrial function significantly, by way of pyruvate.

Along with nutrient co-factors, estradiol is critical for pyruvate. Estradiol upregulates the expression of the enzymes that make up the PDC (in the brain). If estradiol is reduced or blocked, mitochondrial ATP production will take a hit. If estradiol is blocked in an already nutrient-depleted woman, the first step in mitochondrial fuel conversion would take a double hit. One can imagine the consequences.

In light of the direct role that thiamine, magnesium, and other nutrients play in the cascade of reactions required to produce ATP, can we maximize mitochondrial functioning with nutrients to compensate for the mitochondrial damage or deficiencies likely to occur post oophorectomy or as a result of GnRH agonist or antagonist drugs, like Lupron? I can find no research on the subject, but it is certainly a topic to explore given the millions of women already suffering from the mitochondrial damage induced by Lupron and/or pre-menopausal ovary removal. Even without the necessary research, correcting nutrient deficiencies and dietary issues should be undertaken for general health.

Another question in need of exploration, if we maximize mitochondrial functioning, does that then increase steroidogenesis in other endocrine glands? A section of the adrenal glands called the zona reticularus, for example, produces a complement of hormones similar to those of the ovaries. In postmenopausal women androgens, precursors for estradiol, produced by the adrenals account for a large percentage of total estradiol production. Could we take advantage of that to help stabilize circulating hormones?

Finally, beyond the nutrient requirements for mitochondrial ATP production, enzymes throughout the body, even those involved in post-mitochondrial steroid metabolism, require nutrient co-factors to function properly. Could we maximize those enzymes for more efficient steroid metabolism to net sufficient estradiol to maintain mitochondrial function?

What about Natural Declines in Estradiol?

It is not clear how menstrual cycle changes in estradiol affect mitochondrial functioning or how the postpartum decline in pregnancy hormones affects mitochondria. One would suspect there are compensatory reactions to prevent damage, but this has not been investigated. In natural menopause, however, researchers have noted that some form of compensation occurs as estradiol declines and, at least for a time, and in rodents, mitochondria maintain efficient production of ATP. In contrast, no such changes are noted with premature menopause or oophorectomy.

Also not investigated sufficiently, is the impact of chronic synthetic estrogen exposure on mitochondrial functioning. In other words, what are the effects of oral contraceptives, HRT, and the growing list of environmental endocrine disruptors, on mitochondrial ATP production? Since these compounds bind to estrogen receptors and displace the endogenous estrogens like estradiol, some evidence suggests endogenous production of estradiol is reduced. Do the mitochondria respond also by downregulating estrogen receptors or by some other mechanism?  Short-term, animal research suggests that supplementing 17B estradiol post oophorectomy reduces mitochondrial damage. In research in humans, where synthetic estrogens are used, results are less clear and longer-term studies do not exist beyond the broad brush strokes of epidemiology.

Metabolic Flexibility and Tissue Type

One of the more interesting aspects of estradiol’s role in metabolic flexibility is that it is site or tissue-specific and may point to novel therapeutic opportunities. Since different cell types, in different parts of the body, prefer different fuels for power to survive, when we eliminate estradiol from the equation, mitochondria from different tissues or organs respond differently to the lack of flexibility. Perhaps, we can utilize the information about fuel requirements to design diets that compensate for diminished metabolic flexibility.

Heart Cells. I’ve written about this research previously, not fully understanding the implications. Estradiol allows cardiomyocytes (heart cells) to switch from their preferred fuel of fatty acids to glucose during stressors such as heart attacks (and theoretically during any stressor like exercise). That ability to switch fuel types is protective and allows the cells to survive and heal. It may explain why women are more susceptible to heart damage post-menopause when endogenous estradiol declines. This may also point to a pathway for post oophorectomy and post Lupron declines in normal heart function.

Brain Health. Declining estradiol affects brain mitochondria differently. As I noted in a previous post, without estradiol, brain mitochondria become progressively less functional and misshapen. These structural changes impair mitochondrial ATP production. Unlike the heart, however, the brain prefers glucose as its primary fuel source. Estradiol appears to enhance glucose uptake from the periphery and across the blood-brain barrier. When estradiol is absent, brain glucose uptake diminishes significantly (in rodent studies), leaving the brain perpetually starved for glucose.

We know from brain cancer research, that with declining brain glucose, secondary fuels can kick in, but only when the mitochondria have sufficient flexibility to switch. For example, mitochondrial fuel flexibility is critical to battling brain tumors. Under conditions of stress and when brain glucose concentrations are low, healthy mitochondria can readily transition to ketone bodies for energy, at least in vivo. The transition from glucose to ketone bodies is believed to be an evolutionary adaptation to food deprivation allowing the survival of healthy cells during severe shifts in the nutritional environment. Estradiol appears to be key in maintaining that flexibility.

Weight Gain and Fat Accumulation. Post-menopausal, post-hysterectomy, and oophorectomy weight gain are well established research findings. Anecdotal complaints of Lupron weight gain are also common. These findings may be related to derangements in metabolic flexibility mediated by the relationship between estradiol and mitochondrial functioning. The increased lipid or fat accumulation in skeletal muscle though associated with impaired insulin-stimulated glucose metabolism may be related to the reduced capacity to adjust to a changing fuel environment. More specifically, weight gain may represent a declining ability to utilize fats effectively as a mitochondrial fuel source, possibly via a derangement in a mitochondrial channel responsible for shuttling fats and cholesterol into the mitochondria for processing. When the mitochondria become less flexible, a channel called the TSPO, shuts down, disallowing fats that would normally be shuttled into the mitochondria and processed for ATP (and steroid hormones), from entering. Instead, they are stored peripherally in adipocytes. I wrote about this in detail here: It’s All about the Diet: Obesity and Mitochondrial Dysfunction. It is possible in estradiol-depleted women that TSPO downregulation is a compensatory reaction to diminished metabolic flexibility.

It is also conceivable that the lack of brain glucose, as discussed above, leads to overeating and, more specifically, cravings for sugary foods. This would be a logical compensatory reaction to bring more fuel to the brain; one likely meant only for the short term and that when held chronically begins the cascade of other metabolic reactions known as obesity, diabetes, and heart disease. Perhaps, just as fat storage becomes a survival mechanism when mitochondria can longer process it effectively, the craving for sugar in estradiol-deprived women is also a survival mechanism.

Finally, adipocytes can synthesize estradiol. It is conceivable that in response to declining estradiol concentrations, the body stores fat to produce more estradiol.

Final Thoughts

Central to mitochondrial dysfunction, whether by genetic predisposition or environmental influence, is the inability to efficiently produce ATP (the fuel that all cells need to survive) and to effectively manage the by-products of fuel production and other toxicants. Estradiol plays a huge role in both of these processes. Eliminate estradiol and mitochondrial functioning becomes less efficient and less flexible initiating cascades of chronic and life-altering conditions. This suggests the ready application of medications like Lupron that deplete estradiol or the prophylactic removal of women’s ovaries is misguided at best, and dangerous at worst.

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This post was published originally on Hormones Matter on February 11, 2015. 

Recovering From Medically Induced Chronic Illness

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Unexplained or Medically Induced Chronic Illness?

Unexplained. That’s what doctors call chronic illness. Conventional medicine says, ‘learn to live with it.’ Rather than offer a true treatment or cure for these debilitating conditions, they suppress the immune system and offer more drugs for depression and anxiety – none of which are effective. I’m here to tell you that common wisdom is wrong. I know, because my own lucky story proves we can heal from chronic illness. Pharmaceutical insults created my disabling illnesses  – Chronic Fatigue, Fibromyalgia, estrogen dominance, adrenal fatigue, POTS, Graves’ Disease, Hashimoto’s, Bell’s Palsy, infertility and more. I share my journey to offer hope. The doctors were wrong. I have recovered and am once again, healthy.

Early Clues and Pharmaceutical Insults

My childhood had some clues – things I now know predict chronic illness. My lymph glands swelled when I was otherwise healthy. Mosquito bites turned into angry 3” welts. Childhood bunions and hyper-mobile joints suggested leaky gut. All these issues correlate with chronic illness and, seen in hindsight, hint at the difficulties that awaited me in adulthood.

My immune system may have been awry from the start, but pharmaceuticals tipped the scale toward chronic illness. As a teen, I took birth control pills for heavy periods and cramps. When vague symptoms appeared in my early twenties, I asked about pill side effects. The gynecologist laughed at the idea, but I trusted my gut and finally stopped the pill. I felt better in some ways but developed new symptoms.  Sleep became difficult. I was hypersensitive to noise and light and struggled with unquenchable thirst.  The doctor suggested my extreme thirst stemmed from hot weather and salty foods. This explanation didn’t add up to me, but I was young and so was the internet. I had no resources to connect the dots. Today, I recognize that 10 years of hormonal birth control created nutrient deficiencies (folic acid, vitamins B2, B6, B12, C, and E, along with magnesium, selenium and zinc) while also raising my risk for future autoimmune disease.

Recurrent UTIs, Fluoroquinolones, and New Onset Graves’ Disease

A few years later, recurrent urinary tract infections led to many doses of the fluoroquinolone antibiotic, Cipro. Cipro now carries a black box warning and is known to induce mitochondrial damage. My mid twenties also brought pre and post-menstrual spotting and bleeding for 10 days each month. Doctors did nothing for my hormonal imbalance but diagnosed Graves’ disease (hyperthyroidism). Everything about me sped up. Food went right through my system. I was moody. My mind was manic at times. I was unable to rest and yet physically exhausted from a constantly racing heart.

The doctor said Graves’ disease was easy – just destroy the thyroid and take hormone replacement pills for the rest of my life. I didn’t have a medical degree, but this treatment (RAI, radiation to kill the thyroid) just didn’t make sense. Graves’ disease is not thyroid disease. It is autoimmune dysfunction, where antibodies overstimulate a helpless thyroid.

As I studied my options, I learned that RAI could exacerbate autoimmune illness and many patients feel worse after treatment. It was surprising to find that the US was the only Western country to recommend RAI for women of childbearing age. Armed with this knowledge, I declined RAI and opted for medication. The endocrinologist mocked my decision. I was in my 20s and standing up to him was hard, but it marked a turning point and spurred me to take responsibility for my own health, rather than blindly trusting doctors. Recent reports suggest RAI treatment increases future cancer risks. My Graves’ disease eventually stabilized on medication, although I never felt really well. I pushed for answers for my continued illness, but doctors refused to test my sex or adrenal hormones.

IVF and More Damage to My Health

Things turned south again when I was unable to conceive. The supposed best fertility clinic in Washington, DC could not find a cause for my infertility. I’ll save that story for another day, but the short version involved a few years of torment and four failed IVF attempts. The fertility drugs and the stress worsened my overall health considerably.

Our last try at pregnancy was with a specialist who practiced functional medicine. Labs and charting uncovered a clear progesterone imbalance, and also explained my spotting. This simple diagnosis was completely missed by the conventional fertility clinic. A brief trial of progesterone cream resulted in two naturally conceived, healthy pregnancies. Isn’t it remarkable that several years and over $100,000 failed to produce a baby with IVF and $20 of progesterone cream on my wrist did the trick? This could be a cautionary tale about profit motive in modern medicine, but that, too, is a topic for another day.

Years of Conventional Medicine: Thyroid Damage, Autonomic Dysfunction, and Profound Fatigue

I weaned off thyroid medications and felt fairly well after my babies, but my system took a big hit when life brought an international relocation. The move was intensely stressful and my health sunk after we landed half a world away. I had no energy, gained weight, and lived in a fog. The tropical heat and humidity of Southeast Asia felt like a personalized form of torture.

Perhaps the stress of our move left me vulnerable to the reappearance of autoimmune and adrenal dysfunction, as my next diagnosis was Hashimoto’s Disease and adrenal fatigue. Doctors ordered functional medicine tests (hair, organic acids, stool, saliva cortisol and hormones) that identified nutrient imbalances, but their treatment ideas fell short. Despite replacement hormones and supplements by the handful, I remained very sick, with profound exhaustion, brain fog, sleep disruption, pain, and terribly imbalanced sex hormones.

Taking Matters Into My Own Hands

If setbacks have a bright side, it is in the drive to get better. I started studying when my doctors ran out of ideas to treat my illness. Fibromyalgia was the best description of my pain, but I knew conventional medicine offered no help for this condition. I dug into the topic and found the work of Dr. John C. Lowe, who used T3 thyroid hormone for fibromyalgia, and Paul Robinson, creator of CT3M, the circadian method for using T3. CT3M and high daily dose of progesterone cream improved my quality of life in the short term. Near daily bleeding eventually regulated back into a normal cycle and my adrenal function improved greatly.

Postural Orthostatic Tachycardia Syndrome (POTS) was the next bump, bringing a very high heart rate, very low blood pressure, heat intolerance, and extreme sweating on the lightest activity. By this time, I didn’t even ask the doctor for help. My research pointed to salt and potassium, and so I drank the adrenal cocktail and salt water daily. POTS symptoms vanished quickly with this easy strategy, as did the nocturnal polyuria that plagued me for many years.

I steadied after this time. I was not well but functional, despite some major life stressors, including another international move and a child’s health crisis. Even though I managed the daily basics, things like house guests, travel, or anything physically taxing required several days to a week of recuperation.

The Next Step: Addressing Nutrient Deficiencies

The next step in my recovery came thanks to a B12 protocol that includes co-factor nutrients, developed by Dr. Gregory Russell-Jones. Addressing the deficiencies connected to B12 helped and things progressed well until I had a disastrous reaction after eating mussels, which I hoped would raise iron levels. I vomited for hours and stayed in bed for days. I kept up the B12 protocol, but just couldn’t recover. Largely bedridden, and napping 4 hours at a stretch, I got up in the evening only to drive to a restaurant dinner, too exhausted to prepare food or deal with dishes.

Debilitating exhaustion lasted for a month, and then two, with no relief. It was an awful time, but hitting rock bottom proved a blessing in disguise, as desperation turned me back to research. Slowly, I pushed through brain fog and started to review studies on chronic fatigue and fibromyalgia. This led me to a promising Italian study using thiamine for these conditions.

Studying thiamine, it seemed plausible that the allergic reaction to mussels drained my B1 reserves, making it impossible to recover. Inspired by the research, I started on plain B1 at very high doses. To my surprise, I felt better right away. The first dose boosted my energy and mental clarity.

I continued to learn about B1’s benefits, thanks to this website and the text by Drs. Marrs and Lonsdale.  Two weeks went by and thiamine HCL seemed less effective, so I switched to lipothiamine and allithiamine, the forms recommended in Thiamine Deficiency Disease, Dysautonomia, and High Calorie Malnutrition. WOW. What a difference! Virtually overnight, my gears began to turn, and I felt better with each new day. In a single month, I went from bedridden to functioning well 2 out of every 3 days. I had ideas, I had energy, and I could DO things. The setback days were mild and disappeared entirely after 2 months on thiamine.

At the 2 month mark, I had to travel for a family emergency. My pre-thiamine self would have needed at least a week of rest following this kind of trip, and I expected pain and fatigue as I stepped off the plane. But to my great surprise, I felt well! I remember walking through the airport late that evening and thinking it felt amazing to stretch my legs. Maybe that sounds like an ordinary feeling, but years of chronic fatigue and fibromyalgia conditioned my body to stop, to sit, whenever possible. It was entirely novel to FEEL GOOD while moving! The next day came and I did not collapse, I did not require days to recover and was able to carry on like a normal person. It was a remarkable change in an unbelievably short time.

Recovery From Conventional Medicine’s Ills Came Down to Thiamine

Getting better feels miraculous, but it’s not. The real credit for my recovery goes to experts like Dr. Marrs and Dr. Lonsdale who spread the word about thiamine. Despite years of illness and dead ends, I believed I could heal and I kept trying. Tenacity eventually paid off when posts on this site helped connect the dots between my symptoms and thiamine deficiency. More than anything, my recovery is a story of tremendous luck, as I finally landed upon the single nutrient my body needed most.

The difference between my “before thiamine” and “after thiamine” self is beyond what I can describe.  Birth control, Cipro, and Lupron created nutrient imbalances and damaged my mitochondria, leading to multiple forms of chronic illness in the years between my 20s and 40s. Replacing thiamine made recovery possible by providing the fuel my damaged cells so badly needed. At this writing, I am 7 months into high dose thiamine and continue to improve. I have not experienced any form of setback, regardless the stressors. My energy feels close to normal, the pain is resolving, and brain fog is a thing of the past. My sense of humor, creativity and mental functioning are all on the upswing. I owe thanks to the real scientists who dare to challenge wrong-headed ideas of conventional medicine, and who provide hope for these so-called hopeless conditions. My wish is that this story will do the same for someone else.

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More people than ever are reading Hormones Matter, a testament to the need for independent voices in health and medicine. We are not funded and accept limited advertising. Unlike many health sites, we don’t force you to purchase a subscription. We believe health information should be open to all. If you read Hormones Matter, like it, please help support it. Contribute now.

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This article was published originally on February 6, 2020. 

Lupron, Estradiol, and the Mitochondria: A Pathway to Adverse Reactions

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Leuprolide, more commonly known as Lupron, is the GnRH agonist prescribed for endometriosis, uterine fibroids, cysts, undiagnosed pelvic pain, precocious puberty, during infertility treatments, to treat some cancers, and a host of other off-label uses. It induces a chemical castration in both women and men. In women, Lupron stops menstruation and ovulation and crashes endogenous estradiol synthesis rapidly and completely, inducing menopause and menopause-associated symptoms like hot flashes, sweats and osteoporosis, to name but a few. In men, where it is used as a treatment for prostate cancer, it prevents the synthesis of testosterone, pharmacologically castrating its users and evoking a similar constellation of symptoms.

Lupron for Endometriosis: Questionable Research

Lupron’s widespread use for pain-related, female reproductive disorders, such as endometriosis or fibroids is not well supported, with little research indicating its efficacy in reducing pain and no research delineating its effects on disease progression. Conversely, evidence of safety issues have long been recognized, especially within the patient communities where reports of chronic and life-altering side effects are common. We have many case reports on our site alone. Although, class-action and marketing lawsuits have arisen, Lupron continues to be mis-prescribed regularly to diagnose or treat pelvic pain disorders like endometriosis, generating over $700 million in revenue in 2010 and 2011 for the manufacturers and an array of serious and chronic health issue for its recipients.

The reported side effects of Lupron are staggering both in the breadth of physiological systems affected and the depth of symptom severity experienced (a partial list). Indeed, everything from the brain and nervous system to the musculature, skeletal, gastrointestinal and cardiac systems are affected by Lupron, sometimes irreversibly. This is in addition to  thyroid, gallbladder and pancreatic side effects. How can one drug evoke so many seemingly disparate side effects? Is it possible that the magic of chemical castration is not as safe as we were led to believe; and that hormones regulate a myriad of functions beyond reproduction? It is.

Beyond Reproduction and Reproductive Disease

A major fallacy in medical science, and indeed medical research, is the total compartmentalization of physiological systems and by association an insoluble marriage of hormones to their respective reproductive organs, functions, and gender. Lupron, and drugs like it, were developed based upon this fallacy; that somehow suppressing estradiol and the other endogenous estrogens would affect solely the reproductive system. If only human physiology were that simple.

Hormones, even those inappropriately designated sex hormones, like estradiol and testosterone, regulate all manner of physiological adaptations in every tissue and organ in the body and they do so in conjunction with other hormones and by decidedly non-linear trajectories. That is, the dose-response functions are curvilinear where both too little and too much of a particular hormone can evoke serious negative consequences in body systems totally unrelated to reproduction. Chemical and surgical castration would fall into the ‘too little’ category.

Hormone Receptors are Ubiquitous

Hormones mediate these reactions via hormone receptors. Estrogen and androgen receptors are located throughout the brain and the nervous system, on the heart, in GI system, in fat cells, in immune cells, in muscle, the pancreas, the gallbladder, the liver,  everywhere. When hormones bind to these receptors, whether they are membrane bound, nuclear, or other types, the hormone-receptor complex activates or deactivates what are called signal transduction pathways, essentially message lines. Those messaging lines tell the cell to do something. Too much or too little of any one type of hormone sends mixed messages, skewing cell behavior just slightly at first and when there are only small changes in hormone concentration, but with more chronic or more severe hormone changes, the signals become increasingly more deranged and the compensatory reactions, meant only for short term, become more exaggerated and self-perpetuating. This is where problems emerge. Even if estradiol or more appropriately, estrogens (there are many estrogens) feed endometriosis, tanking estradiol concentrations is dangerous and sets into motion complex reactions that we are only now beginning to understand.

Hormones Influence Everything

Since the hormones and receptors are broadly located throughout the body, it doesn’t take a genius to figure out that if we kill off one or more hormones completely, as Lupron does with estradiol, there are going to be negative effects globally, and they are likely to be pretty serious. So, even a surface level evaluation of the safety of drug like Lupron, would suggest a strong possibility of negative outcomes in regions of the body not associated with reproductive function. And with just a little bit of endocrinology under one’s belt, it should be clear that negative outcomes would compound over time, as additional reactions meant to compensate for short term changes in hormone concentrations, become increasingly entrenched and self-perpetuating, and in many cases, increasingly damaging to the health of the cells – but it isn’t. Despite the range of serious side effects, Lupron is a commonly and cavalierly prescribed drug and newer versions of Lupron like drugs are expected to take the market by storm.

Estradiol Is Critical to Human Health

While the pharmacological mechanism of action for Lupron and drugs like it is clear, they override pituitary control of the tropic hormones that signal the ovaries or testes to synthesize new hormones, how these drugs induce the array of side effects, many of them long term and even permanent, has not been explored as seriously as it should be. Certainly, one can hypothesize the effects of estradiol elimination on different systems based upon receptor distribution within each tissue and the signaling pathways therewith, but the effects are diverse and sometimes contradictory or highly tissue specific. One has to wonder if there might be a final common pathway by which the elimination of estradiol could disrupt multiple physiological systems in a predictably discriminate manner. Indeed, there might be.

Estradiol Regulates Mitochondrial Function: Mitochondria Regulate Everything Else

If you’ve read any of our articles over the last year, you’re aware that we have become increasingly interested in mitochondria, particularly how drugs and nutrients or nutrient deficiencies, impact mitochondrial functioning. Mitochondria take nutrients from food we eat and convert them to the biochemical energy required to power cellular life – ATP. Without appropriate cellular energy all sorts of things go wrong. Energy is fundamental to life and so functioning ATP pathways are critical for cellular and organismal health (and so is proper nutrition!). A number of disease states emerge when the mitochondria are damaged or inefficient at producing ATP, from chronic fatigue, muscle wasting and autonomic system dysregulation to name but a few. Estradiol, and likely other hormones, (most of the research focuses on estradiol), influences mitochondrial functioning and the production of ATP via a number of mechanisms.

Estradiol Is Needed for the Production of ATP

Though not a component of what is called the citric acid or TCA cycle or the electron transport chain (also called the mitochondrial respiratory chain), estradiol appears to be intimately involved in up – and down-regulating the enzymes and other proteins within those energy production cycles. Estradiol directly and indirectly modifies the types fuel used to produce ATP (glucose, fatty acids or proteins) and impacts the efficiency and flexibility with which ATP is produced. Essentially, estradiol impacts the substrate inputs and keeps the cogs in electron transport chain cycles moving. When estradiol is eliminated, fuel sources shift (by tissue) and those cogs, called complexes, begin to slow, become less efficient and send off more damage signals (reactive oxygen species – ROS) than can be effectively cleaned up. Since functioning mitochondria and sufficient ATP are required for cellular health in all cells, where energy demands are greatest, symptoms emerge: the brain and nervous system, the  heart, the GI system, muscles, and bone formation/turnover.

In the brain, we see serious cognitive deficits and derangement of mood and perception with damaged mitochondria relative to estradiol elimination. We also see autonomic instability that impacts mood (flipping between depression and anxiety) but also heart rhythm and balance.

In the heart, the estradiol directly impacts mitochondrial fuel preferences and availability by regulating cardiac glucose and fatty acid metabolism. Without estradiol, the machinery within the mitochondria are not as flexible in their ability to switch between glucose, fat or proteins for precursor fuels to make ATP. The lack of flexibility, particularly during other physiological stressors, leads to impaired cardiac functioning and increased inflammation in affected tissues.

Bone formation is particularly hard hit as estradiol is required bone growth, maturation and turnover. Estradiol deficiency leads to increased osteoclast formation and enhanced bone resorption – destruction of bone or osteoporosis. Proper bone formation is also highly dependent upon vitamin D concentrations. Vitamin D deficiency leads to bone loss. Vitamin D activates estradiol synthesis, while estradiol activates vitamin D receptors. Lupron tanks estradiol and by association vitamin D, a double hit to bone health. At the level of the mitochondria, the third hit, reduced ATP, further damages bone health.

Estradiol is an Antioxidant

Antioxidants scavenge ROS. Antioxidants are needed to keep ROS concentrations at bay as too much ROS, though a natural byproduct of ATP production, will damage the mitochondria and initiate a damaging, self-perpetuating cycle. The body has a number of anti-oxidants to temper ROS. Many nutrients are included in this category: Vitamins C and E, CoEnzyme Q10 and glutathione are among the most well known. It turns out that estradiol and progesterone are potent anti-oxidants as well. So chemically or surgically eliminating estradiol reduces the body’s ability to detoxify and eliminate damaging ROS, evoking further mitochondrial damage.

Estradiol Modulates Mitochondrial Hormone Synthesis

That’s right, the mitochondrial estrogen receptors impact what is called steroidogenesis – steroid hormone synthesis – for multiple hormones, not just those pesky ‘female’ hormones. Like a thermostat that turns on or off when the temperature changes, mitochondrial estrogen (and other hormone) receptors sense hormone changes and up or downregulate the synthesis of pregnenolone (and the use of cholesterol to make pregnenolone). Pregnenolone is the precursor for all steroid hormones. So when Lupron or ovariectomy tank estradiol, not only is the synthesis of estrogens affected, but so too is the synthesis of other steroid hormones.

Estradiol Tempers Mitochondrial Ca2+ Homeostasis

Ca2+ balance is a complicated topic, a bit beyond the scope of this paper but is an important function modified by mitochondrial estrogen receptors. Ca2+ influx into cells is excitatory and turns on the cellular machinery. As one might expect, too much or too little Ca2+ activity could be damaging. Too much Ca2+ is cytotoxic or neurotoxic (if in the brain), killing the cells. The mitochondria are largely responsible for controlling the influx of Ca2+, sequestering Ca2+ when there is too much in order to save the cells. So when mitochondria become damaged or inefficient by any mechanism, Ca2+ homeostasis becomes an issue and cell death, tissue and organ damage become very real outcomes. Estradiol influences the mitochondria’s ability to sequester and temper Ca2+, so that the cells don’t become too turned on or over-active and die. (This is an interesting mechanism because estradiol itself is an excitatory hormone, increasing the activity of the cell when bound to the cell membrane or nuclear receptors but when bound to receptors on the mitochondria, estradiol tempers that excitation.)

Estradiol Regulates Immune Function

Estradiol bound to the estrogen receptors on immune and other cells activate and deactivate a number of signal transduction pathways that turn on/off inflammation and other immune responses. The mitochondria also regulate immune function via ROS signalling. Depletion of estradiol, particularly at the mitochondrial level, guarantees disrupted immune function and hyper inflammation by way of mitochondrial structural damage, derangement in function, and the loss of estradiol mediated anti-oxidant abilities. So by multiple mechanisms Lupron, drugs like it, and ovariectomy, damage mitochondria and initiate cascades of ill health.

Lupron, Maybe Not Such a Good Idea

Estradiol bound to mitochondrial receptors, controls a whole host of functions in the mitochondria, which then control cellular health throughout the brain and body. Without estradiol, the mitochondria become misshapen and dysfunctional and eventually die a messy death (necrosis), but not before inducing mutations in next generation mitochondria (mitochondrial life cycles include the regular birth of new mitochondria and the necessary death of old and damaged mitochondria). As the damage and mutations build and the ratio of healthy to damaged mitochondria shifts, cell death, tissue/organ damage and disease develop. Lupron, other drugs that tank estradiol, and ovariectomy, initiate mitochondrial damage. The mitochondrial damage represents a possible final common pathway by which Lupron induces the myriad of side-effects and adverse reactions associated with this drug.

A question that remains, is whether this damage can be offset by supporting mitochondrial machinery by other mechanisms. This is particularly important since millions of women have been exposed to Lupron and/or have had their ovaries removed. Other hormones and a myriad of nutrient factors are necessary for the enzymes within the mitochondrial machinery to work properly. Could we offset the damage evoked by too little (or too much) hormone by maximizing the efficiency of the other reactions. I think it is possible, at least theoretically and at least partially. That will be addressed in a subsequent post. For now, however, I think we ought to reconsider the use Lupron, other GnRH agonists, antagonists and the surgical removal of women’s ovaries. The damage evoked by eliminating estradiol is likely far greater than any potential benefit in an ill-understood disease process like endometriosis.

We Need Your Help

More people than ever are reading Hormones Matter, a testament to the need for independent voices in health and medicine. We are not funded and accept limited advertising. Unlike many health sites, we don’t force you to purchase a subscription. We believe health information should be open to all. If you read Hormones Matter, like it, please help support it. Contribute now.

Yes, I would like to support Hormones Matter. 

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This article was first published on January 16, 2015. 

Lupron: The Cycle of Negligence

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My pelvic pain first started at age 13 with menses, but I was blacking out at 28-day intervals from the age of nine. I was told it was normal by both my grandmother and mother because they experienced the same thing. The abdominopelvic symptoms got severe after the birth of my daughter when I was 33 years old. I didn’t get a diagnosis for another 14 years at the age of 47 years. It has been nothing but a steady stream of dismissive and abusive doctors with absolutely nobody offering an explanation. The only solutions that I was offered were a hysterectomy and Lupron. Neither helped and in fact, made everything worse.

Physician Abuse

When I was 44, I had a hysterectomy, and adenomyosis was found but I was told everything was removed. Four months after my subtotal hysterectomy in December 2014, I was still having the same pelvic pain symptoms. My gynecologist didn’t know what else to do other than to use Lupron for 3-6 months to see if it would diminish my pelvic pain. If the pain persisted, she said the ovaries would have to come out. She told me she was using it as a diagnostic tool and if I didn’t try it she “would drop me as a patient.” More accurately, she screamed at me, started frantically waving her hands above her head and hit me with her pen. There were times I wish I had a witness to some of the behavior I was subjected to over the years; this was definitely one of them. I took the prescription home but didn’t fill it. I was not only shocked by her behavior but also, a little leery about being souped-up on yet another medication with horrible side effects.

Worsening Symptoms While on Lupron

I held off until Sept 2015 when I decided I couldn’t stand the pain anymore.  My first injection was in October and I seemed to handle it quite well. I had relief from my pelvic pain within two days and a bit of mild dizziness that went away after about a week. The reduction in pain allowed me to go out for walks 2-3 times per day, which is something I hadn’t experienced for quite a long time—it was great to be walking again. Then I started noticing some strange symptoms every two weeks after the injection.

The first time it happened the symptoms were so mild I brushed them off as a minor cold bug: body aches and pains, sniffles, lungs slightly congested, watery eyes, my hearing was off and my eardrums felt plugged up. I thought maybe my daughter brought a cold bug home from school but these same symptoms happened exactly two weeks after the Lupron injection and every time the symptoms kept getting stronger. When I was due for my 4th injection I knew something wasn’t right. My regular gynecologist wasn’t in and I’m glad she wasn’t. The one I did speak to about my symptoms told me to not take it anymore. He looked up my symptoms in a large pharmaceutical reference book; Lupron was listed as having “flu-like symptoms” in its trial phase but had no further information. I was told to go home and just let the effects “wear off.”

From December 2015 to February 2016, I had 11 visits to the ER for worsening flu-like symptoms that included: strong body aches and pains that felt like I had been hit by a train, congested lungs, and coughing up greenish-yellow fluid. The same gross mucous was coming out of my eyes and ears. My lungs were so congested I was gasping for air and I was terrified! They tested for bacteria, throat and nasal swabs, and full blood work—everything came back negative and it wasn’t pneumonia. I didn’t even have a fever. The last ER doctor I saw actually called the drugmaker to see what to do. He told me they have something similar to a WHMIS or Workplace Hazardous Materials Information System on all their products in case of adverse events. Well, guess what? They didn’t! The representative told him they knew about the severe flu-like symptoms in their trials with Lupron but they did not follow those patients to record their outcomes. In other words, there was no due diligence before releasing their product to the public. They don’t even know if those patients are still alive.

I was given an IV to prevent dehydration and placed on oxygen until my vitals improved; even then I was sent home without any concrete advice on how to deal with the side effects other than “it should wear off” and “if it gets worse don’t hesitate to come back”—like now isn’t worse. I asked the ER doctor if he is filing an adverse event report to Health Canada or the FDA and he said “that is for the patients to do but in your case, I wouldn’t worry about it. We don’t know if that is what is causing your symptoms. It could just be a viral thing.” I was about ready to flip my lid!  He told me earlier if it was viral I would have a fever because that is what your body does to fight off infection and viral infection symptoms build up, peak and then you start feeling better. These symptoms occurred two weeks after each and every injection.  I felt like I was talking to a brick wall. Do you know it took another four months for that damn Lupron to wear off?  The entire time I was terrified. I was gasping for air while this green mucus is pouring out of my ears, eyes, and lungs. I would panic, cry, and then have to calm myself down because crying would congest my lungs making it harder to breathe. I have never been so scared in all my life.

Lupron Side Effects and Gynecological Ignorance

I did go back to the gynecologist that prescribed the Lupron and she had the nerve to tell me it was not her problem and to go see my GP. My GP told me since she didn’t prescribe it that it was the gyn’s problem. I went back to the gynecologist to tell her what my GP said and she threw another hissy fit because, apparently, I wasn’t on Lupron long enough to satisfy her 6-month requirement. My husband didn’t believe what I was telling him so I had him call the office to rebook an appointment so that we both could talk to her. At this next appointment, she placated my husband and refused to look me in the eye while she was speaking. I reminded her of everything she said previously;  that it is her problem because she is the prescribing doctor; that my pelvic pain symptoms did improve while on the Lupron; that my adverse effects were directly related to the drug as my worsening symptoms occurred exactly two weeks after each and every injection; that I was tested at the ER and it was not viral or bacterial; that the ER doctor called the drugmaker and they had severe flu-like symptoms listed during their drug trials but never not followed up. I informed her I filed complaints with both Health Canada and the FDA.

She got up to check on my ER visit reports. While she was gone even my husband noticed she wasn’t talking directly to me, only to him and that I did meet her requirements—Lupron for at least 3 months, if the pain is relieved then it means the ovaries need to come out. My husband was ready to have it out with her when she came back.  She kept trying to placate us, saying things like “I don’t know what to do”. I kept pushing for an answer—what was causing my pelvic pain if Lupron was the diagnostic tool—what was she using it to diagnose?  She never mentioned “endometriosis”. I asked her if it could be cancer–no answer. I finally said, “If you don’t know what to do then send me to someone who has more experience dealing with complex gynecological issues. I want a referral to the Women’s Health Sciences Centre in Halifax.”

I hate to think of what would have happened if my husband wasn’t there to keep me centered; even he was getting frustrated by this gynecologist. She finally agreed to send a referral to Halifax.  As we were leaving, she told my husband she was retiring in a couple of months so do not bother contacting her for any further concerns. I found out just a few days ago she is still working as a gyn—so she basically lied to my husband. What a piece of work!

I don’t understand how doctors can behave like this. There has to be some kind of benefit, either monetary kickbacks or endorsements, to blindly stand behind a drug like this and totally ignore what the patient is telling you to your face.

Recovering From Lupron

It took four months for the Lupron effects to “wear off” and for my lungs, ears, and eyes to return to normal. It was a terrifying experience that I don’t wish on anyone. I realize I was one of the lucky ones to walk away from this experience whereas others haven’t. To this day, I keep asking myself why I was put through this Hell in the first place. Why are doctors so ignorant in prescribing this drug as a diagnostic tool if they know about the adverse effects? We trust that drug companies are performing due diligence with regards to adverse reactions in trials and long-term follow up and they are NOT!  How is it that the drug maker can get away with this? Why are there not more strict checks and balances before releasing a drug and when problems are being reported afterward? It is absolutely insane that this drug, with all its reported adverse effects and deaths, is still on the market. Why are the FDA and Canada Health dragging their heels and not banning this drug?

Two years after the hysterectomy and Lupron, I was still in excruciating pain. I had a cervical cyst removed and pathology indicated that I had endometriosis. My ovaries were removed in 2017 and both were completely “disintegrated”. Once again I had to fight to get my diagnosis. The surgeon had the nerve to try to hide the biopsy report so I wouldn’t have proof.  Luckily, the medical records clerk did some searching and found it, but she also told me she could have lost her job because of what this doctor did.

My NP, although supportive in the beginning, has now resorted to telling me “this is your new normal, you’re just going to have to get used to it.”  I am at my wit’s end trying to get help dealing with what is left of my health. I am not able to work or enjoy any quality of life anymore. I’ve been given the run-a-round by 5 GPs, 1 NP, 11 OBGYNs, and 35+ ER doctors. I don’t have any faith left in our health care system. My only alternative is to seek legal advice, but I really don’t know how to move forward in a system that is so dismissive and corrupt in how it treats women’s health issues. I’m beyond whatever “disgusted” is.

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More people than ever are reading Hormones Matter, a testament to the need for independent voices in health and medicine. We are not funded and accept limited advertising. Unlike many health sites, we don’t force you to purchase a subscription. We believe health information should be open to all. If you read Hormones Matter, and like it, please help support it. Contribute now.

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This story was published originally on June 8, 2020. 

Lupron, Brain Function, and the Keto Diet

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Reproductive senescence, the time in a woman’s life marked by the slowing and eventual cessation of reproductive function, frequently coincides with an increased risk of a host of neurodegenerative disorders from memory impairment to dementia and Alzheimer’s disease. Researchers have long postulated that the loss of ovarian hormones was responsible; estradiol, in particular, but likely others as well.

This begs the question, what happens to the brain when we abruptly and artificially derail ovarian hormone synthesis in young women using drugs such as Lupron (leuprolide) and the other GnRH agonists and antagonists or by removing the ovaries altogether as in surgical oophorectomy? Is it the same damage we see in aging, only expedited and perhaps magnified, or does it run a different course? Along those same lines, though perhaps a topic for another day, what happens when we chronically supplant endogenous ovarian hormone production with synthetic hormones such as those used in hormonal birth control or menopausal hormone replacement therapies? I suspect, and there is evidence to back up my suspicions, that in all cases brain function is altered, and not for the better.

Estrogens and the Brain

The mechanisms by which estradiol and other steroid hormones influence brain function are myriad and complicated. Beyond just reproduction, steroid hormones influence all aspects of neurological function, with estrogen, androgen, glucocorticoid (cortisol), and mineralocorticoid (electrolyte balance, blood pressure) receptors located throughout the brain. Steroid hormones produced in the body, because of their fat solubility, easily cross the blood-brain barrier where they bind to their receptors and regulate all sorts of processes. Perhaps even more remarkable, the brain has all of the machinery to synthesize its own steroid hormones and so when body concentrations fall, at least for a time, the brain can compensate. Eventually, however, brain synthesis declines and that is where we begin to have problems. Fortunately, natural reproductive senescence occurs later in life and the risk of neurodegenerative diseases is just that, a risk, not a foretold conclusion. This suggests that other variables are at play, ones that we may be able to modulate to improve health, offset and/or reduce the severity of the natural neurodegenerative processes. Again, however, we must ask, what happens when we induce reproductive senescence in young women? By all accounts, the effects are often devastating, leaving many to wonder if they will ever recover.

Estradiol and Mitochondrial Energy

Among the myriad of functions mitochondria control, perhaps the most important is energy production. That is, mitochondria take the nutrients supplied by diet and convert them into adenosine triphosphate (ATP), the energy currency that cells use to perform all of the functions that keep us alive. The loss or diminishment of ATP is deleterious to health and can ultimately be deadly, by invoking a series of complicated processes

Estradiol is a critical component of that process and directly impacts mitochondrial energy production. That’s right, estradiol is part of the mitochondrial bioenergetic machinery such that when estradiol wanes, so too does energy production or ATP. As one might suspect, waning ATP is deleterious to brain health. In previous posts, I detailed the research showing how the loss of estradiol deforms mitochondrial morphology essentially disabling mitochondrial membrane potential while turning the mitochondria into misshapen donuts and blobs ripe for a slow, messy necrotic death; a process that evokes all sorts of deleterious reactions.

The Lupron Brain and Ketosis

Just recently, I stumbled upon research showing yet another mechanism of damage. In the absence of estradiol, brain glucose transport diminishes significantly. This effectively starves the brain for energy inducing severe bioenergetic deficiencies with all of the concordant neuronal damage one might expect. The reduction in glucose affects the mitochondria severely. Recall that glucose is one of the major fuel substrates of the brain, particularly where the Western diet predominates. The decline of glucose transport, therefore, is significant, and alone, without any other changes to the mitochondria, elicits a cascade of deleterious reactions. Oxidative phosphorylation and associated enzymes are downregulated, ATP production wanes, and ultimately may initiate the deformation of the very shape of the mitochondria, as observed in the research cited above. The ensuing reduction of ATP starves the brain of critical energy but also induces a state of hypoxia with the mitochondria incapable of utilizing molecular oxygen. With that hypoxia, inflammatory pathways are initiated further cementing mitochondrial death spirals and associated neuronal damage.

Interestingly, this reduction in aerobic activity coincides with the emergence of a ketogenic phenotype. That is, with the loss of one fuel substrate, ketones become the dominant source of fuel and the associated enzyme machinery is upregulated. Unfortunately, the Western diet is highly dependent upon carbohydrates and so a woman experiencing this loss of estradiol is not likely to consume sufficient fats and proteins to effectively weather this shift. Nevertheless, it does provide an opportunity for recovery. What if women who have lost the ability to produce sufficient estradiol either because of surgically (oophorectomy) or chemically (Lupron and other GnRH analogs) induced menopause adopt a ketogenic diet? Could we maximize the preferred energy source of the post-menopausal brain and reduce the neurological symptoms? I do not know the answer to that question, but given the severity of the suffering with surgical and chemical menopause, it seems worth the try.

We Need Your Help

More people than ever are reading Hormones Matter, a testament to the need for independent voices in health and medicine. We are not funded and accept limited advertising. Unlike many health sites, we don’t force you to purchase a subscription. We believe health information should be open to all. If you read Hormones Matter, and like it, please help support it. Contribute now.

Yes, I would like to support Hormones Matter.

Image by Angelo Esslinger from Pixabay.

This article was originally published on November 15, 2018.

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