Our Medical Directors are outstanding physicians that you will find to be very personable and compassionate, who take care to ensure that you have the most cutting-edge fertility treatments at your disposal. This is your outlet to ask your questions to the doctors.
I am a 39 y/o who has a 9 month old from a previous FET. (my infertility was “unknown”) I had a hysteroscopy done to be sure there was not damage from my c-section and was told I had endometritis and was given an antibiotic. Doc also claimed to have removed scar tissue. We used our last embryo, B quality (our doc only uses A, B, C, D – no doubles) in January and the transfer did not take. We did another IVF cycle to produce more embryos. On March 17th, we put in an A quality embryo (tested view Evie and PGS) 5 day blast with mtDNA score of 17.41. I am now 8.5dp5dt and my home pregnancy tests are VERY negative, no faint line, nothing. I am getting concerned as I was told with the testing done to that embryo, the chance of implantation was 81%. How do I keep failing with quality embryos? I will note the doc had trouble getting to my uterus- said it is very high and to the side due to c-section and scar tissue. He had to switch speculum three times and used a specific catheter. He is a pretty well respected doctor so I am hoping it was not due to his error. Although I will say I was in a lot of pain and shaking from the procedure for the first time. What other possibility is there for not having implanted? I followed all the rules for post procedure and haven’t even picked up my son until today.
I am so sorry for you but…very respectfully…an implantation rate of 80% is not possible anywhere. If this cycle fails, I suggest strongly that given your age, you need a modified, long pituitary down-regulation protocol. I would use an agonist/antagonist conversion protocol with human growth hormone (HGH) augmentation and would recommend Staggered IVF with embryo banking of PGS (next generation gene sequencing)-normal blastocysts, to make hay while the sun still shines.
While Primary infertility refers to the inability of a woman who has never been pregnant in the past, to conceive, Secondary Infertility is defined as an inability to conceive more than 1 year after having conceived in the past. Most patients find it difficult to accept the fact that having once been able to conceive they are now unable to do so. When confronted with the proposition that they need IVF, women who have Secondary Infertility find it harder to accept than do those who have Primary Infertility. It commonly raises issues of guilt, a declining sense of self-worth and ultimately self-recrimination impacting rational decision making, family dynamics that involve partners and siblings and relatives. The fact is that secondary infertility can be just as difficult for individuals and family to deal with as primary infertility.
There are several factors that contribute to the problem of Secondary Infertility. These include:
•Social and marital factors: In this modern day and age where at least one in two marriages ends in divorce, it is not surprising that there would be an inevitable hiatus in childbearing. This often results in a considerable delay in re-initiating family building. Since the biological clock keeps on ticking in the interim, advancing age can, and often does, have a profound effect on a woman’s ability to subsequently conceive and successfully complete a pregnancy. In my experience, this is one of the most common reasons for secondary infertility. In addition, by the time a decision is made to enter a new relationship, many men and women will have undergone a prior sterilization procedure which now needs to be addressed. To make matters worse, many such men and women first opt for surgical reversal of their occlusive surgery, only to learn in the end that the procedures were not successful, and they now need to consider in vitro fertilization (IVF) in one form or another.
•Financial factors: Here, the cost of raising a child often weighs heavily, especially in this present tough economic climate. This is becoming more of an issue as women playing an ever increasing role as a primary bread winner.
•Career demands: There can be little doubt that when it comes to climbing the career ladder, women are considerably disadvantaged by the fact that pregnancy and the immediate demands of child rearing take away from their ability to compete with men. As such, many women choose to delay having another child until such time as they have been able to make up for prior lost opportunity.
•Medical barriers to fertility: Certain common medical conditions, while not absolutely precluding pregnancy, make it much more difficult to conceive.
•Endometriosis: It is not uncommon for women with endometriosis to achieve a pregnancy, but find difficulty in doing so again at a later date. The reason for this is that while most women with endometriosis have patent fallopian tubes, the environment surrounding their tubes is compromised due to pelvic toxins that are produced by the endometriotic implants. These toxins compromise egg fertilization potential, making it more difficult for sperm in the fallopian tube to fertilize the egg upon its arrival there. As such, endometriosis is one of the commonest causes of secondary infertility.
•Tubal damage due to prior pelvic inflammatory disease: In first world countries, the early and often indiscriminate use of antibiotics for the slightest symptom has led to the point where an acute attack of pelvic inflammatory disease is often masked. As such, less than 30% of American women with tubal damage have knowledge that their tubes are compromised and that they might have subsequent difficulty in conceiving. Since, in many such cases the tubal damage will not have totally blocked both tubes, some of the women so affected might experience a pregnancy but have difficulty in conceiving again later down the line.
•Dysfunctional ovulation: Since ovulation as well as normal hormonal support of the early implanting embryo are both essential for a healthy pregnancy to occur, it follows that women with irregular or dysfunctional ovulation (e.g., polycystic ovarian syndrome – PCOS, persistent follicular luteal phase deficiencies or post birth control pill ovulatory problems) might sporadically conceive and thereupon find it difficult to do achieve another pregnancy later on.
•Immunologic Implantation Dysfunction (IID): has become ever more apparent that immunologic factors play an important role in achieving healthy implantation. Women with endometriosis (regardless of its severity), those with a personal or family history of autoimmune diseases such as lupus erythematosus, rheumatoid arthritis and thyroid autoimmunity (TAI), and some cases where the man and the woman share certain genetic similarities involving DQ alpha and HLA genotype (alloimmune implantation dysfunction), will have activated T cells (cytotoxic lymphocytes) and natural killer cells (NKa)CTL/NK cells that can inhibit or compromise healthy implantation. This is an often overlooked cause of secondary infertility. Most such autoimmune/alloimmune cases require selective immunotherapy and IVF.
•Anti-sperm Antibodies: Although infrequent, some cases of secondary infertility might also be caused by the woman harboring anti-sperm antibodies. In such cases IVF is mandated.
•Previous post-pregnancy uterine inflammation: Retention of products of conception after the birth of a child, miscarriage, or abortion can so damage the uterine lining as to result in subsequent implantation failure. Unless specifically looked for, this will usually be unknown to the patient, who will simply present with secondary infertility. Treatment is often difficult because such patients might not respond adequately to surgical removal of intrauterine scar tissue or to hormonal or Viagra therapy.
Male immunologic factors: Most men who have undergone a previous vasectomy more than 10 years earlier, will have anti-sperm antibodies that will interfere with fertilization. Such cases require IVF with intracytoplasmic sperm injection (ICSI). Here we offer a few words of caution to men who are considering undergoing surgical reversal of vasectomy. Always first have a test done to exclude the presence of circulating anti-sperm antibodies, because in such cases, even if the reversal is successfully performed, they will not be able to initiate a pregnancy without IVF/ICSI.
Whatever the cause, Secondary Infertility often affects older couples disproportionately, creating a sense of urgency and even desperation in achieving a viable pregnancy before time runs out. It is for this reason that IVF becomes the treatment of choice in such cases. However, even IVF becomes progressively less successful with advancing age of the woman (whose eggs are being fertilized). In such cases it is important for the couple to be realistic with regard to their expectations. Here, options that include embryo banking and egg donation should be carefully considered.
Finally, whenever a regularly ovulating younger woman (under 36 years of age) with patent fallopian tubes is diagnosed with secondary infertility, it is essential to consider underlying endometriosis or non-obstructive tubal disease as a possible cause. In such cases, IVF often becomes the treatment of choice.
Please visit my new Blog on this very site, http://www.DrGeoffreySherIVF.com, find the “search bar” and type in the titles of any/all of the articles listed below, one by one. “Click” and you will immediately be taken to those you select. Please also take the time to post any questions or comments with the full expectation that I will (as always) respond promptly
•Controlled Ovarian Stimulation (COS) for IVF: Selecting the ideal protocol
•Ovarian Stimulation for IVF using GnRH Antagonists: Comparing the Agonist/Antagonist Conversion Protocol.(A/ACP) With the“Conventional” Antagonist Aproach
•IVF: Factors Affecting Egg/Embryo “competency” during Controlled Ovarian Stimulation(COS)
•Anti Mullerian Hormone (AMH) Measurement to Assess Ovarian Reserve and Design the Optimal Protocol for Controlled Ovarian Stimulation (COS) in IVF.
•The “Biological Clock” and how it should Influence the Selection and Design of Ovarian Stimulation Protocols for IVF.
•Diagnosing and Treating Infertility due to Diminished Ovarian Reserve (DOR)
•Human Growth Hormone Administration in IVF: Does it Enhances Egg/Embryo Quality and Outcome?
•The BCP: Does Launching a Cycle of Controlled Ovarian Stimulation (COS). Coming off the BCP Compromise Response?
•Frozen Embryo Transfer (FET): A Rational Approach to Hormonal Preparation and How new Methodology is Impacting IVF.
•Staggered IVF: An Excellent Option When. Advancing Age and Diminished Ovarian Reserve (DOR) Reduces IVF Success Rate
•Embryo Banking/Stockpiling: Slows the “Biological Clock” and offers a Selective Alternative to IVF-Egg Donation.
•Preimplantation Genetic Sampling (PGS) Using: Next Generation Gene Sequencing (NGS): Method of Choice.
•IVF Failure and Implantation Dysfunction: The Role of Endometrial Thickness, Uterine Pathology and Immunologic Factors
•Why did my IVF Fail
•Secondary Infertility: Addressing the Root Causes
•Immunologic Implantation Dysfunction (IID) & Infertility (IID):PART 1-Background
•Immunologic Implantation Dysfunction (IID) & Infertility (IID):PART 2- Making a Diagnosis
•Immunologic Dysfunction (IID) & Infertility (IID):PART 3-Treatment
•Thyroid autoantibodies and Immunologic Implantation Dysfunction (IID)
•Immunologic Implantation Dysfunction: Importance of Meticulous Evaluation and Strategic Management:(Case Report)
•Natural Killer Cell Activation (NKa) and Immunologic Implantation Dysfunction in IVF: The Controversy!
•Uterine Fibroids and Fertility
•Traveling for IVF from Out of State/Country–
•A personalized, stepwise approach to IVF
•How Many Embryos should be transferred: A Critical Decision in IVF.
•The Role of Nutritional Supplements in Preparing for IVF
•Measuring and Interpreting Blood hCG to Assess Pregnancy Viability Following ART Treatments.
•Male Factor Infertility
•The Sperm Chromatin Structure Assay (SCSA): A Measure of the Potential of Sperm to Help Propagate a Viable Pregnancy
I invite you to call 702-699-7437 or 800-780-7437 or go online on this site and set up a one hour Skype consultation with me to discuss your case in detail.
I also suggest that you access the 4th edition of my book ,”In Vitro Fertilization, the ART of Making Babies”. It is available as a down-load through http://www.Amazon.com or from most bookstores and public libraries.
Good afternoon Dr. Sher,
I found out this past wednesday my FET of a 6-day PGS normal hatched blast failed. I am 28 years old, I have had my stage 2 endometriosis excised, and cause of infertility has been categorized as unexplained.
I did IVF with ICSI in January, 14 eggs retrieved, 10 mature. We started with 8 embryos and ended up with 4 making it to freeze – 2 on day 6 and 2 on day 7. One of the day 6 was abnormal, the rest normal. A fresh transfer did not occur because the embryos were not at the appropriate stage for biopsy by day 5 (this cycle was part of a clinical trial). I was told day 6 transfers had poor pregnancy outcomes, so the clinic would not perform a transfer the following day.
The FET protocol was as follows:
Birth control: 2 weeks
Birth control + lupron: 1 week
Lupron: 1 week
Lupron + estrace: 2 weeks
Lupron + estrace + medrol + doxycycline + PIO: 5 days up until transfer day
Transfer of the embryo occured at 2:30 pm, on day 6.
In your opinion, could the continuation of the lupron right up until the day of transfer have caused the FET to fail? Also, why was a day 6 transfer contraindicated in the fresh cycle, and yet the frozen transfer was done in late afternoon on day 6? After 5 days on progesterone, rather than the typical 4 with transfer on the 5th day.
I feel it is worth noting that I became very ill with what felt like the flu, within 4 hours of transfer. This lasted approximately 5 days. Thanks so much, in advance.
Ashley Hubbard
Whenever a patient fails to achieve a viable pregnancy following embryo transfer (ET), the first question asked is why! Was it simply due to, bad luck?, How likely is the failure to recur in future attempts and what can be done differently, to avoid it happening next time?.
It is an indisputable fact that any IVF procedure is at least as likely to fail as it is to succeed. Thus when it comes to outcome, luck is an undeniable factor. Notwithstanding, it is incumbent upon the treating physician to carefully consider and address the causes of IVF failure before proceeding to another attempt:
1.Age: The chance of a woman under 35Y of age having a baby per embryo transfer is about 35-40%. From there it declines progressively to under 5% by the time she reaches her mid-forties. This is largely due to declining chromosomal integrity of the eggs with advancing age…”a wear and tear effect” on eggs that are in the ovaries from birth.
2.Embryo Quality/”competency (capable of propagating a viable pregnancy)”. As stated, the woman’s age plays a big role in determining egg/embryo quality/”competency”. This having been said, aside from age the protocol used for controlled ovarian stimulation (COS) is the next most important factor. It is especially important when it comes to older women, and women with diminished ovarian reserve (DOR) where it becomes essential to be aggressive, and to customize and individualize the ovarian stimulation protocol.
We used to believe that the uterine environment is more beneficial to embryo development than is the incubator/petri dish and that accordingly, the earlier on in development that embryos are transferred to the uterus, the better. To achieve this goal, we used to select embryos for transfer based upon their day two or microscopic appearance (“grade”). But we have since learned that the further an embryo has advanced in its development, the more likely it is to be “competent” and that embryos failing to reach the expanded blastocyst stage within 5-6 days of being fertilized are almost invariably “incompetent” and are unworthy of being transferred. Moreover, the introduction into clinical practice about a decade ago, (by Levent Keskintepe PhD and myself) of Preimplantation Genetic Sampling (PGS), which assesses for the presence of all the embryos chromosomes (complete chromosomal karyotyping), provides another tool by which to select the most “competent” embryos for transfer. This methodology has selective benefit when it comes to older women, women with DOR, cases of unexplained repeated IVF failure and women who experience recurrent pregnancy loss (RPL).
3.The number of the embryos transferred: Most patients believe that the more embryos transferred the greater the chance of success. To some extent this might be true, but if the problem lies with the use of a suboptimal COS protocol, transferring more embryos at a time won’t improve the chance of success. Nor will the transfer of a greater number of embryos solve an underlying embryo implantation dysfunction (anatomical molecular or immunologic).Moreover, the transfer of multiple embryos, should they implant, can and all too often does result in triplets or greater (high order multiples) which increases the incidence of maternal pregnancy-induced complications and of premature delivery with its serious risks to the newborn. It is for this reason that I rarely recommend the transfer of more than 2 embryos at a time and am moving in the direction of advising single embryo transfers …especially when it comes to transferring embryos derived through the fertilization of eggs from young women.
4.Implantation Dysfunction (ID): Implantation dysfunction is a very common (often overlooked) cause of “unexplained” IVF failure. This is especially the case in young ovulating women who have normal ovarian reserve and have fertile partners. Failure to identify, typify, and address such issues is, in my opinion, an unfortunate and relatively common cause of repeated IVF failure in such women. Common sense dictates that if ultrasound guided embryo transfer is performed competently and yet repeated IVF attempts fail to propagate a viable pregnancy, implantation dysfunction must be seriously considered. Yet ID is probably the most overlooked factor. The most common causes of implantation dysfunction are:
a.A“ thin uterine lining”
b.A uterus with surface lesions in the cavity (polyps, fibroids, scar tissue)
c.Immunologic implantation dysfunction (IID)
d.Endocrine/molecular endometrial receptivity issues
Certain causes of infertility are repetitive and thus cannot readily be reversed. Examples include advanced age of the woman; severe male infertility; immunologic infertility associated with alloimmune implantation dysfunction (especially if it is a “complete DQ alpha genetic match between partners plus uterine natural killer cell activation (NKa).
Please visit my new Blog on this very site, http://www.DrGeoffreySherIVF.com, find the “search bar” and type in the titles of any/all of the articles listed below, one by one. “Click” and you will immediately be taken to those you select. Please also take the time to post any questions or comments with the full expectation that I will (as always) respond promptl
•Controlled Ovarian Stimulation (COS) for IVF: Selecting the ideal protocol
•Ovarian Stimulation for IVF using GnRH Antagonists: Comparing the Agonist/Antagonist Conversion Protocol.(A/ACP) With the“Conventional” Antagonist Aproach
•IVF: Factors Affecting Egg/Embryo “competency” during Controlled Ovarian Stimulation(COS)
•The BCP: Does Launching a Cycle of Controlled Ovarian Stimulation (COS). Coming off the BCP Compromise Response?
•Frozen Embryo Transfer (FET): A Rational Approach to Hormonal Preparation and How new Methodology is Impacting IVF.
•Staggered IVF: An Excellent Option When. Advancing Age and Diminished Ovarian Reserve (DOR) Reduces IVF Success Rate
•Embryo Banking/Stockpiling: Slows the “Biological Clock” and offers a Selective Alternative to IVF-Egg Donation.
•Preimplantation Genetic Sampling (PGS) Using: Next Generation Gene Sequencing (NGS): Method of Choice.
•IVF Failure and Implantation Dysfunction: The Role of Endometrial Thickness, Uterine Pathology and Immunologic Factors
•Secondary Infertility: Addressing the Root Causes
•Recurrent Pregnancy Loss (RPL): Why do I keep losing my Pregnancies?
•Immunologic Implantation Dysfunction (IID) & Infertility (IID):PART 1-Background
•Immunologic Implantation Dysfunction (IID) & Infertility (IID):PART 2- Making a Diagnosis
•Immunologic Dysfunction (IID) & Infertility (IID):PART 3-Treatment
•Thyroid autoantibodies and Immunologic Implantation Dysfunction (IID)
•Immunologic Implantation Dysfunction: Importance of Meticulous Evaluation and Strategic Management:(Case Report)
•Natural Killer Cell Activation (NKa) and Immunologic Implantation Dysfunction in IVF: The Controversy!
•Endometriosis and Infertily
•Treating Ovarian Endometriomas with Sclerotherapy.
I invite you to call 702-699-7437 or 800-780-7437 or go online on this site and set up a one hour Skype consultation with me to discuss your case in detail.
I also suggest that you access the 4th edition of my book ,”In Vitro Fertilization, the ART of Making Babies”. It is available as a down-load through http://www.Amazon.com or from most bookstores and public libraries.
Geoff Sher
Hi Dr. Sher,
I recently had a chemical pregnancy with a CCS tested normal embryo – grade 5AA. I have endometriosis, but I tested positive for the beta 3 integrin protein. I have 4 more normal embryos frozen. Do you think I need treatment such as Depot Lupron before my next FET to treat my endometriosis? Does implantation occur during a chemical pregnancy? My dr is very much against Depot Lupron. Thank you for any insight!
Endometriosis is a condition that occurs when the uterine lining (endometrium) grows not only in the interior of the uterus but in other areas, such as the fallopian tubes, ovaries and the bowel. Endometriosis is a complex condition where, the lack or relative absence of an overt anatomical barrier to fertility often belies the true extent of reproductive problem(s).
All too often the view is expounded that the severity of endometriosis-related infertility is inevitably directly proportionate to the anatomical severity of the disease itself, thereby implying that endometriosis causes infertility primarily by virtue of creating anatomical barriers to fertilization. This over-simplistic and erroneous view is often used to support the performance of many unnecessary surgeries for the removal of small innocuous endometriotic lesions, on the basis of such “treatment” evoking an improvement in subsequent fertility.
It is indisputable that even the mildest form of endometriosis can compromise fertility. It is equally true that, mild to moderate endometriosis is by no means a cause of absolute “sterility”.
Rather, when compared with normally ovulating women of a similar age who do not have endometriosis, women with mild to moderate endometriosis are about four to six times less likely to have a successful pregnancy.
Endometriosis often goes unnoticed for many years. Such patients are frequently, erroneously labeled as having “unexplained infertility”, until the diagnosis is finally clinched through direct visualization of the lesions at the time of laparoscopy or laparoscopy. Not surprisingly, many patients with so called “unexplained” infertility, if followed for a number of years, will ultimately reveal endometriosis.
Women who have endometriosis are much more likely to be infertile. There are several reasons for this:
•First-Ovulation Dysfunction: In about 25 – 30% of cases, endometriosis is associated with ovulation dysfunction. Treatment requires controlled ovarian stimulation (COS). The problem is that the toxic pelvic environment markedly reduces the likelihood that anything other than IVF will enhance pregnancy potential.
•Second- Toxic Pelvic environment that compromises Fertilization Endometriosis is associated with the presence of toxins in peritoneal secretions while it is tempting to assert that normally ovulating women with mild to moderate endometriosis would have no difficulty in conceiving if their anatomical disease is addressed surgically or that endometriosis-related infertility is confined to cases with more severe anatomical disease…nothing could be further from the truth. The natural conception rate for healthy ovulating women in their early 30’s (who are free of endometriosis) is about 15% per month of trying and 70% per year of actively attempting to conceive. Conversely, the conception rate for women of a comparable age who have mild or moderate pelvic endometriosis (absent or limited anatomical disease) is about 5-6% per month and 40% after 3 years of trying. As sperm and egg(s) travel towards the fallopian tubes they are exposed to these toxins which compromise the fertilization process. In fact it has been estimated that there is a 5-6 fold reduction in fertilization potential because of these toxins which cannot be eradicated. Frankly, it really does not matter whether an attempt is made to remove endometriosis deposits surgically as this will not improve pregnancy potential. The reason is that for every deposit observed, there are numerous others that are in the process of developing and are not visible to the naked eye and whether visible or not, such translucent deposits still produce toxins. This also explains why surgery to remove visible endometriosis deposits, controlled ovarian stimulation with or without intrauterine insemination will usually not improve pregnancy potential. Only IVF, through removing eggs before they are exposed to the toxic pelvic environment, fertilizing them in-vitro and then transferring the embryos to the uterus represents the only way to enhance pregnancy potential.
•Third-Pelvic adhesions and Scarring: In its most severe form, endometriosis is associated with scarring and adhesions in the pelvis, resulting in damage to, obstruction or fixation of the fallopian tubes to surrounding structures, thereby preventing the union of sperm and eggs.
•Fourth-Ovarian Endometriomas, Advanced endometriosis is often associated with ovarian cysts (endometriomas/chocolate cysts) that are filled with altered blood and can be large and multiple. When these are sizable (>1cm) they can activate surrounding ovarian connective tissue causing production of excessive male hormones (androgens) such as testosterone and androstenedione. Excessive ovarian androgens can compromise egg development in the affected ovary (ies) resulting in an increased likelihood of numerical chromosomal abnormalities (aneuploidy) and reduced egg/embryo competency”. In my opinion large ovarian endometriomas need to be removed surgically or rough sclerotherapy before embarking on IVF.
•Fifth- Immunologic Implantation Dysfunction (IID). Endometriosis, regardless of its severity is associated with immunologic implantation dysfunction linked to activation of uterine natural killer cells (NKa) and cytotoxic uterine lymphocytes (CTL) in about 30 of cases. This is diagnosed by testing the woman’s blood for NKa using the K-562 target cell test or by endometrial biopsy for cytokine analysis, and, for CTL by doing a blood immunophenotype. These NKa attack the invading trophoblast cells (developing “root system” of the embryo/early conceptus) as soon as it tries to gain attachment to the uterine wall. In most cases, this results in death of the embryo even before the pregnancy is diagnosed and sometimes, in a chemical pregnancy or even an early miscarriage. . As such, many women with endometriosis, rather than being infertile, in the strict sense of the word, often actually experience repeated undetected “mini-miscarriages”.
Advanced Endometriosis: In its most advanced stage, anatomical disfiguration is causally linked to the infertility. In such cases, inspection at laparoscopy or laparoscopy will usually reveal severe pelvic adhesions, scarring and “chocolate cysts”. However, the quality of life of patients with advanced endometriosis is usually so severely compromised by pain and discomfort, that having a baby is often low on the priority list. Accordingly, such patients are usually often more interested in relatively radical medical and surgical treatment options (might preclude a subsequent pregnancy), such as removal of ovaries, fallopian pubis and even the uterus, as a means of alleviating suffering.
Moderately Severe Endometriosis. These patients have a modest amount of scarring/ adhesions and endometriotic deposits which are usually detected on the ovaries, fallopian tubes, bladder surface and low in the pelvis, behind the uterus. In such cases, the fallopian tubes are usually opened and functional.
Mild Endometriosis: These patients who at laparoscopy or laparotomy are found to have no significant distortion of pelvic anatomy are often erroneously labeled as having “unexplained” infertility. To hold that the there can only infertility can only be attributed to endometriosis if significant anatomical disease can be identified, is to ignore the fact that, biochemical, hormonal and immunological factors profoundly impact fertility. Failure to recognize this salient fact continues to play havoc with the hopes and dreams of many infertile endometriosis patients.
TREATMENT:
The following basic concepts apply to management of endometriosis-related infertility:
1.Controlled Ovulation stimulation (COS) with/without intrauterine insemination (IUI): Toxins in the peritoneal secretions of women with endometriosis exert a negative effect on fertilization potential regardless of how sperm reaches the fallopian tubes. This helps explain why COS with or without IUI will usually not improve the chances of pregnancy (over no treatment at all) in women with endometriosis. IVF is the only way by which to bypass this problem.
2.Laparoscopy orLaparotomy Surgery aimed at restoring the anatomical integrity of the fallopian tubes does not counter the negative influence of toxic peritoneal factors that inherently reduce the chances of conception in women with endometriosis four to six fold. Nor does it address the immunologic implantation dysfunction (IID) commonly associated with this condition. Pelvic surgery is relatively contraindicated for the treatment of infertility associated with endometriosis, when the woman is more than 35 years of age. With the pre-menopause approaching, such women do not have the time to waste on such less efficacious alternatives. In contrast, younger women who have time on their side might consider surgery as a viable option. Approximately 30 -40 percent of women under 35 years of age with endometriosis will conceive with in two to three years following corrective pelvic surgery.
3.Sclerotherapy for ovarian endometriomas.: About 10 years ago I introduced “sclerotherapy”, a relatively non-invasive, safe and effective outpatient method to permanently eliminate endometriomas without surgery being required. Sclerotherapy for ovarian endometriomas involves needle aspiration of the liquid content of the endometriotic cyst, followed by the injection of 5% tetracycline into the cyst cavity. Treatment results in disappearance of the lesion within 6-8 weeks, in more than 75% of cases so treated. Ovarian sclerotherapy can be performed under local anesthesia or under general anesthesia. It has the advantage of being an ambulatory office- based procedure, at low cost, with a low incidence of significant post-procedural pain or complications and the avoidance of the need for laparoscopy or laparotomy
4.The role of selective immunotherapy Women with antiphospholipid antibodies (APA’s) experience improved IVF birth rates when heparinoids (Clexane/Lovenox) is administered from the onset of ovarian stimulation with gonadotropins until the 10th week of pregnancy.
a.About Intralipid (IL) and steroid therapy: Intralipid (IL) is a solution of small lipid droplets suspended in water. When administered intravenously, IL provides essential fatty acids, linoleic acid (LA), an omega-6 fatty acid, alpha-linolenic acid (ALA), an omega-3 fatty acid.IL is made up of 20% soybean oil/fatty acids (comprising linoleic acid, oleic acid, palmitic acid, linolenic acid and stearic acid) , 1.2% egg yolk phospholipids (1.2%), glycerin (2.25%) and water (76.5%).IL exerts a modulating effect on certain immune cellular mechanisms largely by down-regulating activated natural killer cells (NKa). This effect is enhanced through the concomitant administration of corticosteroids such as dexamethasone, prednisone, and prednisolone which enhance the therapeutic effect by suppressing cytotoxic/activated T-lymphocytes (CTL). This effect of IL might is likely due to its ability to
5. In vitro fertilization is the treatment of choice for women with endometriosis. This is especially true for women more than 35 years of age or where surgery and treatment with fertility agents has proven to be unsuccessful. We anticipate that approximately 75 percent of such women will achieve the birth of one or more babies within three IVF attempts performed at SIRM.
6.
?suppresses pro-inflammatory cellular (Type-1) cytokines such as interferon gamma and TNF-alpha. In-vitro testing has shown that IL successfully and completely down-regulates activated natural killer cells (NKa) within 2-3 weeks in 78% of women experiencing immunologic implantation dysfunction. In this regard it is just as effective as Intravenous Gamma globulin (IVIg) but at a fraction of the cost and with a far lower incidence of side-effects. Its effect lasts for 4-9 weeks when administered in early pregnancy.
In summary, i believe that you need to undergo a thorough immunologic evaluation which should include both assessment of NK cell activity (using the K-562 target cell test) and antiphospholipid antibodies. It would not surprise me if you have NK cell activation and APA.
Preparation and How new Methodology is Impacting IVF. Please visit my new Blog on this very site, http://www.DrGeoffreySherIVF.com, find the “search bar” and type in the titles of any/all of the articles listed below, one by one. “Click” and you will immediately be taken to those you select. Please also take the time to post any questions or comments with the full expectation that I will (as always) respond promptl
•Controlled Ovarian Stimulation (COS) for IVF: Selecting the ideal protocol
•Ovarian Stimulation for IVF using GnRH Antagonists: Comparing the Agonist/Antagonist Conversion Protocol.(A/ACP) With the“Conventional” Antagonist Aproach
•IVF: Factors Affecting Egg/Embryo “competency” during Controlled Ovarian Stimulation(COS)
•Anti Mullerian Hormone (AMH) Measurement to Assess Ovarian Reserve and Design the Optimal Protocol for Controlled Ovarian Stimulation (COS) in IVF.
•The “Biological Clock” and how it should Influence the Selection and Design of Ovarian Stimulation Protocols for IVF.
•Diagnosing and Treating Infertility due to Diminished Ovarian Reserve (DOR)
•Human Growth Hormone Administration in IVF: Does it Enhances Egg/Embryo Quality and Outcome?
•The BCP: Does Launching a Cycle of Controlled Ovarian Stimulation (COS). Coming off the BCP Compromise Response?
•Frozen Embryo Transfer (FET): A Rational Approach to Hormonal.
•IVF Failure and Implantation Dysfunction: The Role of Endometrial Thickness, Uterine Pathology and Immunologic Factors
•Why did my IVF Fail
•Dysfunction (IID) & Infertility (IID):PART 1-Background
•Immunologic Implantation Dysfunction (IID) & Infertility (IID):PART 2- Making a Diagnosis
•Immunologic Dysfunction (IID) & Infertility (IID):PART 3-Treatment
•Thyroid autoantibodies and Immunologic Implantation Dysfunction (IID)
•Immunologic Implantation Dysfunction: Importance of Meticulous Evaluation and Strategic Management:(Case Report)
•Natural Killer Cell Activation (NKa) and Immunologic Implantation Dysfunction in IVF: The Controversy!
•Traveling for IVF from Out of State/Country–
•A personalized, stepwise approach to IVF
•The Role of Nutritional Supplements in Preparing for IVF
I invite you to call 702-699-7437 or 800-780-7437 or go online on this site and set up a one hour Skype consultation with me to discuss your case in detail.
I also suggest that you access the 4th edition of my book ,”In Vitro Fertilization, the ART of Making Babies”. It is available as a down-load through http://www.Amazon.com or from most bookstores and public libraries.
Geoff Sher
Hi Dr Sher, I have just completed a cycle of egg retrieval and ICSI. Of the 7 eggs fertilised all have reached day 3 and are of top or good quality. They have now been frozen as we move onto another cycle. Can we be fairly confident that all 7 should reach day 5 since they are of good quality?
Can we expect them to also pass the PGS test since they are of good quality? Are there any stats on how many viable embryos should we expect from the 7?
Thanks so much in advance.
Unfortuately not Sheena,
Usually (even in young women) less tan a half of morphologically good day 3 embryos are likely to develop into expanded blastocysts and at best, half of those should be expected to be chromosomally normal.
Geoff Sher
Hello, my name is Lauren Calipari, and I am a year 12 student at Mary Mackillop College. I am currently completing my SACE 2 subject – Research Project. My question is ‘What are the risks on women who undergo the IVF process and how do these factors affect them physically and psychologically?’
I have a few interview questions on this topic, and was wondering if you could help me out and complete them, as this will help my research enormously.
I would really appreciate it!
Thankyou so much for your time
Wish I could help you Lauren, butthat is not the pupose of this blog. I purely focus on personal medically related problems here.
Sorry and good luck!
Geoff Sher