Ask Our Doctors – Archive

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.

19,771 Comments

  1. Hi Dr Sher, Is it ok to take suprefact nasal spray on day 21 if we have had unprotected intercourse on day 14 or 15?
    Many thanks!

    • If you are trying to conceive in the same cycle…I would not do so!

      Geoff Sher

  2. Hi Dr Sher, What is the difference between a long protocol and a modified long protocol? Why do you recommend a modified long protocol for older women as opposed to the long protocol? What are the advantages of the modified long protocol vs the long protocol? Many thanks!

    • The use of GnRH antagonists as currently prescribed in ovarian stimulation cycles, i.e. the administration of 250mcg daily from the 6or 7th day of stimulation with gonadotropins is in my opinion problematic when used in women who have diminished ovarian reserve (DOR) (i.e. are “poor responders” to gonadotropins),. In such cases the commencement of pituitary LH suppression with GnRH antagonists 6-7 days into the stimulation fails to suppress high tonic pituitary LH in the first few days of stimulation and it is at this time , formative (early) stage of follicle/egg development early on in the most the vulnerable stage. One of the roles of LH is to promote androgen (mail hormone) production which in turn is essential (in modest amounts) for optimal follicular growth to take place. In women with high LH and/or ovarian stromal hyperplasia, the failure of conventional GnRH antagonist protocols to address this issue, results in the inevitable excessive exposure of follicles to androgens (mainly testosterone). This can adversely influence egg/embryo quality and endometrial development.

      The likely reason for the traditional approach of commencing GnRH- antagonist 6-7 days after stimulation with gonadotropins commences, is to try to block the release of LH (later in the cycle) so as to try to prevent the occurrence of the so called “premature LH surge” (syn; premature luteinization), which is most commonly seen in women with DOR, who tend to be susceptible to LH-induced “follicular exhaustion” resulting in poor egg/embryo quality. But if truth be known, the term “premature LH surge” is a misnomer. Contrary to popular belief, the concept of LH rising as a “terminal event” late in the cycle is, erroneous. In fact rather than representing an isolated event, the so called “premature LH surge” is the end point of a progressive escalation in LH (“a staircase effect”) which results in increasing ovarian stromal activation with commensurate growing androgen (mainly testosterone) production. A more appropriate term would be …”Premature Luteinization”. So, trying to improve ovarian response and protect follicular exhaustion by administering Ganirelix/Cetrotide/Orgalutron starting during the final few days of ovarian stimulation is like trying to prevent a shipwreck by collision, through removing the tip of an iceberg. The use of such late GnRH-antagonist protocols in women who have a normal ovarian reserve (i.e. are “good responders”) will probably not produce such adverse effects because the tonic endogenous LH levels are low (normal) and such women are unlikely to have ovarian stromal hyperplasia.
      It is my opinion that some form of pituitary blockade, either in the form of a GnRH agonist (e.g. Lupron, Buserelin, Superfact or Decapeptyl) or a GnRH antagonist (e.g. Orgalutron Cetrotide, and Ganirelix) is an essential component in ovarian stimulation of “poor responders” undergoing IVF. If this is not done, a progressive rise in LH –induced ovarian androgens (male hormones ….mainly testosterone) will often adversely affect follicle/ egg development, resulting in compromised embryo quality. However, when a GnRH antagonist is used in women with DOR, it is my belief (for reasons cited above) that it should preferably be administered from early in the cycle, at the time that gonadotropin stimulation starts and NOT 6-7 days later, as is traditionally done. In such cases, the dosage of the GnRH antagonist can in my opinion be reduced to 125mcg daily.
      The long Pituitary agonist down-Regulation approach: With the long Lupron down regulation protocol the administration of the GnRH agonist begins several days in advance of commencing gonadotropin stimulation. As such, by the time gonadotropin stimulation commences, most LH has been expunged from the pituitary gland thereby avoiding over-production of ovarian androgens. However, this protocol involves continued administratio0n of the GnRH agonist throughout the stimulation phase and this is not ideal for women who have DOR where prolonged administration of GnRH agonists could blunt follicular response to ovarian stimulation with gonadotropins (perhaps by competitively binding with ovarian FSH receptors).
      The agonist-Antagonist conversion protocol (A/ACP). I introduced the A/ACP for women with DOR, in order to counter the suppression effect of the traditional long Pituitary agonist down-regulation protocol.. With the A/ACP, low dose GnRH-antagonist (Ganirelix/Cetrotide Orgalutron) is commenced at the onset of menstrual bleeding that follows initiation of GnRH agonist therapy using a long-down-regulation protocol approach or at the onset of spontaneous menstruation. I currently prescribe the A/ACP to most of my IVF patients who have DOR. Results suggest that this is an optimal approach in such cases. In such cases I augment the stimulation with human growth hormone.
      There is one potential draw back to the use of the A/ACP, in that the sustained use of a GnRH antagonist throughout the stimulation phase of the cycle, appears to compromise the predictive value of serial plasma estradiol measurements as a measure of follicle growth and development in that the estradiol levels tend to be much lower in comparison to cases where an agonist (e.g. Lupron) alone is used or where a “conventional” short GnRH antagonist protocol is employed. Rather than this being due to reduced production of estradiol by the ovary(ies), the lower blood concentration of estradiol seen with prolonged exposure to GnRH-antagonist, could be the result of a subtle, agonist-induced alteration in the configuration of the estradiol molecule , such that currently available commercial kits used to measure estradiol levels are rendered much less sensitive/specific. Thus when the A/ACP is employed, we rely much more heavily on ultrasound growth of follicles along with observation of the trend in the rise of estradiol levels, than on absolute estradiol values. For this reason I avoid prescribing the A/ACP in “high responders” who are predisposed to the development of severe ovarian hyperstimulation syndrome (OHSS) where accurate measurement of plasma estradiol plays a very important role in the safe management of their stimulation cycles.

      The A/ACP with Estrogen priming: In women who have severe DOR (AMH=<0.1 ng/ml) I modify the A/ACP The A/ACP through incorporation of “estrogen priming” with injections of estradiol valerate (Delestrogen), given twice weekly for about a week following the initiation of the A/ACP, and prior to commencing FSH-dominant gonadotropin stimulation. I then continue this through gonadotropin stimulation. Estrogen Priming appears to further enhance ovarian response….presumably by up-regulating ovarian FSH-receptors. ”.
      “Flare Protocols” in women with DOR: With the “Flare” approach, GnRH agonist (e.g. Lupron/Buserelin/Superfact/Decapeptyl) is started with the initiation of gonadotropin stimulation. The agonist causes an immediate surge in pituitary gland LH release. Thus the follicles/ eggs of women on GnRH-agonist “flare protocols” are exposed to an exaggerated Lupron-induced LH release, (the “flare effect” The increased androgen production early on in the stimulation has a deleterious effect on egg development and thus on subsequent embryo quality.
      The Traditional GnRH-antagonist , ‘short protocol” in women with DOR: While the follicles/eggs of women, who receive GnRH antagonists starting 6-8 days into the stimulation cycle are exposed to endogenous LH -induced ovarian androgens( especially testosterone). While this might not be problematic in in women who have normal ovarian reserve (i.e. “normal responders”), it could be decidedly prejudicial in women with DOR (“poor responders”) where endogenous tonic LH activity is usually raised and the ovaries may be inordinately sensitive to LH. In such cases excessive exposure of follicles and eggs to androgens (mainly testosterone) could severely compromise egg development and thus embryo quality.
      Use of the Birth Control Pill to set up ovarian stimulation with gonadotropins: In my practice, patients are placed on a birth control pill for 10-40 days (depending on circumstance), before commencing a long antagonist protocol (whether conventional or the A/ACP). With this approach, the agonist is overlapped with the BCP in the last few days of its usage. Thereupon daily agonist administration continues until menstruation ensues a few days later at which point, the dosage of the agonist is halved and this is continued throughout stimulation until the hCG “trigger”.

      The rise in FSH that occurs in ovulating women 5-6 days prior to menses, initiates recruitment of follicles available for the upcoming cycle. The BCP by suppressing ovulation (and FSH) precludes this premenstrual rise in FSH, suppressing follicle recruitment. Premenstrual GnRH agonist administration overcomes this by inducing a premenstrual FSH surge which then serves to recruits follicles in a timely manner…for the upcoming COH cycle. Following use of the BCP (without prior overlap with agonist) the first 4-6 days of FSH administration must first recruit follicles before growing them.

      When the BCP is overlapped with a GnRH agonists towards the end of the BCP cycle, it triggers a pre-menstrual pituitary release of endogenous FSH (and LH). This results in recruitment of follicles to the antral follicle stage, whereupon the initiation of gonadotropin stimulation, while continuing agonist or supplanting this with low dose antagonist (i.e. A/ACP) to prevent further LH release, will induce an uninhibited and prompt follicle growth and development.

      Given that FSH is so important to antral follicle “recruitment” , since the BCP suppresses FSH, it is essential (in my opinion) that the contraceptive pill be overlapped with an agonist during the last 3 days of its use to promote FSH production. If this is omitted optimal antral follicle development will not occur, and the response to subsequent ovarian stimulation with gonadotropins will in my opinion, be suboptimal. This could result in discordant egg/follicle development, a longer period of ovarian stimulation and compromised egg/embryo quality. I believe that unless the use of a long pituitary down regulation approach is contemplated, launching ovarian stimulation coming off a BCP is best be avoided.

      I strongly recommend that you visit http://www.DrGeoffreySherIVF.com. Then go to my Blog and access the “search bar”. 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
      •IVF: Factors Affecting Egg/Embryo “competency” during Controlled Ovarian Stimulation(COS)
      •The Fundamental Requirements For Achieving Optimal IVF Success
      •Traveling for IVF from Out of State/Country–
      •A personalized, stepwise approach to IVF .
      Please call or email Julie Dahan, my patient concierge. She will guide you on how to set up an in-person or Skype consultation with me. You can reach Julie at on her cell phone or via email at any time:
      Julie Dahan
      •Email: Julied@sherivf.com
      •Phone: 702-533-2691
      ?800-780-7437

      Geoff Sher

      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.

  3. I’ve had 6 failed IVFs with AMA/DOR and MFI. All of the doctors I’ve seen suggest donor egg but how do we know it’s not the poor sperm causing the failures? Even though DH was extremely low in count and mobility with poor morphology, the doctors felt confident that as long as they used ICSI, it shouldn’t be the problem. Most of my embryos look good (grade 2) on day 3 but fall apart by day 5 and beyond. What tests can be done to figure out which one of us (or both) is the real problem? I’d hate to jump into a donor cycle and have the same problems. Thanks!

    • 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).

      The older a woman becomes, the more likely it is that her eggs will be chromosomally/genetically “incompetent” (not have the potential upon being fertilized and transferred, to result in a viable pregnancy). That is why, the likelihood of failure to conceive, miscarrying and of giving birth to a chromosomally defective child (e.g. with Down Syndrome) increases with the woman’s advancing age. In addition, as women age beyond 35Y there is commonly a progressive diminution in the number of eggs left in the ovaries, i.e. diminished ovarian reserve (DOR). So it is that older women as well as those who (regardless of age) have DOR have a reduced potential for IVF success. Much of this is due to the fact that such women tend to have increased production of LH biological activity which can result in excessive LH-induced ovarian male hormone (predominantly testosterone) production which in turn can have a deleterious effect on egg/embryo “competency”.
      While it is presently not possible by any means, to reverse the age-related effect on the woman’s “biological clock, certain ovarian stimulation regimes, by promoting excessive LH production (e.g. short agonist/Lupron- “flare” protocols, clomiphene and Letrozole), can make matters worse. Similarly, the amount/dosage of certain fertility drugs that contain LH/hCG (e.g. Menopur) can have a negative effect on the development of the eggs of older women and those who have DOR and should be limited.
      I try to avoid using such protocols/regimes (especially) in older women and those with DOR, favoring instead the use of the agonist/antagonist conversion protocol (A/ACP), a modified, long pituitary down-regulation regime, augmented by adding supplementary human growth hormone (HGH). I further recommend that such women be offered access to embryo banking of PGS (next generation gene sequencing/NGS)-selected normal blastocysts, the subsequent selective transfer of which by allowing them to to capitalize on whatever residual ovarian reserve and egg quality might still exist and thereby “make hay while the sun still shines” could significantly enhance the opportunity to achieve a viable pregnancy
      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
      •IVF: Factors Affecting Egg/Embryo “competency” during Controlled Ovarian Stimulation(COS)
      •The Fundamental Requirements For Achieving Optimal IVF Success
      •Ovarian Stimulation for IVF using GnRH Antagonists: Comparing the Agonist/Antagonist Conversion Protocol.(A/ACP) With the “Conventional” Antagonist Approach
      •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.
      • A Rational Basis for selecting Controlled Ovarian Stimulation (COS) protocols in women with Diminished Ovarian Reserve (DOR)
      •Diagnosing and Treating Infertility due to Diminished Ovarian Reserve (DOR)
      •Controlled Ovarian Stimulation (COS) in Older women and Women who have Diminished Ovarian Reserve (DOR): A Rational Basis for Selecting a Stimulation Protocol
      •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?
      •Blastocyst Embryo Transfers Should be the Standard of Care in IVF
      •Frozen Embryo Transfer (FET) versus “Fresh” ET: How to Make the Decision
      •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 Testing (PGS) in IVF: It Should be Used Selectively and NOT be Routine.
      •Preimplantation Genetic Sampling (PGS) Using: Next Generation Gene Sequencing (NGS): Method of Choice.
      •PGS in IVF: Are Some Chromosomally Abnormal Embryos Capable of Resulting in Normal Babies and Being Wrongly Discarded?
      •PGS and Assessment of Egg/Embryo “competency”: How Method, Timing and Methodology Could Affect Reliability
      •Treating Out-of-State and Out-of-Country Patients at Sher-IVF in Las Vegas:
      •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
      •Premature Luteinization (“the premature LH surge): Why it happens and how it can be prevented.
      •IVF Egg Donation: A Comprehensive Overview
      I invite you to arrange to have a Skype or an in-person consultation with me to discuss your case in detail. If you are interested, please contact Julie Dahan, at:

      Email: Julied@sherivf.com

      OR

      Phone: 702-533-2691
      800-780-7437

      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.

  4. Hello Dr.
    I have a 28 yr old daughter who has had 3 pregnancy losses. Her first one was a blightum her second was a eptopic and her last one was though IVF and was a missed miscarriage. My question is she only has one Frozen embroy left but the grade was not as good as the first and she lost the first one. Will this one be a loss too?

    • Unless the cause for recurrent pregnancy loss is identified in advance …the last attempt could also end badly.

      When it comes to reproduction, humans are the poorest performers of all mammals. In fact we are so inefficient that up to 75% of fertilized eggs do not produce live births, and up to 30% of pregnancies end up being lost within 10 weeks of conception (in the first trimester). RPL is defined as two (2) or more failed pregnancies. Less than 5% of women will experience two (2) consecutive miscarriages, and only 1% experience three or more.
      Pregnancy loss can be classified by the stage of pregnancy when the loss occurs:
      •Early pregnancy loss (first trimester)
      •Late pregnancy loss (after the first trimester)
      •Occult “hidden” and not clinically recognized, (chemical) pregnancy loss (occurs prior to ultrasound confirmation of pregnancy)
      •Early pregnancy losses usually occur sporadically (are not repetitive).
      In more than 70% of cases the loss is due to embryo aneuploidy (where there are more or less than the normal quota of 46 chromosomes). Conversely, repeated losses (RPL), with isolated exceptions where the cause is structural (e.g., unbalanced translocations), are seldom attributable to numerical chromosomal abnormalities (aneuploidy). In fact, the vast majority of cases of RPL are attributable to non-chromosomal causes such as anatomical uterine abnormalities or Immunologic Implantation Dysfunction (IID).
      Since most sporadic early pregnancy losses are induced by chromosomal factors and thus are non-repetitive, having had a single miscarriage the likelihood of a second one occurring is no greater than average. However, once having had two losses the chance of a third one occurring is double (35-40%) and after having had three losses the chance of a fourth miscarriage increases to about 60%. The reason for this is that the more miscarriages a woman has, the greater is the likelihood of this being due to a non-chromosomal (repetitive) cause such as IID. It follows that if numerical chromosomal analysis (karyotyping) of embryonic/fetal products derived from a miscarriage tests karyotypically normal, then by a process of elimination, there would be a strong likelihood of a miscarriage repeating in subsequent pregnancies and one would not have to wait for the disaster to recur before taking action. This is precisely why we strongly advocate that all miscarriage specimens be karyotyped.
      There is however one caveat to be taken into consideration. That is that the laboratory performing the karyotyping might unwittingly be testing the mother’s cells rather than that of the conceptus. That is why it is not possible to confidently exclude aneuploidy in cases where karyotyping of products suggests a “chromosomally normal” (euploid) female.
      Late pregnancy losses (occurring after completion of the 1st trimester/12th week) occur far less frequently (1%) than early pregnancy losses. They are most commonly due to anatomical abnormalities of the uterus and/or cervix. Weakness of the neck of the cervix rendering it able to act as an effective valve that retains the pregnancy (i.e., cervical incompetence) is in fact one of the commonest causes of late pregnancy loss. So also are developmental (congenital) abnormalities of the uterus (e.g., a uterine septum) and uterine fibroid tumors. In some cases intrauterine growth retardation, premature separation of the placenta (placental abruption), premature rupture of the membranes and premature labor can also causes of late pregnancy loss.
      Much progress has been made in understanding the mechanisms involved in RPL. There are two broad categories:
      1.Problems involving the uterine environment in which a normal embryo is prohibited from properly implanting and developing. Possible causes include:
      •Inadequate thickening of the uterine lining
      •Irregularity in the contour of the uterine cavity (polyps, fibroid tumors in the uterine wall, intra-uterine scarring and adenomyosis)
      •Hormonal imbalances (progesterone deficiency or luteal phase defects). This most commonly results in occult RPL.
      •Deficient blood flow to the uterine lining (thin uterine lining).
      •Immunologic implantation dysfunction (IID). A major cause of RPL. Plays a role in 75% of cases where chromosomally normal preimplantation embryos fail to implant.
      •Interference of blood supply to the developing conceptus can occur due to a hereditary clotting disorder known as Thrombophilia.
      2.Genetic and/or structural chromosomal abnormality of the embryo.Genetic abnormalities are rare causes of RPL. Structural chromosomal abnormalities are slightly more common but are also occur infrequently (1%). These are referred to as unbalanced translocation and they result from part of one chromosome detaching and then fusing with another chromosome. Additionally, a number of studies suggest the existence of paternal (sperm derived) effect on human embryo quality and pregnancy outcome that are not reflected as a chromosomal abnormality. Damaged sperm DNA can have a negative impact on fetal development and present clinically as occult or early clinical miscarriage. The Sperm Chromatin Structure Assay (SCSA) which measures the same endpoints are newer and possibly improved methods for evaluating.

      IMMUNOLOGIC IMPLANTATION DYSFUNCTION
      Autoimmune IID: Here an immunologic reaction is produced by the individual to his/her body’s own cellular components. The most common antibodies that form in such situations are APA and antithyroid antibodies (ATA).
      But it is only when specialized immune cells in the uterine lining, known as cytotoxic lymphocytes (CTL) and natural killer (NK) cells, become activated and start to release an excessive/disproportionate amount of TH-1 cytokines that attack the root system of the embryo, that implantation potential is jeopardized. Diagnosis of such activation requires highly specialized blood test for cytokine activity that can only be performed by a handful of reproductive immunology reference laboratories in the United States.
      Alloimmune IID, i.e., where antibodies are formed against antigens derived from another member of the same species, is believed to be a relatively common immunologic cause of recurrent pregnancy loss.
      Autoimmune IID is often genetically transmitted. Thus it should not be surprising to learn that it is more likely to exist in women who have a family (or personal) history of primary autoimmune diseases such as lupus erythematosus (LE), scleroderma or autoimmune hypothyroidism (Hashimoto’s disease), autoimmune hyperthyroidism (Grave’s disease), rheumatoid arthritis, etc. Reactionary (secondary) autoimmunity can occur in conjunction with any medical condition associated with widespread tissue damage. One such gynecologic condition is endometriosis. Since autoimmune IID is usually associated with activated NK and T-cells from the outset, it usually results in such very early destruction of the embryo’s root system that the patient does not even recognize that she is pregnant. Accordingly the condition usually presents as “unexplained infertility” or “unexplained IVF failure” rather than as a miscarriage.

      Alloimmune IID, on the other hand, usually starts off presenting as unexplained miscarriages (often manifesting as RPL). Over time as NK/T cell activation builds and eventually becomes permanently established the patient often goes from RPL to “infertility” due to failed implantation. RPL is more commonly the consequence of alloimmune rather than autoimmune implantation dysfunction.
      However, regardless, of whether miscarriage is due to autoimmune or alloimmune implantation dysfunction the final blow to the pregnancy is the result of activated NK cells and CTL in the uterine lining that damage the developing embryo’s “root system” (trophoblast) so that it can no longer sustain the growing conceptus. This having been said, it is important to note that autoimmune IID is readily amenable to reversal through timely, appropriately administered, selective immunotherapy, and alloimmune IID is not. It is much more difficult to treat successfully, even with the use of immunotherapy. In fact, in some cases the only solution will be to revert to selective immunotherapy plus using donor sperm (provided there is no “match” between the donor’s DQa profile and that of the female recipient) or alternatively to resort to gestational surrogacy.
      DIAGNOSING THE CAUSE OF RPL
      In the past, women who miscarried were not evaluated thoroughly until they had lost several pregnancies in a row. This was because sporadic miscarriages are most commonly the result of embryo numerical chromosomal irregularities (aneuploidy) and thus not treatable. However, a consecutive series of miscarriages points to a repetitive cause that is non-chromosomal and is potentially remediable. Since RPL is most commonly due to a uterine pathology or immunologic causes that are potentially treatable, it follows that early chromosomal evaluation of products of conception could point to a potentially treatable situation. Thus I strongly recommend that such testing be done in most cases of miscarriage. Doing so will avoid a great deal of unnecessary heartache for many patients.
      Establishing the correct diagnosis is the first step toward determining effective treatment for couples with RPL. It results from a problem within the pregnancy itself or within the uterine environment where the pregnancy implants and grows. Diagnostic tests useful in identifying individuals at greater risk for a problem within the pregnancy itself include:

      •Karyotyping (chromosome analysis) both prospective parents
      •Assessment of the karyotype of products of conception derived from previous miscarriage specimens
      •Ultrasound examination of the uterine cavity after sterile water is injected or sonohysterogram, fluid ultrasound, etc.)
      •Hysterosalpingogram (dye X-ray test)
      •Hysteroscopic evaluation of the uterine cavity
      •Full hormonal evaluation (estrogen, progesterone, adrenal steroid hormones, thyroid hormones, FSH/LH, etc.)
      •Immunologic testing to include:
      a)Antiphospholipid antibody (APA) panel
      b)Antinuclear antibody (ANA) panel
      c)Antithyroid antibody panel (i.e., antithyroglobulin and antimicrosomal antibodies)
      d)Reproductive immunophenotype
      e)Natural killer cell activity (NKa) assay (i.e., K562 target cell test)
      f)Alloimmune testing of both the male and female partners
      TREATMENT OF RPL
      Treatment for Anatomic Abnormalities of the Uterus: This involves restoration through removal of local lesions such as fibroids, scar tissue, and endometrial polyps or timely insertion of a cervical cerclage (a stitch placed around the neck of the weakened cervix) or the excision of a uterine septum when indicated.
      Treatment of Thin Uterine Lining: A thin uterine lining has been shown to correlate with compromised pregnancy outcome. Often this will be associated with reduced blood flow to the endometrium. Such decreased blood flow to the uterus can be improved through treatment with sildenafil and possibly aspirin.
      Sildenafil (Viagra) Therapy. Viagra has been used successfully to increase uterine blood flow. However, to be effective it must be administered starting as soon as the period stops up until the day of ovulation and it must be administered vaginally (not orally). Viagra in the form of vaginal suppositories given in the dosage of 25 mg four times a day has been shown to increase uterine blood flow as well as thickness of the uterine lining. To date, we have seen significant improvement of the thickness of the uterine lining in about 70% of women treated. Successful pregnancy resulted in 42% of women who responded to the Viagra. It should be remembered that most of these women had previously experienced repeated IVF failures.

      Use of Aspirin: This is an anti-prostaglandin that improves blood flow to the endometrium. It is administered at a dosage of 81 mg orally, daily from the beginning of the cycle until ovulation.
      Treating Immunologic Implantation Dysfunction with Selective Immunotherapy: Modalities such as IL/IVIg, heparinoids (Lovenox/Clexane), and corticosteroids (dexamethasone, prednisone, prednisolone) can be used in select cases depending on autoimmune or alloimmune dysfunction.
      The Use of IVF in the Treatment of RPL
      In the following circumstances, IVF is the preferred option:
      1.When in addition to a history of RPL, another standard indication for IVF (e.g., tubal factor, endometriosis, and male factor infertility) is superimposed.
      2.In cases where selective immunotherapy is needed to treat an immunologic implantation dysfunction.
      The reason for IVF being a preferred approach in such cases is that in order to be effective, the immunotherapy needs to be initiated well before spontaneous or induced ovulation. Given the fact that the anticipated birthrate per cycle of COS with or without IUI is at best about 15%, it follows that short of IVF, to have even a reasonable chance of a live birth, most women with immunologic causes of RPL would need to undergo immunotherapy repeatedly, over consecutive cycles. Conversely, with IVF, the chance of a successful outcome in a single cycle of treatment is several times greater and, because of the attenuated and concentrated time period required for treatment, IVF is far safer and thus represents a more practicable alternative
      Since embryo aneuploidy is a common cause of miscarriage, the use of preimplantation genetic diagnosis (PGD), with tests such as CGH, can provide a valuable diagnostic and therapeutic advantage in cases of RPL. PGD requires IVF to provide access to embryos for testing.
      There are a few cases of intractable alloimmune dysfunction due to absolute DQ alpha matching where Gestational Surrogacy or use of donor sperm could represent the only viable recourse, other than abandoning treatment altogether and/or resorting to adoption. Other non-immunologic factors such as an intractably thin uterine lining or severe uterine pathology might also warrant that last resort consideration be given to gestational surrogacy.
      The good news is that if a couple with RPL is open to all of the diagnostic and treatment options referred to above, a live birthrate of 70%–80% is ultimately achievable.

      I strongly recommend that you visit http://www.DrGeoffreySherIVF.com. Then go to my Blog and access the “search bar”. 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
      •IVF: Factors Affecting Egg/Embryo “competency” during Controlled Ovarian Stimulation(COS)
      •The Fundamental Requirements For Achieving Optimal IVF Success
      •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.
      •IVF Failure and Implantation Dysfunction:
      •The Role of 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
      •Intralipid and IVIG therapy: Understanding the Basis for its use in the Treatment of Immunologic Implantation Dysfunction (IID)
      •Intralipid (IL) Administration in IVF: It’s Composition; How it Works; Administration; Side-effects; Reactions and Precautions
      •Natural Killer Cell Activation (NKa) and Immunologic Implantation Dysfunction in IVF: The Controversy!
      •Endometrial Thickness, Uterine Pathology and Immunologic Factors
      •Vaginally Administered Viagra is Often a Highly Effective Treatment to Help Thicken a Thin Uterine Lining
      •Treating Out-of-State and Out-of-Country Patients at Sher-IVF in Las Vegas:
      •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
      Please call or email Julie Dahan, my patient concierge. She will guide you on how to set up an in-person or Skype consultation with me. You can reach Julie at on her cell phone or via email at any time:
      Julie Dahan
      •Email: Julied@sherivf.com
      •Phone: 702-533-2691
      ?800-780-7437

      Geoff Sher

      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.

  5. IVF #2 14 months ago resulted in healthy twins. We have 7 frozen embryos (day 5 and day 6 blasts) Is genetic testing on already-frozen blasts possible, or can that only be done prior to freezing?

    • Answered earlier!

      Geoff Sher