Assisted reproductive technologies (ART) pregnancy rates improve with the replacement of multiple embryos. The specific number of embryos to be transferred (typically between two and four) is based on a patient's age and past history and a morphologic assessment of embryo quality. Superovulation, with the goal of multifollicular recruitment and the harvest of multiple preovulatory oocytes, is therefore an integral aspect of in vitro fertilization and related techniques. Given the considerable interindividual variability in response to superovulation, the selection of an appropriate ovarian stimulation protocol is critical both for the safety and success of ART. Specific superovulation strategies have therefore been developed for treatment of abnormal response patients as well as for patients expected to manifest a "normal" response to ovulation inducing agents.
superovulation strategies assisted reproductive technologies, ovarian stimulation protocol IVF multifollicular recruitment, poor responder superovulation in vitro fertilization, Davis Rosenwaks superovulation ART protocols, GnRH agonist antagonist ovarian stimulation IVF, embryo transfer number selection ART outcomes, interindividual variability ovarian stimulation response, ovulation induction gonadotropin protocol selection ART, controlled ovarian hyperstimulation preovulatory oocyte retrieval, abnormal responder IVF stimulation protocol adjustment
PMID 11679901 11679901 DOI 10.1055/s-2001-18039 10.1055/s-2001-18039 Davis et al. 2001, Davis 2001
Cite this article
Davis, O. K., & Rosenwaks, Z. (2001). Superovulation strategies for assisted reproductive technologies. Seminars in reproductive medicine, 19(3), 207-212. https://doi.org/10.1055/s-2001-18039
Davis OK, Rosenwaks Z. Superovulation strategies for assisted reproductive technologies. Semin Reprod Med. 2001;19(3):207-212. doi:10.1055/s-2001-18039
Davis, Owen K., and Zev Rosenwaks. "Superovulation strategies for assisted reproductive technologies." Seminars in reproductive medicine, vol. 19, no. 3, 2001, pp. 207-212.
To confirm that hCG levels in follicular fluid and serum would be comparable between i.m. and s.c. administration of purified hCG. In a prospective study, serum and follicular fluid levels of hCG after an i.m. or s.c. injection of 10,000 IU of hCG were evaluated 36 hours after injection, that is, at the time of oocyte retrieval. This study was carried out in a university-affiliated IVF program. PATIENT(S): Forty women undergoing oocyte retrieval were entered into the study at the time of egg retrieval, that is, 36 hours after hCG administration. INTERVENTION(S): S.c. or i.m. injection of hCG. MAIN OUTCOME MEASURE(S): Serum and follicular fluid concentrations of hCG were evaluated 36 hours after injection at the time of oocyte retrieval. RESULT(S): There was a significantly higher serum hCG level in the s.c. group (348.6 +/- 98 IU/L) vs. the i.m. group (259.0 +/- 115 IU/L) and a significantly higher follicular fluid hCG level in the s.c. vs. the i.m. group (233.5 +/- 85 vs. 143.4 +/- 134 IU/L). CONCLUSION(S): After purified hCG administration via the s.c. route, both serum and follicular fluid levels are greater compared with the i.m. route.
To review the use of hCG and to describe the clinical benefit of recombinant hCG (r-hCG) based on the published results of prospective, randomized studies. Review of published articles. Tertiary infertility care center.None.None. Oocyte number and quality, luteal phase progesterone, pregnancy and OHSS rate, and local tolerability. The published data consistently show that single doses of 250 microg r-hCG and 5,000 IU urinary (u)-hCG produce similar clinical outcomes when used in infertility treatment cycles for timed intercourse, IUI, and IVF in terms of the number of oocytes retrieved, number of mature oocytes harvested, and fertilization and pregnancy rates attained. Single doses of 10,000 IU u-hCG also gave results comparable to single doses of 250 microg r-hCG. P levels in the midluteal phase were significantly higher with the use of r-hCG compared with u-hCG, and local injection site adverse effects were significantly less frequent, demonstrating the higher purity of the recombinant product. A single 500-microg dose of r-hCG led to a higher rate of ovarian hyperstimulation syndrome compared with a 250-microg dose, with no significant improvement in pregnancy rates.A single dose of 250 microg r-hCG was at least as effective as single doses of 5,000 or 10,000 IU u-hCG but offered the advantages associated with use of a recombinant product: local injection site adverse effects were significantly less frequent with r-hCG than with u-hCG.
A large part of infertility treatment involves the use of exogenous gonadotropins. The last decade has seen a progressive switch from human menopausal gonadotropin (hMG), the original gonadotropin product, to progressively more costly products, primarily or exclusively containing follicle-stimulating hormone (FSH). Though obviously at least in part driven by marketing efforts of pharmaceutical companies, this switch has received relatively little scrutiny despite its obvious cost implications. We therefore investigated whether a switch back to a generic or less costly hMG-driven ovulation induction protocol would affect patient outcome after ovulation induction and, by implications, with other assisted reproductive technologies. We prospectively studied clinical pregnancy rates in a large number of consecutive ovulation induction cycles in a well-defined patient population (group 1) which, after October of 1997, had been switched from a predominantly FSH to an hMG-driven protocol, based on an institutional formulary change. Until a transition period (between July and September 1997), this patient population had been on a primarily FSH-driven protocol (between July 1996 and June 1997). In parallel, we evaluated a second patient population (group 2), which was managed by the same physicians outside of formulary requirements and remained almost exclusively on principally FSH-driven ovulation induction cycles. FSHand hMG-driven ovulation induction protocols did not differ in pregnancy outcome during the prospective study period. Group 1 patients, however, demonstrated a significant increase in pregnancy rates after the switch from FSH to hMG stimulation had taken place (P = 0.02), while group 2 patients demonstrated no change in pregnancy rate during the same time period. Generic hMG products do not adversely affect pregnancy rates in comparison to more costly FSH products in routine ovulation induction cycles and should be considered an appropriate alternative to more expensive FSH products.
Human chorionic gonadotropin (hCG) is widely used as a surrogate to luteinizing hormone (LH) to trigger ovulation in controlled ovarian hyperstimulation (COH). Yet this molecule may exert direct effects on the endometrium. These effects, not mediated by ovarian hormones, are probably a consequence of stimulation of endometrial hCG/LH receptors. Because the half-life of hCG differs markedly from that of LH, possible pharmacological effects of hCG on the endometrium could alter endometrial receptivity in COH. Arguments supporting a clinical action of gonadotropins, and hCG in particular, on the endometrium abound. Notably, evidence has been reported of decidualization of stromal cells of the human endometrium in vitro as a result of exposure to gonadotropins, including hCG. The present article discusses, from a clinical standpoint, the main basis supporting the hypothesis that hCG administration as commonly used in infertility treatments may exert direct effects in vivo on endometrial histology and partake in endometrial transformations of the luteal phase. Preliminary results suggest that endometrial effects of hCG exist in vivo and should be taken into account when assessing the endometrial effects of hormones.