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28 - Reducing the Risk of High-Order Multiple Pregnancy Due to Ovulation Induction

from PART II - INFERTILITY EVALUATION AND TREATMENT

Published online by Cambridge University Press:  04 August 2010

Botros R. M. B. Rizk
Affiliation:
University of South Alabama
Juan A. Garcia-Velasco
Affiliation:
Rey Juan Carlos University School of Medicine,
Hassan N. Sallam
Affiliation:
University of Alexandria School of Medicine
Antonis Makrigiannakis
Affiliation:
University of Crete
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Summary

INTRODUCTION

Ovulation induction (OI) that is not part of an in vitro fertilization (IVF) cycle is the cause of 40–70 percent of high-order multiple pregnancies (HOMP), pregnancies with three or more conceptus, and 11–21 percent of twins, in countries where modern infertility treatment is practiced (Levene et al., 1992; Corchia et al., 1996; Reynolds et al., 2003; Figure 28.1). The high incidence of HOMP due to OI is primarily due to use of gonadotropins, follicular stimulation hormone (FSH), and human menopausal gonadotropin (HMG), but also occurs with use of clomiphene citrate (CC). In IVF cycles, twin and HOMP pregnancies can be prevented 99 percent of the time by transferring no more than one or two embryos. In OI cycles, twin and HOMP pregnancies can be prevented by canceling cycles when more than one or two preovulatory follicles are present or estrogen levels are too high and by aspirating supernumerary follicles. Recommendations to prevent multiple birth have included withholding human chorionic gonadotropin (hCG) administration when more than six follicles are 12 mm or larger (Valbuena et al., 1996; Dickey et al., 2001); when more than three follicles are 14 mm or larger (Pittrof et al., 1996; Takokoro et al., 1997), or 16 mm or larger (Yovich and Matson, 1988); when more than two (Zikopoulos et al., 1993) or three (Tomlinson et al., 1996; Hughes et al., 1998) follicles are 18 mm or larger; and when E2 exceeded 400 pg/mL (Kemmann et al., 1987), 600 pg/mL (Schenker et al., 1981), 1,000 pg/mL (Valbuena et al., 1996; Hughes et al., 1998), or 2,000 pg/mL (Vollenhoven et al., 1996; Remohi et al., 1989).

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Publisher: Cambridge University Press
Print publication year: 2008

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References

Aboulghar, M, Mansour, R, Serour, G, Abdrazek, A, Amin, Y, Rhodes, C. (2001) Controlled ovarian hyperstimulation and intrauterine insemination for treatment of unexplained infertility should be limited to a maximum of three trials. Fertil Steril 75;88–91.CrossRefGoogle ScholarPubMed
Arguinzoniz, M, Duerr-Myers, L, Engrand, P, Loumaye, E. (2000) The efficacy and safety of recombinant human luteinizing hormone for minimizing the number of pre-ovulatory follicles in WHO group I anovulatory women treated with rhFSH. Program of the 15th Annual Meeting of the European Socirty of Human Reproduction and Embryology, Bologna, Italy, Abst. O-176, 2000: pp. 70–1.Google Scholar
Balasch, J, Tur, R, Alvarez, P, Bajo, IO, Bosch, E, Bruna, I, Caballero, P, et al. (1996) The safety and effectiveness of stepwise and low-dose administration of follicle stimulating hormone in WHO Group II anovulatory infertile women: evidence from a large multicenter study in Spain. J Assist Reprod Genet 13;551–6.CrossRefGoogle ScholarPubMed
Benadiva, CA, Ben-Rafael, Z, Struass, JF III, Mastroianni, L Jr, Flickinger, GL. (1988) Ovarian response of individuals to different doses of human menopausal hormoneFertil Steril 49;997–1001.CrossRefGoogle Scholar
Ben-Rafael, Z, Struass, JF III, Mastroianni, L Jr, Flickinger, GL. (1986) Differences in ovarian stimulation in human menopausal gonadotropin treated women may be related to follicle stimulating hormone accumulation. Fertil Steril 46;586–92.CrossRefGoogle ScholarPubMed
Corchia, C, Mastroiacovo, P, Lanni, R, Mannazzu, R, Curro, V, Fabis, C. (1996) What proportion of multiple births are due to ovulation induction? A register-based study in Italy. Am J Public Health 86;851–4.CrossRefGoogle ScholarPubMed
Geyter, C, Geyter, M, Nieschlag, E. (1998) Low multiple pregnancy rates and reduced frequency of cancellation after ovulation induction with gonadotropins, if eventual supernumerary follicles are aspirated to prevent polyovulation. J Assist Reprod Genet 15;111–8.CrossRefGoogle ScholarPubMed
Dickey, RP. (2005) Pharmacokinetics and pharmacodynamics of exogenous gonadotropin administration, Fourth World Congress on Ovulation Induction 2004 From Anovulation to Assisted Reproduction, 1st Edn, Aracne editrice S.r.l., April 2005, pp. 123–157.Google Scholar
Dickey, RP. (2008) Strategies to reduce multiple pregnancies due to ovulation induction. Fertil Steril (In press).Google Scholar
Dickey, RP, Sartor, BM. (2005) The impact of ovulation induction and in vitro fertilization on the incidence of multiple gestations, in Blickstein, I and Keith, LG eds. Multiple Gestation; Epidemiology, Gestation & Perinatal outcome, Taylor & Francis Publishers, New York, 2005, chapter 19, pp. 119–139/942.Google Scholar
Dickey, RP, Olar, TT, Taylor, SN, Curole, DN, Rye, PH, Matulich, EM. (1991) Relationship of follicle number, serum estradiol, and other factors to birth rate and multiparity in human menopausal gonadotropin-induced intrauterine insemination cycles. Fertil Steril 56;89–92.CrossRefGoogle ScholarPubMed
Dickey, RP, Olar, TT, Taylor, SN, Curole, DN, Rye, PH. (1992) Relationship of follicle number and other factors to fecundability and multiple pregnancies in clomiphene citrate induced intrauterine insemination cycles. Fertil Steril 57;613–9.CrossRefGoogle ScholarPubMed
Dickey, RP, Olar, TT, Taylor, SN, Curole, DN, Harrigill, K. (1993a) Relationship of biochemical pregnancy to preovulatory endometrial thickness and pattern in patients undergoing ovulation induction. Hum Reprod 8;327–30.CrossRefGoogle Scholar
Dickey, RP, Olar, TT, Taylor, SN, Curole, DN, Matulivk, EM. (1993b) Relationship of endometrial thickness and pattern to fecundity in ovulation induction cycles: effect of clomiphene citrate alone and with human menopausal gonadotropin. Fertil Steril 59;756–60.CrossRefGoogle ScholarPubMed
Dickey, RP, Olar, TT, Taylor, SN, Curole, DN, Rye, PH. (1993c) Sequential clomiphene citrate and human menopausal gonadotropin for ovulation induction: comparison to clomiphene citrate alone and human menopausal gonadotropin alone. Hum Reprod 8;56–9.CrossRefGoogle Scholar
Dickey, RP, Taylor, SN, Rye, PH, Lu, PY, Pyrzak, R. (1999) Comparison of sperm quality resulting in successful intrauterine insemination to World Health Organization threshold values for normal sperm. Fertil Steril 71;684–9.CrossRefGoogle Scholar
Dickey, RP, Taylor, SN, Lu, PY, Sartor, BM, Rye, PH, Pyrzak, R. (2001) Relationship of follicle numbers and estradiol concentrations to multiple implantation of 3608 intrauterine insemination cycles. Fertil Steril 75;69–78.CrossRefGoogle Scholar
Dickey, RP, Taylor, SN, Lu, PY, Sartor, BM, Storment, JM, Rye, PH, Pelletier, WD, Zender, JL, Matulich, EM. (2002a) Spontaneous reduction of multiple pregnancy: incidence and effect on outcome. Am J Obstet Gynecol 186;77–83.CrossRefGoogle Scholar
Dickey, RP, Taylor, NN, Lu, PY, Sartor, MM, Rye, PH, Pyrzak, R. (2002b) Effect of diagnosis, age, sperm quality, and number of preovulatory follicles on the outcome of multiple cycles of clomiphene citrate-intrauterine insemination. Fertil Steril 78;1088–95.CrossRefGoogle ScholarPubMed
Dickey, RP, Sartor, BM, Pyrzak, R. (2004a) What is the most relevant standard of success in assisted reproduction? No single outcome measure is satisfactory when evaluating success in assisted reproduction; both twin births and singleton births should be counted as successes. Hum Reprod 19;783–7.CrossRefGoogle ScholarPubMed
Dickey, RP, Taylor, NN, Lu, PY, Sartor, MM, Pyrzak, R. (2004b) Clomiphene citrate intrauterine insemination (IUI) before gonadotropin IUI affects the pregnancy rate and high order multiple pregnancy. Fertil Steril 81;545–50.CrossRefGoogle Scholar
Dickey, RP, Taylor, SN, Lu, PY, Sartor, BM, Rye, PH, Pyrzak, R. (2005) Risk factors for high-order multiple pregnancy and multiple birth after controlled ovarian hyperstimulation: results of 4,062 intrauterine insemination cycles. Fertil Steril 83;671–83.CrossRefGoogle ScholarPubMed
Dodson, WC, Hughes, CL, Haney, AF. (1988) Multiple pregnancies conceived with intrauterine insemination during superovulation: an evaluation of clinical characteristics and monitored parameters of conception cycles. Am J Obstet Gynecol 159;382–5.CrossRefGoogle ScholarPubMed
Dodson, WC, Whitesides, DB, Hughes, CL, Easley, HA, Haney, AF. (1987) Superovulation with intrauterine insemination in the treatment of infertility: a possible alternative to gamete intrafallopian transfer and in vitro fertilization. Fertil Steril 48;441–5.CrossRefGoogle ScholarPubMed
Farhi, J, West, C, Patel, A, Jacobs, HS. (1996) Treatment of anovulatory infertility: the problem of multiple pregnancy. Hum Reprod 11;429–34.CrossRefGoogle ScholarPubMed
Filicori, M, Cognigni, GE, Samara, A, Melappioni, S, Perri, T, Cantelli, B, Parmegiani, L, Pelusi, G, DeAloysio, D. (2002a) The use of LH activity to drive folliculogenesis: exploring uncharted territories in ovulation induction. Hum Reprod Update 8;543–7.CrossRefGoogle ScholarPubMed
Filicori, M, Cognigni, GE, Tabarelli, C, Pocognoli, P, Taraborrelli, S, Spettoli, D, Ciampaglia, W. (2002b) Stimulation and growth of antral ovarian follicles by selective LH activity administration in women. J Clin Endocrinol Metab 87;1156–61.CrossRefGoogle ScholarPubMed
Fink, RS, Bowes, LP, Mackintosh, CE, Smith, WI, Georgiades, E, Ginsburg, J. (1982) The value of ultrasound for monitoring responses to gonadotropin. Br J Obstet Gynaecol 89;856–61.CrossRefGoogle ScholarPubMed
Gleicher, N, Oleske, DM, Tur-Kaspa, I, Vidali, A, Karande, V. (2000) Reducing the risk of high-order multiple pregnancy after ovarian stimulation with gonadotropins. N Engl J Med 343;2–7.CrossRefGoogle ScholarPubMed
Healy, D, Rombauts, L, Vollenhoven, B, Kovacs,, Burmeister. (2003) One triplet pregnancy in 510 controlled ovarian hyperstimulation and intrauterine cycles. Fertil Steril 79;1449–51 [67].CrossRefGoogle ScholarPubMed
Hellier, SG. (1994) Current concepts of the roles of follicle stimulating hormone and luteinizing hormone in follliculogenesis. Hum Reprod 9;188–91.CrossRefGoogle Scholar
Hock, DL, Seifer, DB, Kontopoulos, E, Ananth, CV. (2002) Practice patterns among board-certified reproductive endocrinologists regarding high-order multiple gestations: a United States National Survey. Obstet Gynecol 99;763–70.Google ScholarPubMed
Homburg, R, Howles, CM. (1999) Low-dose FSH therapy for anovulatory infertility associated with polycystic ovary syndrome: rationale, results reflections and refinements. Hum Reprod Update 3; 493–9.CrossRefGoogle Scholar
Homburg, R, Insler, V. (2002) Ovulation induction in perspective. Hum Reprod Update 8;449–62.CrossRefGoogle Scholar
Hughes, EG, Collins, JA, Gunby, J. (1998) A randomized controlled trial of three low-dose gonadotropins protocols for unexplained infertility. Hum Reprod 13;1527–31.CrossRefGoogle ScholarPubMed
Ingerslev, HJ. (1991) Selective follicular reduction following ovulation induction by exogenous gonadotropins in polycystic ovarian disease. A new novel approach to treatment. Hum Reprod 6;682–4.CrossRefGoogle Scholar
Karande, VC, Korn, A, Morris, R, Rao, R, Balin, M, Rinehart, J, Dohn, K, Gleicher, N. (1999) Prospective randomized trial comparing the outcome and cost of in vitro fertilization with that of a traditional treatment algorithm as first-line therapy for couples with infertility. Fertil Steril 71;468–75.CrossRefGoogle Scholar
Kemmann, E, Bohrer, M, Shelden, R, Fiasconaro, G, Beardsley, L. (1987) Active ovulation management increases the monthly probability of pregnancy occurrence in ovulatory women who receive intrauterine insemination. Fertil Steril 48;916–20.CrossRefGoogle ScholarPubMed
Land, JA, Evers, JLH. (2003) Risks and complications in assisted reproduction techniques: report of an ESHRE consensus meeting. Hum Reprod 18;455–7.CrossRefGoogle ScholarPubMed
Cotonnec, J-Y, Porchet, HC, Beltrami, V, Khan, A, Toon, S, Rowland, M. (1994) Clinical pharmacology of recombinant human follicle-stimulating hormone. II. Single doses and steady state pharmacokinetics. Fertil Steril 61;679–86.CrossRefGoogle Scholar
Levene, MI, Wild, J, Steer, P. (1992) Higher multiple births and the modern management of infertility in Britain. The British Association of Perinatal Medicine. Br J Obstet Gynaecol 99;607–13.CrossRefGoogle ScholarPubMed
Loumaye, E, Engrand, P, Howles, CM, O'Dea, L. (1997) Assessment of the role of serum lutenizing hormone and estriol response to follicle-stimulating hormone on in vitro fertilization treatment outcome. Fertil Steril, 67;889–99.CrossRefGoogle Scholar
Loumaye, E, Duerr-Myers, L, Engrand, P, Arguinzoniz, M. (2000) Minimizing the number of pre-ovulatory follicles in WHO group II anovulatory women over-responding to FSH with recombinant human luteinizing hormone. Program of the 15th Annual Meeting of the European Socirty of Human Reproduction and Embryology, Bologna, Italy, Abst. O-177, 2000: pp. 71.Google Scholar
Martin, K, Santoro, N, Hall, J, Filicore, M, Wierman, M, Crowley, WF. (1990) Clinical review 15: management of ovulatory disorders with pulsatile gonadotropin-releasing hormone. J Clin Endocrinol Metab 71;1081A–G.CrossRefGoogle ScholarPubMed
Pittrof, RU, Shaker, A, Dean, N, Bekir, JS, Campbell, S, Tan, SL. (1996) Success of intrauterine insemination using cryopreserved donor sperm is related to the age of the woman and the number of preovulatory follicles. J Assist Reprod Genet 13;310–14.CrossRefGoogle ScholarPubMed
Ragni, G, Maggioni, P, Guermandi, E, Testa, A, Baroni, E, Colombo, M, et al. (1999). Efficacy of double intrauterine insemination in controlled ovarian hyperstimulation cycles. Fertil Steril 72;619–22.CrossRefGoogle ScholarPubMed
Reynolds, MA, Schieve, , Martin, JA, Jeng, G, Macaluso, M. (2003) Trends in multiple births conceived using assisted reproductive technecology, United States, 1997-2000. Pediatrics 111:1159–62.Google ScholarPubMed
Remohi, J, Gastaldi, C, Patrizio, P, Gerli, S, Ord, T, Asch, RH, Balmaceda, JP. (1989) Intrauterine insemination and controlled ovarian hyperstimulation in cycles before GIFT. Hum Reprod 4;918–20.CrossRefGoogle ScholarPubMed
Rizk, B. (2006) Prevention of ovarian hyperstimulation syndrome. In Rizk, B (Ed.) Ouarvan Hyperstimulation Syndrome. Cambridge: United Kingdom, Cambridge University Press, Chapter 7, 130–99.Google Scholar
Rizk, B, Aboulghar, M. (1991) Modern Management of ovarian hyperstimulation syndrome. Hum. Replod 6(8);1082–7.CrossRefGoogle ScholarPubMed
Schenker, JG, Yarkoni, S, Granat, M. (1981) Multiple pregnancies following induction of ovulation. Fertil Steril 35;105–23.Google ScholarPubMed
Sher, G, Knutzen, VK, Stratton, CJ, Montakhab, MM, Allenson, SG. (1984) In vitro sperm capacitation and transcervical intrauterine insemination for the treatment of refractory infertility: phase I. Fertil Steril 41;260–4.CrossRefGoogle ScholarPubMed
Shoham, Z. (2002) The clinical therapeutic window for luteinizing hormone in controlled ovarian stimulation. Fertil Steril 77;1170–7.CrossRefGoogle ScholarPubMed
Takokoro, N, Vollenhoven, B, Clark, S, Baker, G, Kovacs, G, Burger, H, Healy, D. (1997) Cumulative pregnancy rates in couples with anovulatory infertility compared with unexplained infertility in an ovulation induction program. Hum Reprod 12;1939–44.CrossRefGoogle Scholar
Tomlinson, MJ, Amissah-Arthur, JB, Thompson, KA, Kasrale, JL, Bentick, B. (1996) Prognostic indicators for intrauterine insemination (IUI): statistical model for IUI success. Hum Reprod 11;1892–6.CrossRefGoogle ScholarPubMed
Tur, R, Barri, PN, Coroleu, B, Buxaderas, R, Martinez, F, Balasch, J. (2001) Risk factors for high-order multiple implantation after ovarian stimulation with gonadotropins: evidence from a large series of 1878 consecutive pregnancies in a single center. Hum Reprod 16;2124–9.CrossRefGoogle Scholar
Urman, B, Pride, SM, Ho Yuen, B. (1992) Management of overstimulated gonadotropin cycles with a controlled drift period. Hum Reprod 7;213–7.CrossRefGoogle ScholarPubMed
Valbuena, D, Simon, C, Romero, JL, Remohi, J, Pellicer, A. (1996) Factors responsible for multiple pregnancies after ovarian stimulation and intrauterine insemination with gonadotropins. J Asst Reprod Genetics 13;663–8.CrossRefGoogle ScholarPubMed
Weissenbruch, MM. (1990) Gonadotropins for induction of ovulation, immunological, pharmacological and clinical studies [dissertation], Amsterdam; Free University.Google Scholar
Vollenhoven, B, Selub, M, Davidson, O, Lefkow, H, Henault, M, Serpa, N, Hund, TT. (1996) Treating infertility: controlled ovarian hyperstimulation using human menopausal gonadotropin in combination with intrauterine insemination. J Reprod Med 41;658–64.Google ScholarPubMed
Wang, JX, Kwan, M, Davies, MJ, Kirby, C, Judd, S, Norman, RJ. (2003) Risk of multiple pregnancy when infertility is treated with ovulation induction by gonadotropins. Fertil Steril 80;664–5.CrossRefGoogle ScholarPubMed
White, DM, Polson, DW, Kiddy, D, Sagle, P, Watson, H, Gilling-Smith, C, Hamilton-Fairley, D, Franks, . (1996) Induction of ovulation with low-dose gonadotrophins in polycystic ovary syndrome: an analysis of 109 pregnancies in 225 women. J Clin Endocrinol Metab 81;3821–4.Google Scholar
Yagel, S, Ben-Chetrit, A, Anteby, E, et al. (1992) The effect of ethinyl estradiol on endometrial thickness and uterine volume during ovulation induction by clomiphene citrate. Fertil Steril 57;33–6.CrossRefGoogle ScholarPubMed
Yovich, JL, Matson, PL. (1988) The treatment of infertility by the high intrauterine insemination of husband's washed spermatozoa. Hum Reprod 3;939–43.CrossRefGoogle ScholarPubMed
Zikopoulos, K, West, CP, Thong, PW, Kacser, EM, Morrison, J, We, FCW. (1993) Homologous intrauterine insemination has no advantage over timed natural intercourse when used in combination with ovulation induction for the treatment of unexplained infertility. Hum Reprod 8;563–7.CrossRefGoogle ScholarPubMed

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