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PubMed · 15898821

Urofollitropin and ovulation induction.

Abstract

Anovulation is a common cause of female infertility. Treatment for women with anovulation is aimed at induction of ovulation. Ovulation induction with follicle-stimulating hormone (FSH) is indicated in women with WHO type II anovulation in whom treatment with clomifene citrate (clomifene) has failed. The majority of these women have polycystic ovary syndrome. The major disadvantages of ovulation induction with FSH are the risk of ovarian hyperstimulation syndrome and the risk of higher order multiple pregnancies. To reduce the rate of complications due to multiple follicular development, FSH should be administered using a chronic low-dose protocol with small dose increments. In women with WHO type I anovulation, an exogenous supply of luteinizing hormone (LH) is required to achieve an adequate follicular response to FSH treatment. Thus, ovulation induction with FSH is not the treatment of choice in these women. FSH is a hormone that stimulates follicle growth and oocyte maturation. Endogenous FSH is produced by the pituitary gland and exists as a family of isohormones exhibiting distinct oligosaccharide structures. FSH for exogenous administration is derived from urine or is produced as recombinant FSH. The commercially available FSH products all contain different mixtures of FSH isoforms. To determine the effectiveness of urofollitropin (urinary-derived FSH), a comparison with the other available gonadotropins was made (i.e. recombinant FSH and human menopausal gonadotropin). Urofollitropin and recombinant FSH appear to be equally effective and well tolerated for ovulation induction. Human menopausal gonadotropin is comparably effective to urofollitropin in terms of pregnancy outcomes. It remains unclear whether human menopausal gonadotropins have a higher risk of overstimulation and ovarian hyperstimulation syndrome compared to urofollitropin in women with polycystic ovary syndrome. In practice, recombinant products are more convenient to use but are also more expensive. Therefore, if availability is not an issue but costs are, there is still a place for the use of urofollitropins for ovulation induction.

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BibTeXRIS

Madelon van Wely, Claus Yding Andersen, Neriman Bayram, Fulco van der Veen. 2005. Urofollitropin and ovulation induction.. https://doi.org/10.2165/00024677-200504030-00004

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Does previous response to clomifene citrate influence the selection of gonadotropin dosage given in subsequent superovulation treatment cycles?

PURPOSE: To determine whether ovarian response to previous clomifene treatment could influence the selection of the starting dose of gonadotropins in subsequent in vitro fertilization (IVF) or intra uterine insemination (IUI). METHODS: Forty three anovular women who had received clomifene for ovulation induction followed by gonadotropins for IUI or IVF superovulation were reviewed retrospectively. Data on gonadotropin dose were compared between clomifene-resistant patients and clomifene responders. RESULTS: IVF patients who had had prior superovulation/IUI treatment received similar doses of gonadotropins regardless of response to clomifene (1610 IU versus 1560 IU, p = 0.74). In IVF patients not receiving prior IUI treatment, the clomifene-resistant women were given higher doses of gonadotropins than those responding to clomifene (2500 IU versus 1440 IU, p = 0.042). CONCLUSIONS: We found that, in our Unit, clinicians appeared to use prior non-response to clomifene as a reason for prescribing a higher starting dose of gonadotropins in IVF treatment, a practice that is not evidence-based.

Anovulation↗

The use of a decremental dose regimen in patients treated with a chronic low-dose step-up protocol for WHO Group II anovulation: a prospective randomized multicentre study.

BACKGROUND: In women with chronic anovulation, the choice of the FSH starting dose and the modality of subsequent dose adjustments are critical in controlling the risk of overstimulation. The aim of this prospective randomized study was to assess the efficacy and safety of a decremental FSH dose regimen applied once the leading follicle was 10-13 mm in diameter in women treated for WHO Group II anovulation according to a chronic low-dose (CLD; 75 IU FSH for 14 days with 37.5 IU increment) step-up protocol. METHODS: Two hundred and nine subfertile women were treated with recombinant human FSH (r-hFSH) (Gonal-f) for ovulation induction according to a CLD step-up regimen. When the leading follicle reached a diameter of 10-13 mm, 158 participants were randomized by means of a computer-generated list to receive either the same FSH dose required to achieve the threshold for follicular development (CLD regimen) or half of this FSH dose [sequential (SQ) regimen]. HCG was administered only if not more than three follicles >or=16 mm in diameter were present and/or serum estradiol (E(2)) values were <1200 pg/ml. The primary outcome measure was the number of follicles >or=16 mm in size at the time of hCG administration. RESULTS: Clinical characteristics and ovarian parameters at the time of randomization were similar in the two groups. Both CLD and SQ protocols achieved similar follicular growth as regards the total number of follicles and medium-sized or mature follicles (>/=16 mm: 1.5 +/- 0.9 versus 1.4 +/- 0.7, respectively). Furthermore, serum E(2) levels were equivalent in the two groups at the time of hCG administration (441 +/- 360 versus 425 +/- 480 pg/ml for CLD and SQ protocols, respectively). The rate of mono-follicular development was identical as well as the percentage of patients who ovulated and achieved pregnancy. CONCLUSIONS: The results show that the CLD step-up regimen for FSH administration is efficacious and safe for promoting mono-follicular ovulation in women with WHO Group II anovulation. This study confirms that maintaining the same FSH starting dose for 14 days before increasing the dose in step-up regimen is critical to adequately control the risk of over-response. Strict application of CLD regimen should be recommended in women with WHO Group II anovulation.

Anovulation↗