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PubMed · 14596653

Ovulation induction.

Abstract

Anovulation, a common cause of female infertility, is a highly curable condition. Presented here is a simple treatment-orientated diagnostic scheme. Anovulatory women with low endogenous oestradiol and follicle stimulating hormone (FSH) are treated with either pulsatile gonadotrophin releasing hormone (GnRH) or gonadotropins, and women with eu-oestrogenic anovulation (mostly with polycystic ovarian syndrome; PCOS) have first-line treatment with clomiphene citrate (CC), possibly with metformin. If CC fails, FSH is administered using a chronic low-dose protocol with small incremental dose rises. A comparison of urinary with recombinant and pure FSH with luteinising hormone (LH) containing gonadotropins is made. Recombinant products are purer and more convenient for use but are expensive. LH content has little impact except in hypogonadotropic hypogonadism or severe pituitary suppression with GnRH analogues. Aromatase inhibitors, recombinant LH and long-acting FSH may find a future place in the armamentarium.

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BibTeXRIS

Roy Homburg. 2003. Ovulation induction.. https://doi.org/10.1517/14656566.4.11.1995

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Laparoscopic "drilling" by diathermy or laser for ovulation induction in anovulatory polycystic ovary syndrome.

BACKGROUND: Problems in inducing ovulation in women with polycystic ovary syndrome (PCOS) and anovulation (failure to ovulate) are well recognised. Surgical ovarian wedge resection was the first established treatment for anovulatory PCOS patients but was largely abandoned due to the risk of post-surgical adhesions and the introduction of medical ovulation induction with clomiphene and gonadotrophins. However patients with PCOS treated with gonadotrophins often have an over-production of follicles and are exposed to the risks of ovarian hyperstimulation syndrome (OHSS) and multiple pregnancy. Moreover ovulation induction with gonadotrophins, though effective, is an expensive, inconvenient and time-consuming treatment requiring intensive monitoring. Surgical therapy with laparoscopic ovarian "drilling" (LOD) may avoid or reduce the need for gonadotrophins or may facilitate their use. The procedure can be done on an outpatient basis with less trauma and fewer postoperative adhesions. Many uncontrolled observational studies have claimed that ovarian drilling is followed, at least temporarily, by a high rate of spontaneous ovulation and conception, and/or that subsequent medical ovulation induction becomes easier. OBJECTIVES: To determine the effectiveness and safety of laparoscopic ovarian drilling compared with ovulation induction for subfertile women with clomiphene-resistant PCOS. SEARCH STRATEGY: We used the search strategy of the Menstrual Disorders and Subfertility Group. SELECTION CRITERIA: We included randomised controlled trials of subfertile women with clomiphene-resistant PCOS that undertook laparoscopic ovarian drilling in order to induce ovulation. DATA COLLECTION AND ANALYSIS: Fifteen trials were identified and six were included in the review. All trials were assessed for quality criteria. The primary outcomes were live birth, ovulation and pregnancy rates and the secondary outcomes were rates of miscarriage, multiple pregnancy, ovarian hyperstimulation syndrome and cost. MAIN RESULTS: There was no evidence of a difference in live births or ongoing pregnancies between LOD and gonadotrophins and the pooled Odds Ratio (OR) (all studies) was 1.04 (95% CI 0.74, 1.99) and 1.16 (95% CI 0.72, 1.86) respectively. Multiple pregnancy rates were lower with ovarian drilling than with gonadotrophins (1% vs 16%, OR: 0.13, 95% CI: 0.03 to 0.59). There was no evidence of a difference in miscarriage rates between the two groups (OR 0.81, 955% 0.36, 1.86). AUTHORS' CONCLUSIONS: There was no evidence of a difference in the live birth rate and miscarriage rate in women with clomiphene resistant PCOS undergoing LOD compared to gonadotrophin treatment. The reduction in multiple pregnancy rates in women undergoing LOD makes this option attractive. However, there are ongoing concerns about long term effects of LOD on ovarian function.

Anovulation↗

[Use of aromatase inhibitors in infertile women].

Aromatase inhibitors (AI) block the last enzymatic step of estrogen production, the aromatization of the A-cycle of aromatizable androgens and particularly, androstenedione (D4) and testosterone (T). Molecules designed for interfering with aromatase activity have existed for many years. Yet the activity of products of the aminogluthetimide era was too unspecific and these substances carried too many side effects for being used clinically. Today, however, 3rd generation AIs have become available that are highly specific and essentially devoid of side effects. These molecules have recently been approved for treating breast cancer in post-menopausal women, either in advanced forms, or as part of adjuvant therapy. In women whose ovaries are active, a temporary inhibition of E2 production will activate gonadotropins and in turn, stimulate follicular growth. In cancer patients, this property precludes the use of AIs in women whose ovaries are still active, unless gonadotropins are blocked. In infertile patients, this property of AIs has been put to play for inducing ovulation. AIs have been used both in women who do not ovulate but whose hypothalamo-pituitary-gonadal (HPG) axis is active (oligo-anovulators of PCOD type) and in those who ovulate regularly but in whom multiple ovulation is sought for treating infertility or as part of IVF. Like CC, AIs are not usable in women whose gonadotropins are suppressed, as in the case of hypothalamic amenorrhea. The sum of data available on the use of AI for inducing ovulation remains however meager to this date and is mainly constituted of pilot and non-randomized trials. Yet mounting evidence tends to support AIs' advantages over CC for induction of ovulation. Hence, we think that these drugs will play a key role for the induction of ovulation in the future.

Anovulation↗