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Anovulation in eumenorrheic, nonobese adolescent girls born small for gestational age: insulin sensitization induces ovulation, increases lean body mass, and reduces abdominal fat excess, dyslipidemia, and subclinical hyperandrogenism.

Adolescent girls born small for gestational age (SGA) are at risk for anovulation, hyperinsulinism, subclinical hyperandrogenism, dyslipidemia, and central adiposity. Hyperinsulinemic insulin resistance has been proposed as a key pathogenetic factor underpinning these associations. We have tested this hypothesis in an intervention study by assessing the effects of insulin sensitization (metformin treatment, 850 mg/d for 3 months) in eumenorrheic, nonobese, anovulatory SGA adolescents [n = 13; mean birth weight, 2.3 kg; age, 15 yr; body mass index (BMI), 20.5 kg/m(2); >or=3 yr post-menarche] who were in a steady state (over approximately 6 months) for BMI, hyperinsulinism, subclinical hyperandrogenism, and dyslipidemia, and who presented a deficit of lean body mass and an excess of (truncal and abdominal) fat mass. Metformin treatment was accompanied by a drop in fasting insulin and serum androgens and by a less atherogenic lipid profile (all P <or= 0.01). After 3 months on metformin, all identified aberrations in body composition were attenuated, the most marked changes (P < 0.0001) being a reduction of the excess in abdominal fat and of the deficit in lean body mass; BMI remained unaltered. Finally, 6 of 13 girls became ovulatory after about 6 wk on metformin, and 9 of 13 (69%) ovulated within 11 wk on metformin. In conclusion, these observations corroborate the notion that anovulation, an excess of abdominal fat mass, and a deficit of lean mass in nonobese SGA adolescents are essentially underpinned by hyperinsulinemic insulin resistance, and that sensitization to insulin is an effective approach to correct these abnormalities and, conceivably, to prevent them.

Abdomen↗

Pulsatile gonadotropin secretion in women with hypothalamic amenorrhea: evidence that reduced frequency of gonadotropin-releasing hormone secretion is the mechanism of persistent anovulation.

Hypothalamic amenorrhea (HA) is a clinical disorder of unknown etiology. The diagnosis is made by exclusion of known abnormalities of pituitary and ovarian function. To determine if abnormalities of GnRH secretion could account for the anovulation and amenorrhea, we measured plasma gonadotropins every 20 min for 10- to 24-h periods in 19 women with HA. Ovarian steroids and gonadotropin responses to an iv bolus dose of GnRH (25 ng/kg) were also measured. The results were compared to those obtained during the early follicular (EF) and late luteal (LL) phases of ovulatory cycles in normal women. Plasma estradiol was lower (mean +/- SE, 52 +/- 5 pg/ml) than either cycle stage in normal women. Mean plasma LH was lower than EF values and FSH was higher than LL values. The amplitude of LH pulses in HA was similar to that in normal women. LH pulse frequency was the same as that present during the LL, but lower than that during the EF (HA, 4.7 pulses/12 h; EF, 7.7 pulses/12 h; P less than 0.05). In addition to the similar frequency, the patterns of LH secretion in HA resembled that of LL in that the amplitude of LH pulses was highly variable and pulses occurred at irregular intervals. Consistent changes in diurnal gonadotropin secretion were not found, and LH secretion was greater at night in 9 studies and during the day in 5 studies. Repeat studies in three patients (5-13 months later) revealed that LH pulse frequency was variable, being unchanged in 1, increased in 1, and decreased in the third patient. Thus, LH pulse frequency and, by inference, GnRH pulse frequency are similar in HA to those in the normal luteal phase despite a different steroid milieu. GnRH pulse frequency increases from the luteal to the follicular phases of normal cycles and may be important in the initiation of ovarian follicular maturation. These data suggest that the absence of cyclical gonadotropin secretion and anovulation in HA result from a decreased frequency and irregular amplitude of GnRH secretion and consequent absence of ovarian follicular maturation.

Adolescent↗

Increased luteinizing hormone and alpha-subunit secretion in women with hyperandrogenic anovulation.

Women with hyperandrogenic anovulation (HAA) have increased circulating levels of LH relative to those of FSH. The cause of this disturbance in gonadotropin secretion is uncertain. Previous investigations have sought to determine if increased GnRH drive is responsible for the excessive LH concentrations. Because previous results have conflicted, we addressed this question by comparing the 24-h secretory patterns of alpha-subunit and LH in women with HAA (n = 9) to those in eumenorrheic women in the midfollicular phase (n = 9). The mean (+/- SEM) pulse frequency was increased in women with HAA compared to that in eumenorrheic women of comparable age and percent ideal body weight for both LH (23.0 +/- 0.7 pulses/24 h vs. 3 17.1 +/- 1.7; P = 0.002) and alpha-subunit (23.0 +/- 0.8 vs. 19.1 +/- 1.2; P = 0.02). LH and alpha-subunit, but not FSH, responses to a submaximal dose of exogenous GnRH were increased in HAA, as were basal LH and alpha-subunit levels (P < 0.01). The present observations provide evidence for increased GnRH drive, including pulse frequency, in HAA. Although the results confirm the presence of a disturbance in gonadotropin secretion and suggest that its proximate cause may be of hypothalamic origin, they do not exclude the possibility that other factors, perhaps of ovarian origin, play a role in the establishment and/or maintenance of the altered gonadotropin secretory patterns and the chronic anovulation characteristic of HAA.

Adult↗

Dehydroepiandrosterone sulfate and anovulation increase serum inhibin and affect follicular function during administration of gonadotropins.

To test the hypothesis that testosterone (T) derived from circulating dehydroepiandrosterone sulfate (DS) or produced in excess within the anovulatory ovary is a follicular regulator capable of stimulating inhibin secretion. DS and inhibin were determined by RIA in residual serum samples from in vitro fertilization cycles and analyzed along with other parameters using analysis of variance and stepwise multiple linear regression after log transformation of the RIA data. It was predicted that the serum concentration of inhibin would be higher in women with anovulation than in normal subjects and that the serum inhibin concentration would have a positive regression coefficient on the serum DS concentration. The serum concentrations of inhibin (P < 0.01) and estradiol (P < 0.001) on the day of hCG treatment were higher in women with anovulation than in normal subjects, as was the number of oocytes retrieved (P < 0.001). The FSH and LH doses (both P < 0.005) and age (P < 0.001) were significantly lower, and the average duration of gonadotropin therapy was 1 day shorter (P < 0.001) in anovulatory patients. There was no significant difference in serum DS (P > 0.2). Regression analysis showed that serum inhibin was positively related to the number of oocytes (P < 0.001) and serum DS (P = 0.05), with an increase in anovulatory subjects (P < 0.025). The duration of treatment with gonadotropins was related positively to the patient's age (P < 0.001) and negatively to serum DS (P < 0.025), with a decrease in anovulatory subjects (P < 0.025). The number of oocytes obtained was negatively related to age (P < 0.001) and positively to serum DS (P < 0.005). These data are consistent with a stimulatory effect of follicular T derived from either circulating DS or the anovulatory ovary, which affects the secretion of inhibin, the duration of gonadotropin treatment, and the number of oocytes retrieved.

Adult↗

Resistance of gonadotropin releasing hormone drive to sex steroid-induced suppression in hyperandrogenic anovulation.

Women with hyperandrogenic anovulation (HAA) exhibit increased GnRH drive, as evidenced by a faster LH pulse frequency that slows in response to progestin-induced opioidergic tone. To determine whether increased GnRH-LH drive in HAA reflects altered sex steroid exposure caused by chronic anovulation or is an intrinsic hypothalamic attribute, we compared the pulsatile LH response to oral contraceptive (OC)-induced suppression in seven women with HAA, with that of seven eumenorrheic women (EW). LH levels were determined at 10-min intervals for 12 h after 19-21 days of OC use and 5-7 days after cessation. Testosterone, androstenedione, estradiol, FSH, and LH levels were determined at weekly intervals before, during, and after OC use. LH pulse number/12 h was higher (P < 0.001) in HAA during and after OCs, when compared with that of EW. Mean LH was increased in HAA before, during, and after OCs. Testosterone, androstenedione, and estradiol levels were higher in HAA before OCs, but they decreased to similar levels during OC use in both groups. FSH concentrations were similar before and during OCs but rose more after cessation of OCs in EW. These findings indicate that GnRH drive in HAA is resistant to OC-induced suppression and, therefore, could be an intrinsic hypothalamic attribute.

Adult↗

[Post-pill amenorrhea and anovulation (author's transl)].

The numerous pregnancies that occur as early as the first cycle after the discontinuation of an oral contraceptive prove that in general ovulation reappears immediately and that after a period of "rest" more or less prolonged the ovaries reasume their normal function very rapidly. However, in less than 1% of the cases the discontinuation of oral contrecption is followed by anovulation or even amenorrhea. The authors try to find an explanation to this over supression syndrome and review the different treatments that have been proposed in the bibliography, but keeping in mind that within a year 14% of the anovulations and 5% of the amenorrbeas will have disappeared spontaneously.

Age Factors↗

[Clomiphene acetate and prednisone: alternative approach for the management of patients with chronic anovulation and clomiphene treatment failure].

Chronic anovulation is a common neuroendocrine cause of infertility. Pharmacological management of such condition includes the use of clomiphen citrate (CC), which is the most utilized of the ovulation inductors. Clinical efficacy of CC provides ovulation rates of around 70%. Those patients who did not respond are candidates to receive gonadothrophin treatment, which will increase costs and the risk of ovarian hyperstimulation and multiple pregnancies. Because of that, new alternative treatments have been assayed, such as the concomitant use of dexametasone. This alternative has improved the response, but its use has been limited because the side effects of this treatment overcome their benefits. Another alternative is the use of prednisone throughout the menstrual cycle together with CC administered in pre-established days. This treatment is expected to improve the response without adding side effects. However, its clinical efficacy and clínical tolerance have not been studied. In this study we used CC and prednisone in a sample of patients diagnosed with infertility and chronic anovulation, and with previous failure to the treatment with CC. Patients were compared to a group of women with similar characteristics but who received additional cycles of CC. The group that received prednisone and CC increased their ovulation rates in 38%, compared to 8% in women that received only CC. Similarly, pregnancy rates increased 20% in the CC plus prednisone group while the group that received CC alone remained in 0 pregnancies. In the total sample, tolerance to treatment was adequate. There were no side effects associated to the use of prednisone. We conclude that the treatment with CC plus prednisone is an alternative treatment for patients in which the classical treatment with CC has failed.

Adult↗

[Insulin-glucose ratio and body fat composition in patients with chronic anovulation and sterility].

A clinical, descriptive, and transversal study was conducted in a group of patients with chronic anovulation and sterility, to correlate insulin resistance, determined by the fasting glucose/insulin ratio, with body fat composition using anthropometrics parameters and the interaction of light near infrared region method, we studied 41 young patients with chronic anovulation and sterility. Based on their body mass index, all patients had obesity or overweight. Similarly, most of them presented with a percentage of body fat over the recommended limits. Forty percent of all studied patients had a fasting glucose/insulin ratio below 4.5, which corresponds to insulin resistance. The correlation between the percentage of body fat and fasting glucose/insulin ratio was significant, as was the correlation between body mass index and the percentage of body fat. We found overweight or obesity in the majority of our patients, and insulin resistance in almost half of them. Such disturbances were positively associated with the percentage of body fat and android distribution. Therefore, we recommend a routinely anthropometrics evaluation in these patients as well as fasting glucose/insulin ratio determination in order to act in an early stage over the natural history of metabolic syndrome, whose common denominator is insulin resistance.

Adipose Tissue↗

MURCS association and hypothalamic anovulation.

A new case of MURCS association (mullerian duct aplasia, renal aplasia and cervicothoracic somite dysplasia) in an 18 year old patient is reported. In addition to other minor phenotypical features, hypothalamic chronic anovulation was documented. Basal concentrations of PRL, TSH, GH, F and E were within reference values for adult women. Challenges with TRH and ACTH evoked normal responses in terms of TSH and F respectively. Basal levels of LH and FSH and a LHRH stimulation test demonstrated dissociation of both gonadotrophins. Persistent progesterone values within follicular phase levels led us to the diagnosis of hypothalamic chronic anovulation which was confirmed by the induction of ovulation by clomiphene citrate. This finding shows the importance of a detailed endocrinological evaluation in patients with the MURCS association in order to prevent secondary disorders due to endocrinological impairment.

Abnormalities, Multiple↗

[Dopamine antagonists in anovulation?].

Increased hypothalamic dopamine turnover may prevent the ovulatory LH peak by different mechanisms and may in this way result in anovulation. Ten patients with anovulatory menstrual cycles who had been treated with clomiphene citrate without success were given the dopaminolytic drug pimozide (Antalon) at a dose of 5 mg/day orally either from day 7 to day 11 (7 women; group 1) or from day 11 to day 15 of the menstrual cycle (4 women; group 2). One patient from group 2 ovulated during the treatment cycle. A further woman from this group exhibited an LH peak, but did not ovulate, whereas a slow increase of the circulating LH level was recorded in the remaining two patients. Systematic investigations should clarify whether introduction of dopaminolytic therapy in the treatment of hypothalamic anovulation may be justified.

Anovulation↗

[The role of endoscopic methods in the diagnosis of endocrine infertility in women with persistent anovulation].

The incidence of stubborn anovulation in patients ineffectively treated with hormones has made up. 22.7%. Laparoscopy and biopsy of the ovaries followed by histologic and morphometric examinations of ovarian tissue have detected three characteristic types of the ovaries in the cases with stubborn anovulation in the presence of LH and FSH dissociation and elevated gonadotropin content. Laparoscopic biopsy of the ovaries in not only a diagnostic, but a therapeutic method as well.

Adult↗

Tamoxifen in clomiphene-resistant hypothalamic anovulation.

Seventeen patients with clomiphene-resistant hypothalamic anovulation were given tamoxifen 10 mg per day from cycle day 5 to 9 during two consecutive menstrual cycles. Not included were patients with hyperprolactinemia and PCOD. Treatment was monitored using measurement of follicle size by ultrasound and assessment of serum estradiol. Failure to ovulate persisted in 15 patients. Of the two patients who ovulated, one received hCG on day 16, and became pregnant. We were unable to demonstrate that clomiphene-resistant patients were likely to ovulate with tamoxifen. Forty-five patients with hypothalamic anovulation not previously treated were then given tamoxifen in the same dosage. This part of the study indicated that tamoxifen was successful in inducing ovulation in 84% of the cycles. There was marked improvement in cervical mucus in tamoxifen cycles as compared with clomiphene cycles. Tamoxifen was effective, and had some advantages compared with clomiphene in patients responding to both drugs. This preliminary study suggests that tamoxifen may be a useful addition to the treatment of ovulatory failure.

Anovulation↗

Role of sex-hormone-binding globulin and free sex steroid hormones in hyperandrogenic anovulation.

To clarify the mechanism of hyperandrogenic anovulation, the binding capacity of sex-hormone-binding globulin (SHBG-BC), the levels of free steroid hormones, and the levels of basal serum testosterone (T), estradiol (E2), estrone (E1) and gonadotropins were determined in 42 hyperandrogenic anovulatory women. The mean levels of basal T (0.74 +/- 0.04 ng/ml, p less than 0.001), free T (3.07 +/- 0.51 ng/dl, p less than 0.01) and free E2 (2.26 +/- 0.27 pg/ml, p less than 0.05), basal luteinizing hormone (LH) (33.4 +/- 2.7 mIU/ml, p less than 0.001), responsiveness of LH (180.7 +/- 21.5 mIU/ml, p less than 0.001) after luteinizing hormone releasing hormone (LHRH) administration, and the basal LH/basal follicle stimulating hormone (FSH) ratio (3.42 +/- 0.25, p less than 0.001) in the patients were significantly higher, the SHBG-BC level (1.76 +/- 0.33 micrograms DHT bound/dl, p less than 0.05) significantly reduced, and basal levels of E2 (38.0 +/- 3.2 pg/ml) and E1 (110 +/- 13 pg/ml) unchanged compared to the controls. These findings suggest that increased T in hyperandrogenic anovulatory women results in decreased SHBG-BC and increased free T and E2 which might be the cause of inappropriate gonadotropin secretion followed by chronic anovulation.

Acne Vulgaris↗

HMG-HCG therapy in patients with hypergonadotropic ovarian anovulation: one pregnancy case report and ovulation and pregnancy rate.

The aim of this study is to advocate the delivery of human menopausal gonadotropin (HMG) and human chorionic gonadotropin (HCG) therapy to patients with hypergonadotropic ovarian anovulation (Hyper-OA). HMG-HCG therapy was carried out in six patients (16 cycles) with Hyper-OA and nine patients (26 cycles) with hypogonadotropic pituitary anovulation (Hypo-PA) as controls. In this study, two patients with Hyper-OA ovulated after HMG-HCG therapy, and one of them conceived in the next cycle of the therapy. This patient is presented in detail as a case report. The ovulation rate in Hyper-OA proved to be 33.3% of patients and 12.5% of cycles as compared with 100% of patients with Hypo-PA and 65.3% of their cycles. These results suggest that although ovulation and pregnancy rate are very low, it is worth trying HMG-HCG therapy in patients with Hyper-OA, at least for one or two cycles.

Adult↗

[Study on human pituitary gonadotropin synthesis and release in amenorrhea and anovulation by LH-RH two step test].

The pituitary gonadotropin response of synthesis and release to two step stimulation at a 60 minute interval with 100 micrograms of luteinizing hormone-releasing hormone (LH-RH) was studied by radioimmunoassay of hLH and hFSH in the normal menstrual cycle, amenorrhea and anovulation. The definition of delta 1 and delta 2 was as follows: delta 1 = 30 (or 60) min. value-0 min. value. delta 2 = 90 (or 120, 180) min. value-60 min. value. delta 1, delta 2 ratio = delta 2/delta 1. Serum mean levels of hLH in follicular and luteal phase increased after the first injection of LH-RH. The second injection of the hormone induced an increase to above the first peak, indicating the priming effect of the first LH-RH on the second peak. The first peak is presumed to be the pituitary gonadotropin release due to the first injection of LH-RH, and the second peak can be composed in part of hLH newly synthesized by the first LH-RH stimulation. The response of hLH in the ovulatory phase increased after the first administration, but showed no significant peak after the second. The LH-RH two step test in normoestrogenic and PCO type amenorrhea produced two peaks of the mean levels of hLH. In ovarian anovulation, an hLH value higher than the others was detected before the first LH-RH stimulation. The first injection caused an increase in serum hLH but after the second there is no significant peak. In contrast, serum hLH and hFSH values were lower than in the normal menstrual cycle.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Results of gonadotropin therapy in hypogonadotropic anovulation].

Combined FSH and HCG treatment was applied to patients in whom anovulation had been found to be the cause of sterility. Results were separately evaluated for patients in normal gonadotrophic conditions, on the one hand, and those in hypogonadotrophic conditions, on the other. They were compared with findings obtained from other groups between which no distinction had been possible due to the use of earlier methods for gonadotrophin determination. Lower RIA values for FSH or LH seemed to be more promising in terms of therapeutic success, with gravidity having been recorded from 44 per cent of hypogonadotrophic patients. The conclusion was drawn that prolactin-, FSH- or LH-RIA methods should be practicable for optimum treatment on a routine basis of patients with sterility due to anovulation. The data reported in this paper were derived from 54 patients in 117 therapeutic series.

Anovulation↗

Chronic anovulation syndrome and associated neoplasia.

Ovarian hormones have been implicated in a number of neoplastic conditions. Chronic anovulation syndrome, a spontaneous biologic experiment of unopposed secretion of estrogen by the ovaries, was identified in a cohort of 1270 patients, and the risk of these patients having neoplasia was studied. Of the 1270 patients studied, 30 had a subsequent malignancy develop; the expected number was 29.8. When the individual types of subsequent malignancy were analyzed, the endometrium was the only site at increased risk. The relative risk of developing carcinoma of the endometrium after the diagnosis of chronic anovulation syndrome is 3.1 (95% confidence interval 1.1 to 7.3). The long-term risk of developing adenocarcinoma of the endometrium might be considered when treating patients who have this syndrome.

Anovulation↗

Altered neuroendocrine status of middle-aged rats prior to the onset of senescent anovulation.

The incidence of senescent anovulation (constant estrus) in female rats increases sharply in the age interval 10--14 months. We have compared the neuroendocrine status of 12-month-old rats, which were still cycling, with that of 6-month-old rats in the reproductive prime. Norepinephrine content in the median eminence of the hypothalamus and circulating levels of FSh and androstenedione were significnatly higher in middle-aged rats (12 months old) than in young controls (6 months old). These increases were selective, in that ten other neuroendocrine parameters measured were unchanged. These results indicate that changes occur at multiple levels of the neuroendocrine system during the transitional phase prior to the onset of senescent anovulation.

Age Factors↗