Prevalence of and etiological factors in polycystic ovarian syndrome.
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Prostaglandins of the 2 series are known to play a role in the regulation of menstruation and implantation but, more recently, other vasoactive peptides have been considered as potential regulators of these endometrial processes. The aim of the present study was to investigate the action of the potent vasoactive peptide bradykinin and the structurally related peptide, kallidin, on endometrial function by examining their effect on phosphoinositide hydrolysis and arachidonic acid release from endometrial cells in vitro. Primary cultures of endometrial glands and stromal cells were prelabelled with [14C]-arachidonic acid (AA) or [3H]-inositol to monitor arachidonic acid release and inositol phosphate accumulation respectively. Bradykinin and kallidin stimulated a dose and time-dependent release of arachidonic acid from stromal cells which, with 100 nmol/L bradykinin, was 30-150% above basal release and maximal at 5 min. Glands were less responsive; 100 nmol/L bradykinin (at 5 min) caused a release of AA of 30-69% above basal level. Bradykinin also stimulated a dose dependent increase in inositol monophosphate production. The maximum response with stromal cells was 8- to 10-fold and with glands, 2-fold (1 and 100 nmol/L bradykinin, respectively). Kallidin was equipotent to bradykinin with respect to both AA and inositol phosphate accumulation. The bradykinin analogue des Arg bradykinin (which acts through the B1 receptor) released AA from stromal cells but did not alter phosphoinositide hydrolysis, suggesting that these two cellular responses are mediated by different receptors (B1 and B2 respectively).(ABSTRACT TRUNCATED AT 250 WORDS)
The effects of recombinant human follicle stimulating hormone (rFSH; Org 32489) have been examined in human granulosa cells from ovaries obtained from women with spontaneous menses. In the first series of experiments the actions of rFSH on production of oestradiol and progesterone were compared with those of urinary-derived gonadotrophins. Recombinant FSH induced dose-dependent increases in production of both oestradiol and progesterone which were similar to the effects of 'pure' FSH (Metrodin) and the International Standard IS 71/223. In further studies, the actions of rFSH on oestradiol production by individual preovulatory follicles were investigated; rFSH increased oestradiol accumulation from cells obtained from follicles before the luteinizing hormone (LH) surge. In contrast, rFSH inhibited oestradiol production by granulosa cells derived from a follicle after the onset of the LH surge, whereas the gonadotrophic action of growth hormone was maintained. Following preliminary reports of the in-vivo effects of rFSH in women, these findings provide further validation of the efficacy of rFSH in the human ovary. The results of studies of the preovulatory follicle illustrate the experimental importance of the availability of recombinant preparations of pure gonadotrophins, produced by recombinant technology, in the understanding of human ovarian function.
Polycystic ovary syndrome is associated with hypersecretion of luteinizing hormone (LH) which has been implicated in the aetiology of early pregnancy loss. Although 82% of women with recurrent early loss have polycystic ovaries on ultrasound imaging, random serum LH concentrations are normal. In the present study, we have obtained further information from serial samples concerning the cyclical patterns of gonadotrophin and sex steroid secretion in these women. Twenty-one women with recurrent early pregnancy loss and 10 multiparous controls were investigated; 81% of them and one of ten control subjects had polycystic ovaries. Mean mid-follicular and mid-luteal serum LH and follicle stimulating hormone (FSH) levels were similar in both groups. Seventeen women with pregnancy loss had either raised urinary LH excretion or a premature LH surge; one control subject had a premature LH surge. Total LH excretion during the cycle and mean follicular phase serum testosterone was significantly greater with early pregnancy loss than in the control group, the difference in LH being greatest in the early luteal phase. Urinary oestrone-3-glucuronide excretion was raised in the early luteal phase of the cycle in the group with early pregnancy loss; there was no difference between the groups in pregnanediol-3 alpha-glucuronide excretion. These data demonstrate abnormalities in LH secretion in 81% of women with recurrent fetal loss. Inappropriately raised LH levels may have adverse effects on the developing oocyte or endometrium either directly, or indirectly by causing an elevation in testosterone and oestrogen levels.
OBJECTIVE: Polycystic ovary syndrome is one of the most common endocrine disorders but its aetiology remains unknown. It is highly prevalent within families, suggesting a genetic basic for the syndrome, but the mode of inheritance is unclear. The purpose of this study was to determine the mode of inheritance of polycystic ovary syndrome, within the families of affected individuals, by classic segregation analysis. DESIGN: All first degree relatives of affected individuals were screened for the presence or absence of polycystic ovaries in post-menarchal-premenopausal women and early onset male pattern baldness (MPB) in the males. In extended pedigrees, assignment of affected status in post-menopausal women was made by consideration of the clinical history alone. PATIENTS: Fourteen women (probands), presenting with a variety of clinical symptoms, were identified sequentially as having polycystic ovaries (PCO) by ultrasound scan. They were examined in detail to determine their family structure, clinical and endocrine status. Ten families were found to have sufficient members for further study. MEASUREMENTS: All family members had their body mass index calculated, their degree of hirsutism assessed using the Ferriman and Gallwey score and serum levels of gonadotrophins (FSH and LH), testosterone, prolactin and 17 alpha-hydroxyprogesterone measured by radioimmunoassay. A careful reproductive history was taken for each woman and any menstrual disturbance was noted. Obese probands had their glucose and insulin response to a standard 75-g oral glucose tolerance test determined. Each male family member was also assessed for the degree and time of onset of balding. RESULTS: First degree female relatives of affected individuals had a 51% chance of being affected. Early onset male pattern baldness (MPB) was found to be an accurate phenotype for obligate male carriers. Each family showed autosomal dominant inheritance for PCO with greater than 90% penetrance. CONCLUSIONS: We postulate that PCO and male pattern baldness are caused by alleles of the same gene which affect androgen production or action. The different frequencies of PCO and male pattern baldness arise from differing thresholds for phenotypic expression in females and males respectively. The modifying effects of other genes is the most likely explanation of the somewhat variable phenotype.
OBJECTIVE: Insulin insensitivity is a recognized feature of polycystic ovary syndrome (PCOS) but previous studies have suggested that circulating insulin concentrations are normal in hyperandrogenaemic women with regular cycles. The aim of this study was to examine the relationship between insulin sensitivity and menstrual pattern in women with PCO. DESIGN: A cross-sectional study of insulin sensitivity in a cohort of PCO subjects with oligomenorrhoea compared to women with PCO and regular menstrual cycles and a group of normal control subjects. SUBJECTS: Seventy-two women with polycystic ovaries on ultrasonography were studied. PCO subjects had clinical and/or biochemical evidence of hyperandrogenism; 53 had oligo/amenorrhoea (olig) and 19 had regular menses (reg). Results were compared with 31 control subjects. The groups were matched for age, weight and ethnic origin. METHODS: Glucose and insulin responses to 75 g oral glucose were measured. Insulin sensitivity was assessed by the decline in plasma glucose following intravenous insulin (0.05 U/kg). RESULTS: Glucose area (mean +/- SEM) after oral glucose was increased slightly in both PCO groups compared with controls (olig 37.6 +/- 1.4, reg 36.0 +/- 1.8, control 33.7 +/- 0.9 mmol/l h, both P < 0.01). Insulin area median (interquartile range) in response to glucose was significantly greater in the oligomenorrhoeic group (346 (239-734) mU/l h), compared with both PCO with regular cycles (246 (148-355), P < 0.01) and controls (221 (147-277), P < 0.01). Insulin sensitivity was reduced (P < 0.01) in the oligomenorrhoeic group (147 +/- 9.2 mumol/l min) compared to controls (185 +/- 7.4) but was normal in PCO with regular cycles (182 +/- 12.5). Insulin sensitivity did not correlate significantly with plasma testosterone or with SHBG levels, but plasma insulin concentrations correlated negatively with SHBG levels (fasting insulin vs SHBG, r = -0.47, P < 0.01; insulin area vs SHBG, r = -0.41, P < 0.01). CONCLUSIONS: Insulin insensitivity in polycystic ovary syndrome occurs when there is oligo/amenorrhoea but not when the menstrual cycle is regular. This is consistent with PCO and insulin insensitivity being separate abnormalities which when combined are associated with anovulation.
OBJECTIVE: We determined the relationship of short-term changes in circulating insulin concentrations, resulting from an oral glucose load, to those in both sex hormone binding globulin (SHBG) and insulin-like growth factor binding protein 1 (IGFBP-1) and assessed the effect of a short-term low calorie diet on the levels of SHBG and IGFBP-1 during an oral glucose tolerance test. DESIGN: A within-group comparison of biochemical indices during an oral glucose tolerance test before and after calorie restriction. PATIENTS AND METHODS: Six obese women with polycystic ovary syndrome with mean (SD) BMI 34.2 (3.4) kg/m2 were studied before and after one month on a very low calorie diet (350 kcal/day; Cambridge diet). Each subject was given a 75-g oral glucose load after an overnight fast and blood samples were taken every 30 minutes for 3 hours. These were analysed for glucose, insulin, SHBG, and IGFBP-1. RESULTS: All the women lost weight (range 1.7-9.5 kg). The SHBG concentrations did not change significantly during the oral glucose tolerance test but there was a highly significant decline in IGFBP-1 levels both before (0 min, mean (SD) 27.3 (10.6); 180 min, 8.9 (4.2) micrograms/l) and after (0 min, 28.4 (12.1); 180 min, 6.2 (2.1) micrograms/l, P < 0.001) dieting. The sum of the SHBG concentrations during the test, however, was significantly lower prior (129.9 (40.5) nmol/l) to calorie restriction than after (164.3 (70.6) nmol/l), whereas there was no significant effect of dieting on the IGFBP-1 response to glucose. CONCLUSIONS: The changes in insulin and SHBG concentrations found after dieting have been confirmed. SHBG levels, in contrast to IGFBP-1, do not change in response to a short-term increase in insulin or glucose concentrations. The difference in the response of the two binding proteins may be explained by differences in their half-lives in the circulation or the regulation of mRNA for the peptides by insulin. This study confirms that insulin regulates both SHBG and IGFBP-1 but that there is a difference in the time course of the response of the two proteins to insulin.
We have investigated the actions of FSH and insulin-like growth factor-I (IGF-I) on the production of IGF-binding protein-1 (IGFBP-1) by granulosa cells from unstimulated normal and polycystic (PCO) human ovaries and related these effects to those on estradiol (E2). IGFBP-1 concentrations were measured in granulosa cell-conditioned medium (48-h culture with 10(-7) M testosterone) and follicular fluid. IGF-I (50 ng/mL), in the absence of FSH, stimulated E2 production by granulosa cells from both normal and polycystic ovaries, and there was a synergistic action between IGF-I and FSH. Granulosa cells secreted IGFBP-1 in concentrations ranging from 20-500 pg/1000 cells.48 h, with cells from two of four normal and three of four polycystic ovaries showing a dose-related increase in IGFBP-1 production in response to FSH. In contrast, the addition of as little as 100 pg/mL IGF-I to cells incubated with testosterone or testosterone plus FSH, caused complete inhibition of IGFBP-1 production. FSH treatment produced the expected dose-related increase in E2 accumulation. IGFBP-1 was detectable in fluid from all sizes of follicle tested, but there was no correlation of IGFBP-1 concentrations with follicle size and no difference between normal and polycystic ovaries. These data indicate that IGFBP-1 and E2 are differentially regulated by IGF-1 in the human ovary.
The effects of insulin-like growth factor-binding proteins (IGFBPs) 1 and 3 on steroidogenesis by human granulosa cells has been examined. Both IGFBP-1 and IGFBP-3 produced a dose-related inhibition of IGF-I-stimulated oestradiol accumulation in granulosa cell-conditioned medium with complete reversal of the effects of IGF-I in the presence of a molar excess of binding protein. IGFBPs 1 and 3 also exerted a small (25-40%) but significant and consistent inhibition of oestradiol secretion in response to follicle-stimulating hormone (FSH) alone. The progesterone response to IGF-I was inhibited by IGFBPs 1 and 3 but there was no effect on FSH-stimulated progesterone production. These data support the concept of a physiologically important intraovarian IGF system in the human ovary and demonstrate an unequivocally inhibitory effect of IGFBPs 1 and 3 on IGF-I-stimulated granulosa cell steroidogenesis.
OBJECTIVE: In order to investigate the possible causes and effects of obesity in polycystic ovary syndrome resting energy expenditure, postprandial thermogenesis and insulin resistance were measured in 14 polycystic ovary syndrome subjects and in 14 controls. DESIGN: A cross-sectional study of a selected group of patients was performed. PATIENTS: Seven of the PCOS subjects were obese and seven lean. Controls were individually matched for age, race, weight, body mass index (BMI) lean body mass and percentage fat. The obese, but not lean, polycystic ovary syndrome subjects had a greater waist:hip ratio than controls (median (range) obese PCOS 0.865 (0.823-0.960) vs obese control 0.804 (0.823-0.940), P less than 0.025). MEASUREMENTS: Metabolic rate was measured by continuous indirect calorimetry and insulin sensitivity was assessed by a short insulin tolerance test. RESULTS: The resting energy expenditure (REE) was similar in PCOS subjects and controls (median (range), 6796 (5489-7774) vs 6833 (4893-8492) kJ/day). REE correlated with LBM in the PCOS group (r = 0.83, P less than 0.00) and the control group (r = 0.82, P less than 0.001). Postprandial thermogenesis was reduced in polycystic ovary syndrome (obese: median 45.4 (range 33.6-100.0) vs 86.5 (67.2-109.2) kJ (P less than 0.05); lean: 79.4 (73.5-108.4) vs 89.9 (76.0-109.2) kJ (P less than 0.05). Fasting insulin (9.7 +/- 3.6 vs 4.4 +/- 0.8 mU/l, P less than 0.05) and postprandial incremental insulin rise (163 +/- 31 vs 116 +/- 15 mU/l, P less than 0.025) were higher in polycystic ovary syndrome. Insulin sensitivity was reduced in polycystic ovary syndrome (obese: median 136 (range 92-169) vs 173 (109-225) mumol/l/min (P less than 0.05); lean: 161 (138-225) vs 194 (161-253) mumol/l/min (P less than 0.05)). The reduction in insulin sensitivity correlated with the reduced postprandial thermogenesis in the polycystic ovary syndrome group (r = 0.75, P less than 0.01). CONCLUSION: These results confirm previous reports of hyperinsulinaemia and insulin resistance in polycystic ovary syndrome. Furthermore, polycystic ovary syndrome subjects have a reduced postprandial thermogenesis which is related statistically to the reduced insulin sensitivity. The decreased postprandial thermogenesis may predispose women with polycystic ovary syndrome to weight gain.
OBJECTIVE: Obese women with polycystic ovary syndrome have a greater frequency of menstrual disturbance and of hirsutism than lean women with the syndrome. Initial studies have demonstrated a marked improvement in endocrine function following a short-term, very low calorie diet. The purpose of this study was to examine the effect of long-term calorie restriction on clinical as well as biochemical abnormalities in obese women with polycystic ovary syndrome. DESIGN: We performed a within-group comparison of clinical and biochemical indices before and during dietary treatment. PATIENTS: Twenty-four obese women with polycystic ovary syndrome (mean weight 91.5 (SD 14.7) kg) were scheduled for treatment for 6-7 months with a 1000 kcal, low fat diet. Nineteen of the 24 had menstrual disturbances, 12 had infertility and 19 were hirsute. MEASUREMENTS AND RESULTS: Thirteen subjects lost more than 5% of their starting weight (range 5.9-22%). In this group there was no significant change in gonadotrophin or total serum testosterone levels but there was a marked increase in concentrations of sex hormone-binding globulin (pretreatment: 23.6 (9.5); post-treatment 36.3 (11.8) nmol/l, P = 0.002) and a reciprocal change in free testosterone levels (77 (26) vs 53 (21) pmol/l, P = 0.009). These changes were accompanied by a reduction in fasting serum insulin levels (median (range) 11.2 (5.2-32) vs 2.3 (0.1-13.8) mU/l, P = 0.018) and the insulin response to 75 g oral glucose. There were no significant changes in these indices in the group who lost less than 5% of their initial body weight. Of the 13 women who lost greater than 5% of their pretreatment weight, 11 had menstrual dysfunction. Amongst these women, nine of 11 showed an improvement in reproductive function, i.e. they either conceived (five) or experienced a more regular menstrual pattern. There was a reduction in hirsutism in 40% of the women in this group. By contrast, in the group who lost less than 5% of their initial weight, only one of the eight with menstrual disturbances noted an improvement in reproductive function and none had a significant reduction in hirsutism. CONCLUSIONS: These data indicate that moderate weight loss during long-term calorie restriction is associated with a marked clinical improvement which reflects the reduction in insulin concentrations and reciprocal changes in SHBG. The improvement in menstrual function and fertility may therefore be consequent upon an increase in insulin sensitivity which, directly or indirectly, affects ovarian function.
OBJECTIVE: To compare the activity of calcium independent phospholipase A2 in the endometrium of women with polycystic ovaries and in women with normal ovaries, and to investigate the influence of chronic pelvic pain on phospholipase A2 activity. DESIGN: A prospective descriptive study. SETTING: The Samaritan Hospital for Women and the Unit of Metabolic Medicine, St Mary's Hospital Medical School, London. SUBJECTS: 73 women attending the Samaritan Hospital for Women for clip sterilization, infertility, early recurrent miscarriage or pelvic venous congestion. 45 of these women had no pelvic pain, 22 had normal ovaries and 23 had polycystic ovaries diagnosed by ultrasound. The other 28 women had chronic pelvic pain, 14 of them had normal ovaries and 14 polycystic ovaries. INTERVENTIONS: Endometrial tissue was obtained at curettage or from the excised uterus in the proliferative or secretory phase of the menstrual cycle. The activities of calcium dependent (type 1) and calcium independent (type 2) phospholipase A2 isoenzymes were measured in all endometrial samples. RESULTS: In all the women phospholipase A2 type 1 activity, was significantly higher in the secretory phase than in the proliferative phase (P less than 0.001). There was no difference between women with normal ovaries and those with polycystic ovaries at either stage of the cycle irrespective of whether or not chronic pelvic venous congestion was present. In women with normal ovaries, both with and without chronic pelvic pain, phospholipase A2 type 2 activity was significantly higher in the secretory phase than in the proliferative phase (P less than 0.02 and P less than 0.05 respectively) but in women with polycystic ovaries, with and without chronic pelvic pain, there was no significant difference in activity between the two phases of the cycle. Women with polycystic ovaries had markedly higher proliferative phase type 2 activity than women with normal ovaries (P less than 0.001). Secretory phase type 2 activity was similar in all the women investigated. CONCLUSION: These data suggest that phospholipase A2 type 2 activity is increased in proliferative phase endometrium of women with polycystic ovaries but that the increase is not associated with chronic pelvic venous congestion.
OBJECTIVE: To assess the effect of moderate obesity on the outcome of induction of ovulation with low dose gonadotrophin in women with polycystic ovary syndrome (PCOS). DESIGN: Retrospective analysis of women with PCOS treated consecutively. An analysis of the impact of obesity on outcome of pregnancy using data from the North West Thames Regional (NWTR) obstetric database was included for comparison. SETTING: Induction of ovulation clinic at the Samaritan Hospital for Women (St. Mary's Hospital Group). SUBJECTS: 100 women with clomiphene-resistant anovulation associated with PCOS. 75 were of normal weight (BMI 19-24.9 kg/m2, lean group) and 25 were moderately overweight (BMI 25-27.9 kg/m2, obese group). INTERVENTIONS: Induction of ovulation using low doses of gonadotrophins with small, stepwise increments in dosage as required. MAIN OUTCOME MEASURES: Rates of ovulation, pregnancy and miscarriage; daily and total doses of gonadotrophin required for induction of ovulation. RESULTS: The proportion of ovulatory cycles was significantly greater in the lean group (77%) compared with the obese group (57%) (chi 2 9.8, P less than 0.001). Obese women required larger doses of gonadotrophin to achieve ovulation (P less than 0.001). The proportion of women who achieved at least one pregnancy was similar in the two groups (39% vs 48%) but miscarriage was more frequent in the obese group (60% vs 27%; P less than 0.05). This difference was independent of the baseline and/or mid-follicular luteinizing hormone (LH) concentration either before or during treatment. Analysis of data from the North West Thames Health Region obstetric database confirmed an increased risk of miscarriage in moderately obese women which was independent of maternal age. CONCLUSIONS: Moderate obesity in women with PCOS, treated with low dose gonadotrophin, is associated with an increased risk of miscarriage. This is reflected in the results of analysis of the effect of obesity on outcome of pregnancy in the general population. It is therefore important to encourage weight reduction in obese women with PCOS before considering therapy to induce ovulation.
In an analysis of 263 women with polycystic ovary syndrome (PCOS), 91 (35%) of whom were obese (body mass index greater than 25 kg/m2), it was found that obese women with PCOS were more likely to be anovulatory and had a higher prevalence of hirsutism than the non-obese subgroup. Although serum concentrations of gonadotrophins, androstenedione and total testosterone were similar in obese and lean women with PCO, sex hormone binding globulin (SHBG) levels were significantly lower, and free testosterone correspondingly higher, in obese women. Serum concentrations of SHBG were inversely correlated with those of both fasting and glucose-stimulated insulin. A short-term, very-low-calorie diet resulted in a 2-fold increase in SHBG which was mirrored by a fall in serum insulin. Similar biochemical changes were also observed during a long-term (6-7 months) 1000 kcal diet and were associated with an improvement of menstrual function and fertility. This encourages the view that calorie restriction has an important part to play in the management of obese women with PCOS.
The mechanism of the ovarian dysfunction in polycystic ovary syndrome, the most common cause of anovulatory infertility, remains obscure. Clinical data suggest that follicle stimulating hormone (FSH) action may be inhibited at the ovarian level by paracrine factors derived, presumably, from interstitial cells. The greater responsiveness to FSH of granulosa cells isolated from polycystic ovaries (PCO) compared with that seen in cells derived from normal ovaries, provides some support for this hypothesis and we present data which suggests that epidermal growth factor, or more likely transforming growth factor alpha, could be a candidate for this inhibitor. It should be emphasized, however, that the cardinal biochemical feature of the PCO is hypersecretion of androgens by interstitial cells. Stromal tissue from the PCO will secrete significant quantities of androstenedione in response to LH, whereas there is a negligible response in stroma from normal ovaries. It remains to be determined whether androgens have a direct inhibitory effect on FSH-induced oestradiol production in the human follicle, or whether they might exert an indirect effect by activating inhibitory polypeptide growth factors.
Treatment with low-dose follicle-stimulating hormone (FSH) is associated with a high rate of ovulation in anovulatory women with polycystic ovarian syndrome (PCOS), but it is not clear whether the success of treatment is because of the use of pure FSH or the low dose of gonadotropin. We undertook a randomized controlled study to compare the effects of urinary FSH and human menopausal gonadotropin (hMG) using a low-dose regimen in 30 women with PCOS. Each subject received a maximum of three cycles of either FSH or hMG. Ovulation occurred in 75% of subjects and in 77% of cycles induced with FSH and in 94% of women, 85% of cycles of those treated with hMG. A single dominant follicle developed in 70% (FSH) and 65% (hMG) of cycles, respectively. Five singleton pregnancies occurred in each group. This study shows that low-dose FSH and hMG are equally successful in inducing ovulation, suggesting that the success of treatment depends on the low dose of gonadotropin used rather than the presence or absence of luteinizing hormone in the preparation.
Women with anovulation due to polycystic ovary syndrome are likely to develop multiple follicles during gonadotrophin therapy and therefore have a high risk of multiple pregnancy. We have developed a low-dose regimen for use in these women; 100 women with clomiphene-resistant polycystic ovary syndrome were treated. Ninety-five of the women ovulated at least once, 72% of the 401 cycles induced were ovulatory and the majority (73%) of these were uni-ovulatory. The overall cumulative conception rate was 55% at 6 months with only two multiple pregnancies. The rate of early pregnancy loss was 32%, which is similar to that reported by other groups. The prevalence of complications was low with no cases of severe hyperstimulation and less than 5% of cycles were abandoned because of development of multiple follicles. Analysis of baseline and mid-follicular luteinizing hormone levels showed that a raised baseline and/or mid-follicular luteinizing hormone level was associated with a poor response to treatment, i.e. anovulation, ovulation but no conception, or early pregnancy loss. There were no successful pregnancies in the women whose luteinizing hormone levels were persistently raised during ovulatory cycles. Low-dose gonadotrophin therapy is a safe and effective method of inducing ovulation; it is associated with a high incidence of single follicular development and a very low multiple pregnancy rate.