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Some new thoughts on the pathophysiology and genetics of polycystic ovary syndrome.

Polycystic ovary syndrome (PCOS) is a common disorder of unknown etiology, but several lines of evidence suggest that there is an underlying genetic cause for PCOS. Studies of first-degree relatives of women diagnosed with PCOS reveal familial clustering of the disease, particularly hyperandrogenemia. A prospective study of first-degree female relatives of PCOS women found that 46% of ascertainable sisters of PCOS women were hyperandrogenemic. The serum bioavailable testosterone in the cohort of sisters showed a bimodal distribution. These observations suggest a dominantly inherited trait controlling androgen levels. Studies on cultures of human theca cells derived from follicles isolated from the ovaries of PCOS and normal women demonstrated that PCOS theca cells produce greater amounts of testosterone, 17alpha-hydroxyprogesterone, and progesterone than normal theca cells, despite the fact that cells were cultured under identical conditions for multiple population doublings. Examination of the metabolism of radiolabeled steroid hormone precursors and steady-state levels of mRNAs encoding steroidogenic enzymes revealed that there are multiple alterations in the steroidogenic machinery of PCOS theca cells, including elevated expression of the CYP11A, 3BHSD2, and CYP17 genes. The increased mRNA levels are the result, in least in part, of increased gene transcription. Interestingly, the STAR gene is not expressed at a higher level in PCOS theca cells. The stable up-regulation of steroidogenesis in PCOS thecal cells indicates either a genetic abnormality in these cells or a persistent metabolic imprint established in vivo. Linkage and association studies conducted by the National Cooperative Program in Infertility Research using affected sib-pair analysis and the transmission/disequilibrium test to explore candidate genes point a finger at a region on chromosome 19p13.3. The putative PCOS gene lying in this region has yet to be identified. However, existing data suggest that it is probably involved in signal transduction mechanisms leading to altered expression of a suite of genes that affect theca cell steroidogenic activity as well as the metabolic phenotype of other cell types, including muscle and fat.

Cholesterol Side-Chain Cleavage Enzyme↗

Prevalence and predictors of coronary artery calcification in women with polycystic ovary syndrome.

Polycystic ovary syndrome (PCOS), a common endocrine disorder of reproductive-aged women, is associated with multiple risk factors for coronary heart disease (CHD), such as diabetes mellitus, dyslipidemia, visceral obesity, and hypertension. However, premature coronary atherosclerosis has not been demonstrated in PCOS women. Electron beam computed tomography (EBCT) noninvasively measures coronary artery calcium (CAC), a marker for coronary atherosclerosis. We measured CAC by EBCT in 30- to 45-yr-old premenopausal PCOS women and compared the results to CAC in 1) recruited normal ovulatory volunteers matched for age and weight to the PCOS cohort, and 2) community-dwelling women of similar age in an extant coronary calcium database. Healthy, community-dwelling, ovulatory controls (n = 71) were matched by age and body mass index (BMI) to PCOS women (n = 36). Women with diabetes or known CHD were excluded. Subjects underwent EBCT scanning, oral glucose tolerance testing, and CHD risk factor assessment. PCOS women had significantly higher levels of serum total and low density lipoprotein cholesterol and testosterone levels than matched controls. PCOS and control women were obese and had a greater mean BMI than community-dwelling women (33 kg/m(2) for PCOS vs. 31 kg/m(2) for control; P < 0.001). CAC was more prevalent in PCOS women (39%) than in matched controls (21%; odds ratio, 2.4; P = 0.05) or community-dwelling women (9.9%; odds ratio, 5.9; P < 0.001). BMI, waist circumference, and total and low density lipoprotein cholesterol levels predicted CAC prevalence after adjustment for BMI. CAC is more prevalent in PCOS women than in obese or nonobese women of similar age. PCOS women are at increased risk for atherosclerosis and should be targeted for primary prevention of CHD.

Adult↗

Ghrelin and measures of satiety are altered in polycystic ovary syndrome but not differentially affected by diet composition.

Polycystic ovary syndrome (PCOS) is a common endocrine condition in women of reproductive age associated with obesity. It may involve dysregulation of ghrelin, a hormone implicated in appetite regulation. The effect of diet composition on ghrelin is unclear. Overweight women with and without PCOS were randomized to a high-protein (40% carbohydrate, 30% protein; 10 PCOS, six non-PCOS) or standard protein diet (55% carbohydrate, 15% protein; 10 PCOS, six non-PCOS) for 12 wk of energy restriction and 4 wk of weight maintenance. Diet composition had no effect on fasting or postprandial ghrelin or measures of satiety. Non-PCOS subjects had a 70% higher fasting baseline ghrelin (P = 0.011), greater increase in fasting ghrelin (57.5 vs. 34.0%, P = 0.033), and greater maximal decrease in postprandial ghrelin after weight loss (-144.1 +/- 58.4 vs. -28.9 +/- 14.2 pg/ml, P = 0.02) than subjects with PCOS. Subjects with PCOS were less satiated (P = 0.001) and more hungry (P = 0.007) after a test meal at wk 0 and 16 than subjects without PCOS. Appetite regulation, as measured by subjective short-term hunger and satiety and ghrelin homeostasis, may be impaired in PCOS.

Adult↗

Effects of race and family history of type 2 diabetes on metabolic status of women with polycystic ovary syndrome.

Racial origin and family history of type 2 diabetes impact upon the risk of developing impaired glucose tolerance (IGT) and type 2 diabetes, both of which are common in women with polycystic ovary syndrome (PCOS). We examined the effects of race and family history of type 2 diabetes on the risk of IGT and type 2 diabetes in a large cohort of women with PCOS. Data obtained at baseline were analyzed from 408 premenopausal women with PCOS. Multivariate linear regression models were used to assess the impact of race (white, black, and other) and family history of type 2 diabetes on body mass index, waist circumference, and waist to hip ratio; glycemic measures (glucose and insulin levels obtained during a standard 75-g oral glucose tolerance test, fasting glucose to insulin ratio, and homeostasis model assessment model of insulin resistance derived from fasting levels of glucose and insulin), hemoglobin A(1c), and SHBG, and dehydroepiandrosterone sulfate levels. Sixteen (4%) of the 408 patients had type 2 diabetes, 94 (23%) had IGT, and the remaining 298 (73%) had normal glucose tolerance. A history of type 2 diabetes in either parent (FHxPOS) was present in seven (44%) of the 16 diabetic women with PCOS, 37 (39%) of the 94 women with IGT, and 62 (21%) of those with normal glucose tolerance (P < 0.01, by chi(2) test). The prevalences of IGT and type 2 diabetes were significantly higher in FHxPOS PCOS women compared with FHxNEG PCOS women, IGT evident in 37 (35%) FHxPOS compared with 57 (19%) FHxNEG women, and type 2 diabetes evident in seven (7%) FHxPOS compared with nine (3%) FHxNEG women. Among the 392 nondiabetic subjects, after adjustment for the effects of race, FHxPOS differed significantly from FHxNEG patients in having a higher mean waist to hip ratio, hemoglobin A(1c) level, 2-h glucose level, fasting glucose and insulin levels, glucose to insulin ratio, homeostasis model assessment model of insulin resistance, and areas under the glucose and insulin curves during the oral glucose tolerance test. A family history of type 2 diabetes was present with a significantly greater frequency among women with PCOS who had IGT or type 2 diabetes compared with those with normal glucose tolerance. Conversely, a family history of type 2 diabetes in a first-degree relative was associated with a significantly higher risk for IGT or type 2 diabetes in women with PCOS. Even among nondiabetic women with PCOS, a positive family history of type 2 diabetes was strongly associated with metabolic characteristics associated with an increased risk for type 2 diabetes. Finally, the fasting glucose concentration was poorly associated with 2-h glucose concentrations among PCOS women with IGT, suggesting that the fasting glucose concentration is inadequate to predict the presence of IGT in PCOS.

Adult↗

Changes in glucose tolerance over time in women with polycystic ovary syndrome: a controlled study.

We performed this study to access the changes in glucose tolerance over time in a group of women with polycystic ovary syndrome (PCOS) (n = 71) and control women (n = 23) with regular menstrual cycles and baseline normal glucose tolerance. Mean follow-up was between 2 and 3 yr for both groups (PCOS 2.5 +/- 1.7 yr; controls 2.9 +/- 2.1 yr). Based on World Health Organization glucose tolerance categories, there was no significant difference in the prevalence of glucose intolerance at follow-up in the PCOS group. In the PCOS group, 25 (37%) had impaired glucose tolerance (IGT) and seven (10%) had type 2 diabetes mellitus at baseline, compared with 30 (45%) and 10 (15%), respectively, at follow-up. There were also no differences within groups (PCOS or control) or between groups (PCOS vs. control) in the oral glucose tolerance test-derived measure of insulin sensitivity, but in the women with PCOS who converted to either IGT or type 2 diabetes mellitus, there was a significant decrease (P < 0.0001). At the follow-up visit, the mean glycohemoglobin level was 6.1 +/- 0.9% in women with PCOS vs. 5.3 +/- 0.7% in the control women (P < 0.001). Women with PCOS and baseline IGT had a low conversion risk of 6% to type 2 diabetes over approximately 3 yr, or 2% per year. The effect of PCOS, given normal glucose tolerance (NGT) at baseline, is more pronounced with 16% conversion to IGT per year. Our study supports that women with PCOS (especially with NGT) should be periodically rescreened for diabetes due to worsening glucose intolerance over time, but this interval may be over several years and not annually.

Adult↗

Prevalence and predictors of risk for type 2 diabetes mellitus and impaired glucose tolerance in polycystic ovary syndrome: a prospective, controlled study in 254 affected women.

Women with polycystic ovary syndrome (PCOS) are insulin resistant, have insulin secretory defects, and are at high risk for glucose intolerance. We performed this study to determine the prevalence of glucose intolerance and parameters associated with risk for this in PCOS women. Two-hundred and fifty-four PCOS women, aged 14-44 yr, were prospectively evaluated at 2 centers, 1 urban and ethnically diverse (n = 110) and 1 rural and ethnically homogeneous (n = 144). The rural PCOS women were compared to 80 control women of similar weight, ethnicity, and age. A 75-g oral glucose challenge was administered after a 3-day 300-g carbohydrate diet and an overnight fast with 0 and 2 h blood samples for glucose levels. Diabetes was categorized according to WHO criteria. The prevalence of glucose intolerance was 31.1% impaired glucose intolerance (IGT) and 7.5% diabetes. In nonobese PCOS women (body mass index, <27 kg/m2), 10.3% IGT and 1.5% diabetes were found. The prevalence of glucose intolerance was significantly higher in PCOS vs. control women (chi2 = 7.0; P = 0.01; odds ratio = 2.76; 95% confidence interval = 1.23-6.57). Variables most associated with postchallenge glucose levels were fasting glucose levels (P < 0.0001), PCOS status (P = 0.002), waist/hip ratio (P = 0.01), and body mass index (P = 0.021). The American Diabetes Association criteria applied to fasting glucose significantly underdiagnosed diabetes compared to the WHO criteria (3.2% vs. 7.5%; chi2 = 4.7; P = 0.046; odds ratio = 2.48; 95% confidence interval = 1.01-6.69). We conclude that 1) PCOS women are at significantly increased risk for IGT and type 2 diabetes mellitus at all weights and at a young age; 2) these prevalence rates are similar in 2 different populations of PCOS women, suggesting that PCOS may be a more important risk factor than ethnicity or race for glucose intolerance in young women; and 3) the American Diabetes Association diabetes diagnostic criteria failed to detect a significant number of PCOS women with diabetes by postchallenge glucose values.

Adolescent↗

Selective insulin resistance in the polycystic ovary syndrome.

Polycystic ovary syndrome (PCOS) is characterized by hyperandrogenemia that is amplified by insulin in the presence of resistance to insulin's action to stimulate glucose uptake in muscle and fat. To explore the mechanisms for this paradox, we examined the metabolic and mitogenic actions of insulin and insulin-like growth factor I (IGF-I) in cultured skin fibroblasts from PCOS (n = 16) and control (n = 11) women. There were no significant decreases in the number or affinity of insulin- or IGF-I-binding sites in PCOS compared to control fibroblasts. Basal rates were similar, but there were significant decreases in insulin-stimulated (control, 51.8 +/- 7.0; PCOS, 29.5 +/- 2.9 nmol/10(6) cells x 2 h at 1,000,000 pmol/L; P < 0.005) and IGF-I-stimulated (control, 48.9 +/- 6.7; PCOS, 33.0 +/- 3.2 PCOS nmol/10(6) cells x 2 h at 100,000 pmol/L IGF-I; P < 0.05) glucose incorporation into glycogen in PCOS fibroblasts, a metabolic action of insulin. Stimulation of thymidine incorporation, a mitogenic action of insulin, was similar in PCOS and control fibroblasts in response to both insulin and IGF-I. There were also no significant differences in insulin- or IGF-I-stimulated insulin receptor substrate-1-associated phosphatidylinositol-3-kinase activity in PCOS compared to control fibroblast cells. We conclude that 1) there is a selective defect in insulin action in PCOS fibroblasts that affects metabolic, but not mitogenic, signaling pathways; 2) there is a similar defect in IGF-I action, suggesting that insulin and IGF-I stimulate glycogen synthesis by the same postreceptor pathways; and 3) insulin receptor substrate-1-associated phosphatidylinositol 3-kinase activation by insulin and IGF-I is similar to the control value, suggesting that the metabolic signaling defect is in another pathway or downstream of this signaling step in PCOS fibroblasts.

Adolescent↗

Polycystic ovary syndrome is associated with obstructive sleep apnea and daytime sleepiness: role of insulin resistance.

Polycystic ovary syndrome (PCOS) is the most common endocrine disorder of premenopausal women, characterized by chronic hyperandrogenism, oligoanovulation, and insulin resistance. Obstructive sleep apnea (OSA) and excessive daytime sleepiness (EDS) are strongly associated with insulin resistance and hypercytokinemia, independently of obesity. We hypothesized that women with PCOS are at risk for OSA and EDS. Fifty-three women with PCOS (age range, 16-45 yr) and 452 control premenopausal women (age range, 20-42), from a general randomized sample for the assessment of prevalence of OSA, were evaluated in the sleep laboratory for 1 night. In addition, women with PCOS were tested for plasma free and weakly bound testosterone, total testosterone, and fasting blood glucose and insulin concentrations. In this study, PCOS patients were 30 times more likely to suffer from sleep disordered breathing (SDB) than the controls [odds ratio = 30.6, 95% confidence interval (7.2-139.4)]. Nine of the PCOS patients (17.0%) were recommended treatment for SDB, in contrast with only 3 (0.6%) of the control group (P < 0.001). In addition, PCOS patients reported more frequent daytime sleepiness than the controls (80.4% vs. 27.0%, respectively; P < 0.001). PCOS patients who were recommended treatment for SDB, compared with those who were not, had significantly higher fasting plasma insulin levels (306.48 +/- 52.39 vs. 176.71 +/- 18.13 pmol/L, P < 0.01) and a lower glucose-to-insulin ratio (0.02 +/- 0.00 vs. 0.04 +/- 0.00, P < 0.05). Plasma free and total testosterone and fasting blood glucose concentrations were not different between the two groups of PCOS women. Our data indicate that SDB and EDS are markedly and significantly more frequent in PCOS women than in premenopausal controls. Also, insulin resistance is a stronger risk factor than is body mass index or testosterone for SDB in PCOS women. These data support our proposal that, independently of gender, sleep apnea might be a manifestation of an endocrine/metabolic abnormality in which insulin resistance plays a principal role.

Adolescent↗

Aberrant expression of growth differentiation factor-9 in oocytes of women with polycystic ovary syndrome.

Polycystic ovary syndrome (PCOS) is a major cause of female infertility. Despite substantial effort, the etiology and pathogenesis of PCOS and polycystic ovaries (PCO) in women remain unknown. Recent studies in laboratory animals have documented a link between dysfunction of two oocyte growth factors, growth differentiation factor-9 (GDF-9) and bone morphogenetic factor-15 (BMP-15), and aberrant folliculogenesis. Because aberrant follicle development is a hallmark of PCOS, we wondered whether the expression patterns of these growth factors might be disrupted in PCOS and PCO oocytes. To address this issue, we compared the pattern and level of expression of GDF-9 and BMP-15 mRNA in ovaries from normal cycling (n = 12), PCOS (n = 5), and PCO (n = 7) patients. In situ hybridization studies showed that the expression of GDF-9 and BMP-15 is restricted to the oocytes in all ovaries examined. Interestingly, a decreased level of GDF-9 signal was observed in developing PCOS and PCO oocytes, compared with normal. This difference was evident throughout folliculogenesis, beginning at recruitment initiation and continuing through the small Graafian follicle stage. By contrast, there were no qualitative or quantitative changes in the expression of BMP-15 mRNA in PCOS oocytes during folliculogenesis. There were also no significant differences between normal and PCOS and PCOs in the levels of the mRNA encoding the housekeeping gene, cyclophilin. Together, these results indicate that the expression of GDF-9 mRNA is delayed and reduced in PCOS and PCO oocytes during their growth and differentiation phase. Because oocyte-derived GDF-9 is crucial for normal folliculogenesis and female fertility, we suggest that a dysregulation of oocyte GDF-9 expression may contribute to aberrant folliculogenesis in PCOS and PCO women.

Adult↗

Amplified and orderly growth hormone secretion characterizes lean adolescents with polycystic ovary syndrome.

OBJECTIVE: The present study evaluated the hypothesis that pulsatile GH secretion is altered in adolescents with polycystic ovary syndrome (PCOS). DESIGN AND PATIENTS: Thirteen adolescent girls with PCOS (ages 13-19 years) and ten eumenorrheic controls (ages 14-19 years) matched for a range of body mass index (BMI) values underwent blood sampling every 20 min for 12 h overnight. METHODS: Serum concentrations of GH and LH were measured by specific immunofluorometric assays (IFMA). Pulsatile secretion was quantitated by deconvolution analysis and pattern orderliness by the approximate entropy (ApEn) statistic. Fasting serum androstenedione, testosterone, 17-hydroxyprogesterone, estrone, estradiol, insulin and IGF-I concentrations were measured by RIA, GH-binding protein (GHBP) by IFMA and IGF-binding protein (IGFBP)-1 and IGFBP-3 by IRMA. RESULTS: Twelve-hour mean and integrated GH concentrations, the mass of GH secreted per burst, and the GH pulse frequency were not distinguishable in patients with PCOS and controls as a whole. Subanalysis of non-obese (BMI<25 kg/m(2)) PCOS and healthy volunteers disclosed elevated 12-h GH production rates (P=0.03) and integrated serum GH concentrations (P=0.04) in (lean) patients with PCOS. ApEn analysis of the orderliness of GH release showed remarkably more regular GH secretion patterns (lower ApEn of GH release) in girls with PCOS compared with controls (P=0.02). Serum GHBP, IGF-I and IGFBP-3 concentrations were similar in both groups, whether lean or obese. However, IGFBP-1 levels were lower in the combined group of PCOS subjects compared with BMI-matched controls (P<0.05). In volunteers with PCOS, mean (12-h) serum GH concentrations correlated positively with mean serum LH levels (P=0.006). Based on deconvolution analysis, the 12-h production rate and the mass of GH secreted per burst also correlated strongly with the cognate LH measure (both predicted) (P=0.004) in PCOS. Androstenedione levels were also related to the 12-h GH secretion rate (P=0.02). CONCLUSIONS: This study shows that non-obese adolescents with PCOS secrete GH at a higher rate and with more orderly patterns, resembling a male profile. Determining whether this pattern reflects an intrinsic hypothalamic abnormality or is secondary to androgen excess in PCOS will require further studies.

17-alpha-Hydroxyprogesterone↗

High prevalence of autoimmune thyroiditis in patients with polycystic ovary syndrome.

OBJECTIVE: To investigate the prevalence of autoimmune thyroiditis (AIT) in patients with polycystic ovary syndrome (PCOS). DESIGN: Over a period of 30 months, 175 patients with PCOS were recruited to a prospective multicenter study to evaluate thyroid function and morphology; 168 age-matched women without PCOS were studied as a control group. METHODS: PCOS was defined as a- or oligomenorrhea, hyperandrogenism and exclusion of other disturbances of estrogen or androgen synthesis. All laboratory parameters were determined with automated immunoassays. Thyroid morphology was assessed by ultrasound. RESULTS: PCOS patients were characterized by an increased LH/FSH ratio, low progesterone, elevated testosterone and a high prevalence of hirsutism (PCOS 83%, control 3%; mean hirsutism score 12+/-5 and 3+/-2 respectively), but no differences in estrogen levels were found. Thyroid function and thyroid-specific antibody tests revealed elevated thyroperoxidase (TPO) or thyroglobulin (TG) antibodies in 14 of 168 controls (8.3%), and in 47 of 175 patients with PCOS (26.9%; P<0.001). On thyroid ultrasound, 42.3% of PCOS patients, but only 6.5% of the controls (P<0.001) had a hypoechoic tissue typical of AIT; while thyroid hormone levels were normal in all subjects, PCOS patients had a higher mean TSH level (P<0.001) and a higher incidence of TSH levels above the upper limit of normal (PCOS 10.9%, controls 1.8%; P<0.001). CONCLUSION: This prospective study demonstrates a threefold higher prevalence of AIT in patients with PCOS, correlated in part with an increased estrogen-to-progesterone ratio and characterized by early manifestation of the disease.

Adult↗

LH pulsatility and response to a single s.c. injection of buserelin in polycystic ovary syndrome.

The present study was undertaken in order to determine whether patients with polycystic ovary syndrome (PCOS) have LH pulse frequency and/or amplitude higher than those in normal cycling women during the follicular phase, and, if so, to establish possible factors which might influence LH secretion in PCOS. The study was conducted on 14 PCO patients (aged 19-30 years), who were subdivided according to the data on their cycle abnormality into 2 groups: amenorrheic (Am-PCOS, n = 9) and oligomenorrheic (O-PCOS, n = 5). LH pulsatility was assessed in the early follicular phase in controls (n = 5) and O-PCOS and at any time in Am-PCOS. Blood samples were taken every 10 minutes for 4 hours. Pulse analyses of LH data were performed using the Munro program. The buserelin test was performed on the same day by injection of 40 micrograms of buserelin (blood samples were taken every 60 minutes for the following 10 hours). Eleven PCO patients and 12 control subjects had an oral glucose tolerance test (oGTT) (blood samples were taken every 60 minutes for glucose, insulin and C-peptide measurements). Both mean LH pulse frequency and mean pulse intervals were not distinguishably different in PCO women (Am and O) and controls. In contrast, the mean pulse amplitude was significantly higher in the Am-PCOS group than in O-PCOS women and controls (p less than 0.02 and p less than 0.001, respectively). A significant positive correlation was established between nadir LH concentrations and LH pulse amplitude (r = +0.966, p less than 0.001). The LH response to buserelin stimulation was significantly higher in Am-PCOS than in O-PCOS (p less than 0.004). A highly significant positive correlation was observed between LH pulse amplitude and insulin response during oGTT (p less than 0.001) in PCO subjects. Basal (prebuserelin) LH concentrations correlated significantly with fasting insulin levels (p less than 0.008) and insulin and C-peptide responses to oGTT. These results allow us to conclude the following: 1. An increased LH pulse amplitude and an exaggerated LH response to buserelin observed in amenorrheic PCO subjects compared to those in oligomenorrheic PCO subjects fail to support the hypothesis of an intrinsic hypothalamo-pituitary abnormality. 2. The relationship between fasting and glucose-stimulated insulin levels with LH nadir concentrations, pulse amplitude and response to buserelin suggests an etiological role of insulin in the pathogenesis of PCOS.

Adult↗

Neuroendocrine control in polycystic ovary-like syndrome.

In this review article evidence is assembled from the neuroendocrinology of women with polycystic ovary-like syndrome (PCOS), to argue that the central dysregulation of gonadotropin secretion as found in the syndrome is not the cause of its development. The increased amplitude of luteinizing hormone (LH) pulses is explained by an increased pituitary sensitivity to gonadotropin releasing hormone (GnRH) due to prolonged unopposed estrogen exposure of the gonadotropic cells. The increase in pulse frequency cannot be used in the argument because it may be the cause for, as well the result of, the pathological status of the ovary. A good argument for a pathogenetic involvement of central factors, however, is the reversed day/night rhythm in adolescent girls with PCOS. A critical review of the literature does not give evidence of involvement of either obesity or catecholamines in the central abnormalities. Therefore they cannot cause PCOS via central feedback systems. The response of the gonadotropins to progesterone is the same as it is in normally cycling women. Androgens exert a variable effect on LH secretory patterns, although they do induce the typical change of PCOS in the ovaries. This argues for an ovarian rather than for a central cause. Endogenous opiates seem to be increased in PCOS. It can be argued that this should suppress both LH secretion and adrenal androgen secretion. It should also stimulate insulin-like growth factor (IGF)-binding proteins, thereby binding more IGF with less stimulatory action on the theca cells to produce androgens. Therefore endogenous opiates do not seem to be involved in the pathogenesis of PCOS either. Studies in PCOS during the recovery from GnRH agonist treatment show that the luteinizing hormone/follicle stimulating hormone (LH/FSH) ratio is quite normal for some time during the recovery phase. However, PCOS always develops again. This therefore does not give a clue either. In pulsatile GnRH stimulation of PCOS patients, the LH and FSH secretory patterns completely normalize. However, the symptoms of PCOS continue under this stimulation and the clinical pattern does not change dramatically. This gives the best argument that PCOS is caused by one or more peripheral factors, which may be ovarian in origin, rather than by central factors.

Androgens↗

24-hour serum cortisol profiles in women with polycystic ovary syndrome.

We studied the 24-h blood profiles of cortisol in obese and non-obese women with polycystic ovary syndrome (PCOS), for comparison with the levels in healthy women (controls). The levels of other hormones, such as androgens, which are known to be disturbed in PCOS, were also compared. Luteinizing hormone (LH) and androgen (testosterone, androstenedione and dehydroepiandrosterone sulfate (DHEAS)) concentrations were significantly (p < 0.005) raised in patients with PCOS, compared to those in control women. Sex hormone binding globulin (SHBG) concentration was significantly lower in women with PCOS, particularly in those who were overweight. There was a significant negative correlation between body mass index (BMI) and SHBG concentrations (r = -0.59; p = 0.006). Mean 24-h cortisol concentrations were similar in women with PCOS and controls, as well as in the obese and non-obese PCOS patients. However, the 24-h blood cortisol profile pattern was significantly different in women with PCOS as compared to the controls (p = 0.0039). Significantly lower cortisol levels were observed during the night (levels were determined between 20.00 and 04.00 and are expressed as the area under the curve) in subjects with PCOS, compared to the control women (p = 0.02). These changes were most marked in the non-obese women with PCOS who had lower blood cortisol levels during the night than either the controls or the obese PCOS subjects. Our finding of significantly lower cortisol concentrations during the night could reflect a subtle abnormality of adrenal steroid secretion in women with PCOS.

Adult↗

Polycystic ovary syndrome--searching for an animal model.

At present, the understanding of the pathogenesis of polycystic ovary syndrome (PCOS) has advanced significantly, and improvements have been made in the treatment of PCOS symptoms. These achievements are to some extent the result of studies on experimental animals. However, a fully convincing animal model for study of polycystic ovaries, or of PCOS as whole, has not been established. This review article discusses several rat models for PCOS. Characteristics with respect to ovarian morphology, serum levels of LH, FSH, estradiol and androgens have been described and similarities to PCOS in women are discussed. The large number of the animal models for PCOS is a result of difficulties in induction of all pathological conditions similar to those seen in human PCOs. Two important considerations should be made that concern the development of an animal model for PCOs. Firstly, what is the main purpose of the model: study of ovarian morphology in PCOs or study of human disorders? Secondly, there is no reason (and probably even a possibility) for creation of an "universal" PCOS animal model. The multifactorial etiology of the syndrome justifies such a point. Depending on what PCOS-related disorder is investigated, the most suitable animal model should be used.

Androgens↗

[Hypertension in polycystic ovary syndrome].

UNLABELLED: Polycystic ovary syndrome (PCOS) is associated with multiple cardiovascular risk factors. The aims of this study are to investigate the prevalence of hypertension in a female population with PCOS and to correlate hypertension with her clinical and hormonal profile. MATERIALS AND METHODS: it is a transversal study of 79 PCOS patients with mean age of 25 +/- 7 years (range 13-44). PCOS diagnosis is made by Rotterdam consensus criteria's (2003). WHO definition of hypertension is used (BP 140/90 mmHg). Blood pressure is measured three times in each patient. Ovarian echography and biochemical assays (GnRH test, androgens, cholesterol, triglycerides, and oral glucose tolerance test) are made before the 5th day of the menstrual cycle. RESULTS: 12% of PCOS women have hypertension. Family history of hypertension is not a predictive factor of hypertension in our study. PCOS patients with hypertension are not significantly older than those without hypertension (28.4 +/- 6.5 vs. 25.2 +/- 7; p = 0.12). If compared to PCOS women without hypertension, those with hypertension have a significantly higher BMI (39.2 +/- 7 vs. 29.6; p = 0.0004). PCOS patients with and without hypertension do not differ significantly in their level of androgens and total cholesterol. Triglycerides level is higher in PCOS patients with hypertension (p = 0.06). In oral glucose tolerance test, areas under the curve of insulin and glucose are significantly higher in PCOS patients with hypertension (respectively p = 0.06 and 0.02). The area under the curve of LH during GnRH test is lower in PCOS patients with hypertension (p = 0.04).

Adolescent↗

[Insulin resistance in obese and non-obese patients with polycystic ovary syndrome. Possible role in the pathogenesis of the disease].

The pathogenesis of Polycystic Ovary Syndrome (PCOs) is not well known till now. Previous reports indicated an hyperinsulinemia and insulin resistance in obese and non obese PCOs. However the role of hyperinsulinemia in PCOs pathogenesis is not completely understood. In this study we evaluated the glycemic and insulinemic response to OGTT in 21 women suffering from PCOs (13 obese and 8 normal weight) and in 16 fertile women as a control group (8 obese and 8 normal weight). All tested women showed normal glycemia before and after OGTT. Basal insulinemia in PCOs was similar to that observed in control group. Mean insulinemic levels following OGTT in obese control group and in PCOs were significantly higher than those observed in normal women (p < 0.05). Insulin area under curve (AUC) following OGTT in non obese PCOs was significantly higher than that observed in non obese control women (72442.13 +/- 18668.9 mUI/ml/h versus 53710.8 +/- 83365 mUI/ml/h; p = 0.02), but lower than that observed in obese PCOs (192793 +/- 49421; p < 0.001). In obese PCOs insulin AUC was significantly higher than that observed in obese control group (138836.8 +/- 28800.9; p = 0.012). Insulin AUC was positively related to BMI in control group (p < 0.001) but not in PCOs. In PCOs group insulin AUC was positively related to hirsutism degree (p = 0.032) and circulatory levels of T (p = 0.044), LH (p < 0.001) and E1 (p = 0.026).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Prevalence and characteristics of the polycystic ovary syndrome in overweight and obese women.

BACKGROUND: Surprisingly, the prevalence of polycystic ovary syndrome (PCOS) in otherwise unselected overweight or obese women is unknown, despite obesity being frequent in patients with PCOS. We conducted the present study to obtain an unbiased estimate of the prevalence of PCOS in unselected overweight and obese premenopausal women from Spain. METHODS: All premenopausal women reporting to the Department of Endocrinology, Hospital Universitario Ramón y Cajal, for dietary treatment of overweight or obesity from May 2002 to December 2005 were prospectively recruited. Women referred for any other reason were automatically excluded to avoid selection bias. Diagnosis of PCOS relied on the presence of clinical and/or biochemical hyperandrogenism, oligo-ovulation, and exclusion of secondary causes. Anthropometric measurements, hirsutism scores, and androgen, gonadotropin, metabolic, and lipid profiles were obtained. RESULTS: Of a total of 113 consecutive women recruited, 32 (28.3%) were diagnosed as having PCOS (95% confidence interval, 20.0%-36.6%). The prevalence of PCOS was not different when considering the degree of obesity. Another 3 women presented with hyperandrogenemia without oligo-ovulation, 2 had idiopathic hirsutism, 2 had chronic oligomenorrhea without clinical or biochemical hyperandrogenism, and 2 had oligomenorrhea with hyperprolactinemia, precluding the diagnosis of PCOS. The remaining 72 women (63.7%) had no evidence of hyperandrogenism or reproductive abnormalities. CONCLUSIONS: Our results demonstrate a 28.3% prevalence of PCOS in overweight and obese women from Spain, which is markedly increased compared with the 5.5% prevalence of PCOS in lean women of our country. Therefore, PCOS must be routinely ruled out in overweight and obese premenopausal women seeking advice for weight loss.

Adult↗