Polycystic ovary syndrome (PCOS), a complex endocrine and metabolic disorder, involves significant dysregulation of the immune system. Natural killer (NK) cells, as key components of innate immunity, demonstrate notable phenotypic and functional alterations in women with PCOS. These changes include not only an elevated proportion in peripheral blood but also dynamic shifts within the local microenvironments of the ovary and endometrium. The increased level of peripheral NK cells correlates with a chronic low-grade inflammatory state, potentially serving as a predictive marker in infertile PCOS patients. Within the endometrium, uterine NK (uNK) cells exhibit reduced numbers and impaired function, accompanied by dysregulation of cytokine networks such as IL-15 and IL-18, which disrupts the immune equilibrium essential for embryo implantation. Abnormal NK cell function further involves alterations in killer immunoglobulin-like receptor (KIR) repertoires and dysregulated secretion of angiogenic factors, thereby compromising endometrial receptivity and vascular remodeling. Hyperandrogenemia modulates the distribution and activity of NK cells in reproductive tissues by influencing their surface activation markers, while insulin resistance promotes the generation of myeloid-feature NK (myNK) cell subsets via the IL-6/Stat3 signaling pathway, collectively exacerbating metabolic inflammation and reproductive dysfunction. Deciphering the role of NK cells in the immunometabolic interplay of PCOS reveals their position as a critical link between. May represent a potential cutoff requiring validation in larger cohorts reproductive impairment and metabolic disturbances, opening new avenues for targeted immunomodulatory interventions. Collectively, NK cells appear to present an important immunometabolic link between reproductive dysfunction and metabolic disturbance in PCOS, highlight their potential relevance as therapeutic targets.
Zhang S et al., 2025·American journal of preventive medicine
Polycystic ovary syndrome is associated with hypertension in women, but few population studies have examined findings among adolescents. This retrospective study examines PCOS and hypertensive blood pressure in a large adolescent population receiving routine healthcare. Among females aged 13-17 years who had a well-child visit with systolic/diastolic blood pressure measured in a Northern California healthcare system (2013-2019), the outcome of hypertensive blood pressure (≥130/80 mmHg) was examined. Polycystic ovary syndrome was based on clinical diagnosis (ICD-9/10 256.4/E28.2) within 1 year of the visit. Overweight and obesity were defined by BMI 85th to <95th percentile and ≥95th percentile, respectively; 1.7% with underweight (<5th percentile) were excluded. Multivariable logistic regression was used to examine the association of polycystic ovary syndrome and hypertensive blood pressure, adjusting for age, race/ethnicity, BMI category, and estimated neighborhood deprivation index. Analyses were conducted in 2023-2024. The cohort included 224,418 females (mean age 14.9±1.4 years; 34.3% non-Hispanic White, 30.1% Hispanic, 19.5% Asian/Pacific Islander, and 9.7% Black). Overall, 18.7% had overweight and 15.8% had obesity. The prevalence of hypertensive blood pressure was 7.2%, much higher for those with polycystic ovary syndrome (18.2%) versus no polycystic ovary syndrome (7.1%, p<0.001). In adjusted analyses, polycystic ovary syndrome was associated with 1.25-fold greater odds of hypertensive blood pressure (95% CI=1.10, 1.42). Similar findings were seen among the subset with obesity (OR=1.23 [95% CI=1.06, 1.42]). Nearly 1 in 5 adolescents with polycystic ovary syndrome had hypertensive blood pressure. Polycystic ovary syndrome was associated with 25% increased adjusted odds of hypertensive blood pressure, emphasizing the importance of blood pressure surveillance in this population with higher cardiometabolic risk.
Globally, polycystic ovarian syndrome (PCOS) affects approximately 10% of fertile women, leading to great health and economic burden. PCOS is a heterogenous illness that can cause infertility, irregular menstrual cycles, acne, and hirsutism, among other symptoms. The clinical diagnosis is primarily a diagnosis of exclusion if one or more of the three primary symptoms, namely, oligo- or anovulation, hyperandrogenism, and polycystic ovarian morphology, are present. Obesity and PCOS are often coexisting disorders that may be bidirectionally causally related. Phenotypic heterogeneity throughout the reproductive lifespan, such as the overlap of PCOS symptoms with regular fluctuations in a woman’s menstrual cycle and metabolism during the menarche and menopausal transition, further complicates diagnosis. PCOS etiology is mostly unknown and complex, likely due to the fact that it is a group of disorders with overlapping metabolic and reproductive problems. Evidence-based, common, standardized guidelines for PCOS diagnosis and treatment are urgently needed. Genomics and clinical data from populations across diverse ages and ethnicities are urgently needed to build efficient machine learning models for the stratification of PCOS. PCOS subtype-specific strategies for early screening, an accurate diagnosis, and management throughout life will optimize healthcare resources and reduce unnecessary testing. This will pave the way for women to be able to take the best possible care of their own health using the latest clinical expertise combined with their unique needs and preferences.
Yu O et al., 2023·American journal of obstetrics and gynecology
Polycystic ovary syndrome is the most common endocrine disorder in women of reproductive age, yet US incidence estimates do not exist, and prevalence estimates vary widely. A population-based US study estimated the incidence, prevalence, and trends of polycystic ovary syndrome by age, race and ethnicity, and diagnosing provider type. A retrospective cohort study of patients enrolled in Kaiser Permanente Washington from 2006 to 2019 was conducted. All members identified as female, aged 16 to 40 years with at least 3 years of enrollment and at least 1 healthcare encounter during that time, were eligible for inclusion. Individuals were excluded if they had a history of oophorectomy or hysterectomy. Polycystic ovary syndrome cases were identified using the International Classification of Diseases diagnosis codes (International Classification of Diseases, Ninth Revision, 256.4 or International Classification of Diseases, Tenth Revision, E28.2). Individuals with a polycystic ovary syndrome diagnosis before study entry were excluded from incidence rate estimations. The incidence rates were adjusted by age using direct standardization to the 2010 US census data. Temporal trends in incidence were assessed using weighted linear regression (overall) and Poisson regression (by age, race and ethnicity, and provider type). Prevalent cases were defined as patients with a polycystic ovary syndrome diagnosis at any time before the end of 2019. Medical record review of 700 incident cases diagnosed in 2011-2019 was performed to validate incident cases identified by International Classification of Diseases codes using the Rotterdam criteria. Among 177,527 eligible patients who contributed 586,470 person-years, 2491 incident polycystic ovary syndrome cases were identified. The mean age at diagnosis was 26.9 years, and the mean body mass index was 31.6 kg/m2. Overall incidence was 42.5 per 10,000 person-years; the rates were similar over time but increased in individuals aged 16 to 20 years from 31.0 to 51.9 per 10,000 person-years (P=.01) and decreased among those aged 26 to 30 years from 82.8 to 45.0 per 10,000 person-years (P=.02). A small decreasing temporal trend in incidence rates was only observed among non-Hispanic White individuals (P=.01). The incidence rates by diagnosing provider type varied little over time. Among the 58,241 patients who contributed person-time in 2019, 3036 (5.2%) had a polycystic ovary syndrome International Classification of Diseases diagnosis code; the prevalence was the highest among the Hawaiian and Pacific Islander group (7.6%) followed by Native American and Hispanic groups. Medical record review classified 60% as definite or probable incident, 14% as possible incident, and 17% as prevalent polycystic ovary syndrome. The overall positive predictive value of polycystic ovary syndrome International Classification of Diseases diagnosis code for identifying definite, probable, or possible incident polycystic ovary syndrome was 76% (95% confidence interval, 72%-79%). Among a cohort of nonselected females in the United States, we observed stable rates of incident polycystic ovary syndrome diagnoses over time. The incidence of polycystic ovary syndrome was 4- to 5-fold greater than reported for the United Kingdom. The prevalence of polycystic ovary syndrome (5.2%) was almost double before the published US estimates (2.9%) based on the International Classification of Diseases codes. Race and ethnicity and provider type did not seem to have a major impact on temporal rates. Incident diagnoses increased over time in younger and decreased in older age groups, perhaps related to shifting practice patterns with greater awareness among practitioners of the impact of polycystic ovary syndrome on long-term health outcomes and improved prevention efforts. Moreover, increasing obesity rates may be a factor driving the earlier ages at diagnosis.
Polycystic ovary syndrome (PCOS) is a complex endocrine and metabolic disorder, typically characterized by anovulation, infertility, obesity, insulin resistance, and polycystic ovaries. Lifestyle or diet, environmental pollutants, genetics, gut dysbiosis, neuroendocrine alterations, and obesity are among the risk factors that predispose females to PCOS. These factors might contribute to upsurging metabolic syndrome by causing hyperinsulinemia, oxidative stress, hyperandrogenism, impaired folliculogenesis, and irregular menstrual cycles. Dysbiosis of gut microbiota may play a pathogenic role in the development of PCOS. The restoration of gut microbiota by probiotics, prebiotics, or a fecal microbiota transplant (FMT) might serve as an innovative, efficient, and noninvasive way to prevent and mitigate PCOS. This review deliberates on the variety of risk factors potentially involved in the etiology, prevalence, and modulation of PCOS, in addition to plausible therapeutic interventions, including miRNA therapy and the eubiosis of gut microbiota, that may help treat and manage PCOS.
Polycystic ovarian syndrome (PCOS) is a metabolic, reproductive, and psychological complex series of disorders that impacts a woman throughout her lifespan. PCOS is a disorder of hormonal imbalance occurring in women of reproductive age. This disorder is characterized by high levels of male androgens like testosterone. This can lead to symptoms like irregular periods, amenorrhea (absence of menstruation), anovulation (absence of ovulation), hirsutism, acne, and obesity. PCOS also causes metabolic impairment. Multiple peripherally arranged immature follicles of about 2-5mm in diameter are present in the ovary. These follicles do not mature due to hormonal imbalances leading to an irregular menstrual cycle. PCOS is a metabolic, reproductive, and psychological complex series of disorders that impacts a woman throughout her lifespan. Polycystic ovarian syndrome is not a fatal or life-threatening disorder as its main complication is infertility. PCOS can be a root cause of serious medical conditions like obesity, hypertension, type-2 diabetes mellitus due to insulin resistance, endometrial cancers, ovarian cancer, etc. Stress may cause the hormone levels in the pituitary to fluctuate. Since the menstrual cycle is hormone-based, there are apparent irregularities.
Yang R et al., 2022·Lancet Reg Health West Pac·
Open Access
Polycystic ovary syndrome (PCOS) has become a major international public health concern. However, because of controversy about the diagnostic criteria and patient selection, estimates of its absolute prevalence and change with time vary greatly. We conducted two consecutive nationwide epidemiological surveys of the prevalence of PCOS in representative samples of reproductive-aged women in China in 2010 and 2020. Face-to-face interviews were performed by trained interviewers in each survey. All participants completed a questionnaire and underwent a physical examination, blood sampling, and transvaginal pelvic ultrasound. We assessed hyperandrogenism (H), chronic anovulation (O), and polycystic ovaries (P) to classify the presence of PCOS using the Rotterdam criteria. The prevalence of PCOS among reproductive-aged women was estimated after consideration of differential probabilities of selection and population distribution. We conducted a logistic regression analysis by using the probability of PCOS as a function of the survey year to acquire the trend information across the years. Findings: 28,739 respondents completed the survey, including 15,924 in the previously published 2010 survey and 12,815 in the new 2020 survey. In 2020, 826 participants could be diagnosed as having PCOS, with a weighted prevalence of 7.8% (95%CI: 7.0%, 9.0%) among women aged 20-49 years, leading to an estimate of 24.0 million women of reproductive age affected by this condition in China as a whole. The estimated prevalence in 2020 was higher than that of a decade ago despite identical research methods suggesting a two-thirds increase over the study period. Women with PCOS in 2020 also appeared to have a more severe phenotype overall than those of a decade ago, possibly reflecting a significantly higher prevalence of obesity, hyperandrogenism, and infertility. Interpretation: The prevalence of PCOS in Chinese women has increased significantly over the past 10 years. PCOS is a significant public health problem in women of reproductive age in China and national policy and guidelines should be re-examined in the light of the current data. National Key R&D Program of China and the National Natural Science Foundation of China.
Giri A et al., 2022·JNMA; journal of the Nepal Medical Association
Metabolic syndrome in polycystic ovarian syndrome is associated with a long-term risk of developing type 2 diabetes mellitus and cardiovascular disease. This study aims to find the prevalence of metabolic syndrome among patients with polycystic ovarian syndrome presenting to a tertiary care hospital. A descriptive cross-sectional study was done on women attending the obstetrics and gynecology outpatient department of a tertiary care hospital from June 2020 to May 2021. A total of 106 women diagnosed with polycystic ovarian syndrome using Rotterdam criteria 2003 were recruited for the study and cases of metabolic syndrome was defined according to the modified American Heart Association/National Heart Lung and Blood Institute. Ethical approval was taken from the Institutional Review Committee of Nepal Medical College and Teaching Hospital (Reference number: 001-077/078). Convenience sampling was done. The collected data was entered and analyzed in Statistical Package for the Social Sciences version 21. Calculation of point estimate at 95% confidence interval was done along with frequency and proportion for binary data. Among 106 women with polycystic ovarian syndrome, 50 (47.1%) had metabolic syndrome (37.59-56.60 at 95% Confidence Interval). The most common component of metabolic syndrome was low high-density lipoprotein cholesterol in 90 (84.9%) followed by central obesity in 60 (56.6%), hypertriglyceridemia in 47 (44.33%), high fasting sugar in 34 (32.07%), and high blood pressure in 14 (13.2%). The prevalence of metabolic syndrome among patients with the polycystic ovarian syndrome was similar to other studies done in similar settings.
Polycystic ovary syndrome (PCOS) often coexists with a wide spectrum of dysglycemic conditions, ranging from impaired glucose tolerance to type 2 diabetes mellitus (T2D), which occur to a greater extent compared to healthy body mass index-matched women. This concurrence of disorders is mainly attributed to common pathogenetic pathways linking the two entities, such as insulin resistance. However, due to methodological flaws in the available studies and the multifaceted nature of the syndrome, there has been substantial controversy as to the exact association between T2D and PCOS which has not yet been elucidated. The aim of this review is to present the best available evidence regarding the epidemiology of dysglycemia in PCOS, the unique pathophysiological mechanisms underlying the progression of dysglycemia, the most appropriate methods for assessing glycemic status and the risk factors for T2D development in this population, as well as T2D risk after transition to menopause. Proposals for application of a holistic approach to enable optimal management of T2D risk in PCOS are also provided. Specifically, adoption of a healthy lifestyle with adherence to improved dietary patterns, such the Mediterranean diet, avoidance of consumption of endocrine-disrupting foods and beverages, regular exercise, and the effect of certain medications, such as metformin and glucagon-like peptide 1 receptor agonists, are discussed. Furthermore, the maintenance of a healthy weight is highlighted as a key factor in achievement of a significant reduction of T2D risk in women with PCOS.
Polycystic ovary syndrome (PCOS) is one of the most common endocrine diseases among women of reproductive age and is associated with many metabolic manifestations, such as obesity, insulin resistance (IR) and hyperandrogenism. The underlying pathogenesis of these metabolic symptoms has not yet been fully elucidated. With the application of metabolomics techniques, a variety of metabolite changes have been observed in the serum and follicular fluid (FF) of PCOS patients and animal models. Changes in metabolites result from the daily diet and occur during uncommon physiological routines. However, some of these metabolite changes may provide evidence to explain possible mechanisms and new approaches for prevention and therapy. This article reviews the pathogenesis of PCOS metabolic symptoms and the relationship between metabolites and the pathophysiology of PCOS. Furthermore, the potential clinical application of some specific metabolites will be discussed.
Hoeger KM et al., 2021·The Journal of Clinical Endocrinology & Metabolism
Polycystic ovary syndrome (PCOS) is one of the most common reproductive endocrine disorders in women and despite this, diagnostic challenges, delayed diagnosis, and less-than-optimal treatment regimens plague the condition. The International PCOS network, consisting of geographically diverse international experts in PCOS as well as consumers, engaged in a multi-year international evidence-based guideline development process that was jointly sponsored by the European Society for Human Reproduction and Embryology (ESHRE) and the American Society of Reproductive Medicine (ASRM). The guideline was published in 2018 and endorsed by more than 40 international societies involved in PCOS. Translation of this evidence-based guideline to medical practice and consumer groups remains a priority. However, there remain many challenges to both understanding the diagnosis and treatment of PCOS. Evidence suggests that both clinicians and consumers are not satisfied with the timeliness of diagnosis and treatment options. This review summarizes the important findings for diagnosis and treatment from the guidelines and expands on recent developments in the literature since its publication. Special attention to diagnosis at the ends of the reproductive spectrum are discussed and remaining areas of controversy are noted. Additionally, the review highlights some of the remaining challenges in the understanding and management of PCOS to help guide clinicians and investigators in this perplexing condition.
Polycystic ovary syndrome (PCOS) is a reproductive, endocrine, and metabolic disorder affecting millions of women worldwide. Women with PCOS are often identified in adolescence or early adulthood with symptoms of oligomenorrhea or hirsutism or when presenting for infertility care. The health risks associated out of PCOS, however, go far beyond management of these common presenting symptoms or fertility treatment and likely extend past the reproductive years through and beyond menopause. International surveys suggest that most patients are dissatisfied with long-term counseling related to medical and psychologic issues. We performed a review of comorbidities, including diabetes mellitus, dyslipidemia, obesity, hypertension, metabolic syndrome, depression, anxiety, obstructive sleep apnea, nonalcoholic fatty liver disease, endometrial cancer, and cardiovascular disease, in both reproductive-age and older women with PCOS. Most meta-analyses in reproductive-age women demonstrate increased risks independent from obesity. Longitudinal and cross-sectional studies including women with PCOS >40 years of age are limited in number and design, but many demonstrate that some of these comorbidities persist. All providers involved in the multidimensional care of women with PCOS should be aware of these long-term health risks to provide appropriate counseling, screening, and management options. We identify limitations that should be the focus of future studies designed to study health outcomes in postmenopausal women with PCOS.
Chandrasekaran S et al., 2018·The Obstetrician & Gynaecologist·
Key content The risk factors for metabolic syndrome include central obesity, hypertension, atherogenic dyslipidaemia and insulin resistance. Metabolic syndrome affects 33% of women with polycystic ovary syndrome (PCOS) and has been less well researched than other features such as infertility, anovulation and hirsutism. Consequences of metabolic syndrome include cardiovascular disease, type II diabetes, cancer, sleep apnoea and psychological problems. Cardiometabolic risk screening involves obtaining data on smoking history, weight, body mass index, waist circumference, blood pressure, lipid profile, and taking an oral glucose tolerance test. Management of metabolic syndrome should focus on risk factors and individual components. Lifestyle modification is the only recommended intervention at present. Learning objectives To know the pathogenesis and consequences of metabolic syndrome in women with PCOS. To understand the diagnostic criteria and screening procedures for metabolic syndrome. To learn how to manage metabolic syndrome in women with PCOS. Ethical issues Potential preventive long‐term medication raises two issues: duration of therapy and unwarranted adverse effects. Advocating bariatric surgery without availability of robust evidence in PCOS women.
Polycystic ovary syndrome (PCOS) is diagnosed by its characteristic reproductive features. However, PCOS is also associated with metabolic abnormalities, including insulin resistance and β-cell dysfunction. The severity of these abnormalities varies according to the reproductive phenotype, with the so-called NIH or classic phenotype conferring the greatest metabolic risk. The increased risk for type 2 diabetes (T2D) is well established among affected women with the NIH phenotype, but whether PCOS also confers an increased risk for cardiovascular events remains unknown. Recent studies in daughters of affected women have found evidence for pancreatic β-cell dysfunction prior to menarche. Further, genetic analyses have provided evidence that metabolic abnormalities such as obesity and insulin resistance contribute to the pathogenesis of PCOS. PCOS increases the risk for T2D. However, the risk for cardiovascular disease has not been quantified, and prospective, longitudinal studies are still critically needed.
Bani Mohammad M et al., 2017·Asian Pac J Cancer Prev·
The polycystic ovary syndrome (PCOS) is the most common cause of anovulatory infertility and a notable proportion of women of reproductive age are affected. It may constitute a risk factor for cancer development. Different factors could result in different manifestations and many of these are related to predispositions. It is essential to establish criteria to achieve an exact diagnosis of PCOS, especially among adolescent patients because of the overlap between features of PCO syndrome and physiological findings in puberty. Day by day the technology of ultrasonography is improving and accuracy is increasing, but remains dependent on the specific equipment available. Some factors are inter-related in determining PCOS prognosis. Serum AMH is synthesized by small antral follicles, which are precisely those seen on ultrasound and could help us to diagnose PCOS but there are many aspects that still require elucidation. In this minireview we have attempted to identify some of these correlations.
Rosenfield RL et al., 2016·Endocrine reviews·
Open Access
Polycystic ovary syndrome (PCOS) was hypothesized to result from functional ovarian hyperandrogenism (FOH) due to dysregulation of androgen secretion in 1989-1995. Subsequent studies have supported and amplified this hypothesis. When defined as otherwise unexplained hyperandrogenic oligoanovulation, two-thirds of PCOS cases have functionally typical FOH, characterized by 17-hydroxyprogesterone hyperresponsiveness to gonadotropin stimulation. Two-thirds of the remaining PCOS have FOH detectable by testosterone elevation after suppression of adrenal androgen production. About 3% of PCOS have a related isolated functional adrenal hyperandrogenism. The remaining PCOS cases are mild and lack evidence of steroid secretory abnormalities; most of these are obese, which we postulate to account for their atypical PCOS. Approximately half of normal women with polycystic ovarian morphology (PCOM) have subclinical FOH-related steroidogenic defects. Theca cells from polycystic ovaries of classic PCOS patients in long-term culture have an intrinsic steroidogenic dysregulation that can account for the steroidogenic abnormalities typical of FOH. These cells overexpress most steroidogenic enzymes, particularly cytochrome P450c17. Overexpression of a protein identified by genome-wide association screening, differentially expressed in normal and neoplastic development 1A.V2, in normal theca cells has reproduced this PCOS phenotype in vitro. A metabolic syndrome of obesity-related and/or intrinsic insulin resistance occurs in about half of PCOS patients, and the compensatory hyperinsulinism has tissue-selective effects, which include aggravation of hyperandrogenism. PCOS seems to arise as a complex trait that results from the interaction of diverse genetic and environmental factors. Heritable factors include PCOM, hyperandrogenemia, insulin resistance, and insulin secretory defects. Environmental factors include prenatal androgen exposure and poor fetal growth, whereas acquired obesity is a major postnatal factor. The variety of pathways involved and lack of a common thread attests to the multifactorial nature and heterogeneity of the syndrome. Further research into the fundamental basis of the disorder will be necessary to optimally correct androgen levels, ovulation, and metabolic homeostasis.
Polycystic ovary syndrome is the most common endocrinopathy among reproductive-aged women in the United States, affecting approximately 7% of female patients. Although the pathophysiology of the syndrome is complex and there is no single defect from which it is known to result, it is hypothesized that insulin resistance is a key factor. Metabolic syndrome is twice as common in patients with polycystic ovary syndrome compared with the general population, and patients with polycystic ovary syndrome are four times more likely than the general population to develop type 2 diabetes mellitus. Patient presentation is variable, ranging from asymptomatic to having multiple gynecologic, dermatologic, or metabolic manifestations. Guidelines from the Endocrine Society recommend using the Rotterdam criteria for diagnosis, which mandate the presence of two of the following three findingshyperandrogenism, ovulatory dysfunction, and polycystic ovaries-plus the exclusion of other diagnoses that could result in hyperandrogenism or ovulatory dysfunction. It is reasonable to delay evaluation for polycystic ovary syndrome in adolescent patients until two years after menarche. For this age group, it is also recommended that all three Rotterdam criteria be met before the diagnosis is made. Patients who have marked virilization or rapid onset of symptoms require immediate evaluation for a potential androgen-secreting tumor. Treatment of polycystic ovary syndrome is individualized based on the patient's presentation and desire for pregnancy. For patients who are overweight, weight loss is recommended. Clomiphene and letrozole are first-line medications for infertility. Metformin is the first-line medication for metabolic manifestations, such as hyperglycemia. Hormonal contraceptives are first-line therapy for irregular menses and dermatologic manifestations.
It is unknown which phenotype of polycystic ovary syndrome (PCOS) has a greater metabolic risk and how to detect this risk. The aim of this study was therefore to compare the incidence of metabolic syndrome (MetS) and metabolic risk profile (MRP) for different phenotypes. A total of 100 consecutive newly diagnosed PCOS women in a tertiary referral hospital were recruited. Patients were classified into four phenotypes according to the Rotterdam criteria, on the presence of at least two of the three criteria hyperandrogenism (H), oligo/anovulation (O) and PCO appearance (P): phenotype A, H + O + P; phenotype B, H + O; phenotype C, H + P; phenotype D, O + P. Prevalence of MetS and MRP were compared among the four groups. Based on Natural Cholesterol Education Program Adult Treatment Panel III diagnostic criteria, MetS prevalence was higher in phenotypes A and B (29.6% and 34.5%) compared with the other phenotypes (10.0% and 8.3%; P < 0.001). Although the prevalence of obesity was similar, the number of patients with homeostatic model assessment insulin resistance index (HOMA-IR) >3.8 was significantly higher in androgenic PCOS phenotypes. After logistic regression analysis, visceral adiposity index (VAI) was the only independent predictor of MetS in PCOS (P = 0.002). VAI was also significantly higher in phenotype B, when compared with the others (P < 0.01). Phenotypes A and B had the highest risk of MetS among the four phenotypes, and VAI may be a predictor of metabolic risk in PCOS women.
Bremer AA, 2010·Metab Syndr Relat Disord·
Open Access
Polycystic ovary syndrome (PCOS) is a common disorder characterized by hyperandrogenism and disordered gonadotropin secretion, often associated with insulin resistance. The syndrome, which modulates both hormonal and metabolic processes, is the most common endocrinopathy in reproductive-age women and increases a woman's risk of infertility, endometrial pathology, and cardiometabolic disease. As it is currently defined, PCOS most likely encompasses several distinct diseases with similar clinical phenotypes but different underlying pathophysiological processes. However, hyperandrogenism remains the syndrome's clinical hallmark. The clinical manifestations of PCOS often emerge during childhood or in the peripubertal years, suggesting that the syndrome is influenced by fetal programming and/or early postnatal events. However, given that the full clinical spectrum of PCOS does not typically appear until puberty, a "two-hit" hypothesis has been proposed: (1) a girl develops hyperandrogenism via one or more of many different potential mechanisms; (2) the preexisting hyperandrogenism subsequently disturbs the hypothalamic–pituitary–ovarian axis, resulting in ovulatory dysfunction and sustained hyperandrogenism. No consensus guidelines exist regarding the diagnosis and management of PCOS in the pediatric population; however, because the syndrome is a diagnosis of exclusion, the clinical evaluation of girls suspected of having PCOS is aimed at excluding other causes of androgen excess and menstrual dysfunction. For the syndrome's management, emphasis is placed on lifestyle and symptom-directed treatment.
To summarize physiological and psychological characteristics that are common among women diagnosed with polycystic ovary syndrome (PCOS) and provide evidence suggesting that addressing psychological disturbances can reduce or alleviate physical symptoms of PCOS through behavioral pathways and physiological pathways. METHOD(S): Empirical studies and expert consensuses pertaining to physiological, psychological, and medical management aspects of PCOS were identified and presented in this review. Articles were identified by searching Pubmed, PsycInfo, Medline ISI, CINAHL, or a Web browser (i.e., Google) using numerous combinations of terms pertaining to physiological, psychological, and medical management aspects of PCOS. An article was chosen to be included in this review if it reported findings and/or provided information that related to and helped support the main purpose(s) of this review article. RESULT(S): Available literature on the physiological (i.e., hyperandrogenism, central obesity, inflammation, insulin resistance) and psychological (i.e., depression, anxiety, eating disorders) factors among women with PCOS provides evidence that these various aspects of PCOS are strongly interrelated. CONCLUSION(S): The existence of these relationships among physiological and psychological factors strongly suggests that medical management of PCOS would greatly benefit from inclusion of psychological and behavioral approaches.
Since the 1990 National Institutes of Health-sponsored conference on polycystic ovary syndrome (PCOS), it has become appreciated that the syndrome encompasses a broader spectrum of signs and symptoms of ovarian dysfunction than those defined by the original diagnostic criteria. The 2003 Rotterdam consensus workshop concluded that PCOS is a syndrome of ovarian dysfunction along with the cardinal features hyperandrogenism and polycystic ovary (PCO) morphology. PCOS remains a syndrome, and as such no single diagnostic criterion (such as hyperandrogenism or PCO) is sufficient for clinical diagnosis. Its clinical manifestations may include menstrual irregularities, signs of androgen excess, and obesity. Insulin resistance and elevated serum LH levels are also common features in PCOS. PCOS is associated with an increased risk of type 2 diabetes and cardiovascular events.
Hilgers TW, 2004·The Medical and Surgical Practice of NaProTECHNOLOGY·
PCOS (polycystic ovary syndrome), increasingly designated PMOS (polycystic metabolic ovary syndrome) to reflect its metabolic complexity, is far more prevalent than its classic presentation suggests, affecting roughly six percent of reproductive-age women and carrying systemic consequences well beyond fertility disruption. This chapter from the foundational NaProTECHNOLOGY textbook maps the hormonal architecture of the condition, its ovulatory defect patterns, its frequent co-occurrence with endometriosis, and the restorative surgical and cycle-tracking approaches developed at the Pope Paul VI Institute.
To investigate the relation between intra-abdominal fat distribution and metabolic disorders in nonobese patients with the polycystic ovary syndrome (PCOS). Prospective case-control study. University-based hospital. PATIENT(S): Thirty nonobese patients with PCOS and 30 lean women with regular menstrual cycles (controls). All participants had a body mass index < 25kg/m(2). Subcutaneous and intra-abdominal visceral and preperitoneal fat thicknesses were assessed by ultrasonography. Glucose tolerance and insulin sensitivity were evaluated by standard 75-g oral glucose tolerance test and area-under-the-curve analysis. Serum hormones and lipid profile were measured. RESULT(S): The mean preperitoneal and visceral fat thicknesses were significantly greater in nonobese patients with PCOS. Subcutaneous fat mass was similar between the PCOS and control groups. Nonobese patients with PCOS had glucose intolerance, hyperinsulinemia, and dyslipidemia, manifested by high serum levels of triglyceride, total cholesterol, and high-density lipoprotein (HDL) levels and low serum low-density lipoprotein (LDL) levels. No correlation existed between subcutaneous fat thickness and the metabolic variables in nonobese patients with PCOS. However, serum triglyceride levels correlated with visceral fat and preperitoneal fat thickness. The mean HDL level correlated negatively with visceral fat and preperitoneal fat thickness. The area under the curve for insulin and mean fasting insulin levels correlated positively with visceral fat thickness. In multiple regression analysis, visceral fat thickness contributed significantly to high serum triglyceride and fasting insulin levels. CONCLUSION(S): Intra-abdominal preperitoneal and visceral fat accumulation may contribute to the development of glucose and lipid metabolism disorders in nonobese patients with PCOS.
To review the evidence that polycystic ovary syndrome is a genetic disease. Review of published literature. The existing literature provides a strong basis for arguing that PCOS clusters in families. However, the mode of inheritance of the disorder is still uncertain, although the majority of studies are consistent with an autosomal dominant pattern, modified perhaps by environmental factors. In addition, studies on PCOS cells (theca, muscle, and adipocytes) in culture have documented a persistent biochemical and molecular phenotype that distinguishes them from normal cells. Although several loci have been proposed as PCOS genes including CYP11A, the insulin gene, and a region near the insulin receptor, the evidence supporting linkage is not overwhelming. The strongest case can be made for the region near the insulin receptor gene, as it has been identified in two separate studies. However, the responsible gene at chromosome 19p13.3 remains to be identified. Association studies have provided a number of potential loci with genetic variants that may create or add to a PCOS phenotype, including Calpain 10, IRS-1 and -2, and SHBG. Collectively, these findings are consistent with the concept that a gene or several genes are linked to PCOS susceptibility. Because the mutations/genotypes associated with PCOS are rare, and their full impact on the phenotype incompletely understood, routine screening of women with PCOS or stigmata of PCOS for these genetic variants is not indicated at this time. Currently the treatment implications for individually identified genetic variants is uncertain and must be addressed on a case by case basis.
To determine whether self-selected women with polycystic ovary syndrome (PCOS) are abnormal compared with a control population. Case-control. Support group meeting organized and initiated by patients. PATIENT(S): Forty-five self-selected women with PCOS and 80 control women. INTERVENTION(S): Self-selected women with PCOS at a peer support conference completed a questionnaire, had a brief physical, and gave a fasting blood sample. MAIN OUTCOME MEASURE(S): Historical, biometric, and assay results. RESULT(S): Sixty percent of the women attending the conference participated in the study. Most had been diagnosed with PCOS on the basis of ovarian morphology (35%). They were more likely to be nulliparous and have a history of oligomenorrhea (96%). They were hyperandrogenemic (significantly elevated testosterone and DHEAS levels) compared with control women. Self-selected women with PCOS displayed multiple metabolic abnormalities compared with control women, including elevations in blood pressure, waist-hip ratio, fasting insulin, fasting total cholesterol, and fasting low-density lipoprotein cholesterol levels, as well as a significant decrease in fasting glucose-insulin ratio and high-density lipoprotein cholesterol levels. CONCLUSION(S): Self-selected women with PCOS have reproductive and metabolic abnormalities. The majority of these women received inadequate treatment despite having risk factors for endometrial cancer, diabetes, and/or heart disease. Our study also suggests that women attending or participating in a PCOS support group are willing and likely to participate in clinical studies.
To assess cardiac flow parameters in patients with polycystic ovary syndrome (PCOS). A prospective case-control study. University-based hospital. PATIENT(S): Thirty consecutive patients with PCOS were enrolled. Thirty women with regular menstrual cycles served as the controls. INTERVENTION(S): Systolic and diastolic function parameters were assessed by standard two-dimensional and M-mode echocardiography. Insulin sensitivity was evaluated by a standard 75-g oral glucose tolerance test and area-under-curve insulin analysis. Serum hormones, lipid profile, homocysteine, vitamin B(12), folate, fibrinogen, uric acid, and plasminogen activator inhibitor-I concentrations were measured. MAIN OUTCOME MEASURE(S): Systolic and diastolic function parameters, insulin sensitivity and serum homocysteine levels. RESULT(S): The mean serum homocysteine and uric acid concentrations were significantly higher in the PCOS group. Patients with PCOS had significant hyperinsulinemia. All systolic function parameters were comparable between the two groups. However, patients with PCOS had significantly lower peak mitral flow velocity in early diastole and significantly lower ratio between the early and late peak mitral flow velocities and also had significantly longer isovolumic relaxation time, reflecting a trend for nonrestrictive-type diastolic dysfunction. The area-under-curve insulin correlated positively with peak mitral flow velocity in late diastole (r = 0.375). The mean cholesterol/high-density lipoprotein ratio correlated negatively with mean mitral flow velocity in early diastole (E) peak (r = -0.474). The mean fasting insulin level correlated negatively with mean E/A ratio (r = -0.387). CONCLUSION(S): Diastolic dysfunction and increased serum homocysteine concentrations may contribute to increased cardiovascular disease risk in patients with PCOS.
Polycystic ovary syndrome (PCOS) is the most common endocrinopathy in women of reproductive age. New treatment approaches resulting from a refined understanding of the pathophysiology are evolving. The literature shows that PCOS is an endocrinopathy resulting from insulin resistance and the compensatory hyperinsulinemia. This results in adverse effects on multiple organ systems and may result in alteration in serum lipids, anovulation, abnormal uterine bleeding, and infertility. In addition, PCOS may place the patient at long-term risk for the development of type 2 diabetes, hypertension, endometrial cancer, and cardiovascular disease. Oral contraceptives, progestins, antiandrogens, and ovulation induction agents remain standard therapies. However, insulin-sensitizing agents are now being shown to be useful alone or combined with standard therapies. Early identification of patients at risk and prompt initiation of therapies, followed by long-term surveillance and management, may promote the patient's long-term health.
Over the past 20 years, it has been clearly documented that the polycystic ovary syndrome (PCOS) has major metabolic sequelae related to insulin resistance and that insulin resistance plays an important role in the pathogenesis of the reproductive disturbances of the disorder. Family studies have indicated a genetic susceptibility to PCOS. Polycystic ovaries and hyperandrogenemia are present in approximately 50% of sisters of affected women. Increased androgen secretion and insulin resistance persist in cultured theca cells and skin fibroblasts, respectively, from women with PCOS; this finding suggests that these are intrinsic, presumably genetic, defects. Insulin resistance and elevated low-density lipoprotein (LDL) levels also cluster in the sisters of women with PCOS, consistent with genetic traits. Moreover, the brothers of women with PCOS have insulin resistance and elevated dehydroepiandrosterone sulfate (DHEAS) levels, which supports a genetic basis for these findings. Family-based studies of linkage and association have implicated several genes in the pathogenesis of PCOS. The strongest evidence to date points to a gene in the region of the insulin receptor. Insulin-sensitizing therapy mitigates the reproductive disturbances of PCOS.
Recent diagnostic and pharmacologic developments have focused renewed attention on polycystic ovary syndrome. Clinical features of the syndrome include anovulation, hyperandrogenism and menstrual dysfunction, but several other abnormalities, including hyperinsulinemia, luteinizing hormone hypersecretion, elevated testosterone levels and acyclic estrogen production, have been documented. Accompanying obesity and lipid abnormalities compound the risk of developing diabetes mellitus or cardiovascular disease, and chronic anovulation increases the risk for endometrial cancer. A careful history and physical examination should guide diagnostic testing. Slowly progressive hyperandrogenic symptoms with anovulation of peripubertal onset often represent polycystic ovary syndrome. Treatment goals include symptom management and the identification and prevention of potential cardiovascular risks. Treatment should take into account the patient's desire for fertility. Advances in transvaginal ultrasonography and infertility treatments, including newer medications, have facilitated assisted reproduction in patients with polycystic ovary syndrome. Ongoing pharmacologic research focusing on the treatment of insulin resistance appears promising in reversing the longterm complications of the syndrome.
To determine the prevalence of the polycystic ovary syndrome (PCOS) among women seeking electrology, clients presenting to nine electrology centers completed a questionnaire. Women with potential risk factors were referred to the University of Alabama at Birmingham. They underwent a detailed history and physical examination, including hirsutism scoring by a modified Ferriman-Gallwey (F-G) method. Serum was assayed for total testosterone, sex hormone binding globulin and dehydroepiandrosterone sulfate. Three hundred fifteen (40%) of 779 patients had potential risk factors for hyperandrogenism and were referred. Eighty-two (26%) completed their evaluation. Six were excluded secondary to prepubertal or menopausal status. Of the remaining 76 patients, 20% had F-G scores of 7 or 8, 13% had scores of 9 or 10, and 21% had scores > 10. Forty-nine (64%) patients reported irregular menstrual cycles. Sixty-four patients were not receiving hormonal therapy: 25 reported regular menstrual cycles, and 39 reported irregular cycles. Seventeen (68%) of the 25 had at least one abnormal androgen value, while 33 (85%) of the 39 women had at least one abnormal value (nonsignificant difference). Overall, PCOS was evident in 39 of the 76 women, or 12% of the 315 patients who were referred for further evaluation. Thirty-nine of the 315 referred patients (12%) fulfilled the diagnostic criteria for PCOS. However, they were not receiving medical care for this condition. In addition, this percentage is a conservative estimate in that 74% of the referred patients did not pursue a medical evaluation. Therefore, efforts to educate both electrologists and their clients of the possibility of underlying endocrine disorders and subsequent metabolic morbidity should be undertaken.
The Polycystic Ovary Disease (PCOD) is one of the most common endocrine disorders in women with a prevalence of 5%. Affected women often consult a gynecologist because of menstrual irregularities, fertility problems or problems of androgen excess. However, PCOD is a metabolic disorder affecting multiple organs. Studies suggest that those women are at risk for developing several complications such as type II diabetes mellitus, hypertension, dyslipidemia and myocardial infarction. The risk to develop endometrial carcinoma is also elevated. To give adequate treatment to women with PCOD, an interdisciplinary approach of gynecologists together with endocrinologists specialized in metabolic and nutritional disorders at the University of Basel is presented. The work-up for diagnosis and assessment of risk factors is outlined. Goal of this interdisciplinary approach is an adequate evaluation of affected patients and their long-term follow-up to test if proposed interventions as weight loss, treatment of hyperinsulinemia, regulation of menstrual cycle and others can avoid long-term sequelae.
Polycystic ovary syndrome is a common problem affecting approximately 5% of women of reproductive age when defined by clinical features of anovulation and hyperandrogenism. Metabolic derangements associated with this condition may predispose to a range of diseases with attendant morbidity and mortality risks. In general, available data support significantly increased rates of type II diabetes mellitus, dyslipidemia, and endometrial cancer in PCOS that are not completely explained by obesity; data also suggest that rates of hypertension, gestational diabetes, and pregnancy-induced hypertension may likewise be increased, although the extent to which obesity mediates these risks is not clear. The increased prevalence of several cardiovascular risk factors in PCOS and limited cross-sectional data suggest that cardiovascular disease should be more likely in PCOS, but prospective data are lacking to confirm this supposition. Limited data have suggested an association between PCOS and ovarian cancer risk and require further study. The present data do not support an increased risk for breast cancer in this condition. Long-term prospective data are clearly needed to better delineate the nature and magnitude of disease risks associated with PCOS, with appropriate adjustment for associated obesity. Such information is a necessary background for understanding the role of established and emerging PCOS therapies, including oral contraceptives, intermittent progesterone, ovulation induction agents, and insulin sensitizers, in modifying such risks. In the meantime, close follow-up of women with PCOS and encouragement of lifestyle practices likely to reduce disease risks, such as regular exercise and weight control, should be standard practice.
It is now clear that PCOS is often associated with profound insulin resistance as well as with defects in insulin secretion. These abnormalities, together with obesity, explain the substantially increased prevalence of glucose intolerance in PCOS. Moreover, since PCOS is an extremely common disorder, PCOS-related insulin resistance is an important cause of NIDDM in women (Table 3). The insulin resistance in at least 50% of PCOS women appears to be related to excessive serine phosphorylation of the insulin receptor. A factor extrinsic to the insulin receptor, presumably a serine/threonine kinase, causes this abnormality and is an example of an important new mechanism for human insulin resistance related to factors controlling insulin receptor signaling. Serine phosphorylation appears to modulate the activity of the key regulatory enzyme of androgen biosynthesis, P450c17. It is thus possible that a single defect produces both the insulin resistance and the hyperandrogenism in some PCOS women (Fig. 19). Recent studies strongly suggest that insulin is acting through its own receptor (rather than the IGF-I receptor) in PCOS to augment not only ovarian and adrenal steroidogenesis but also pituitary LH release. Indeed, the defect in insulin action appears to be selective, affecting glucose metabolism but not cell growth. Since PCOS usually has a menarchal age of onset, this makes it a particularly appropriate disorder in which to examine the ontogeny of defects in carbohydrate metabolism and for ascertaining large three-generation kindreds for positional cloning studies to identify NIDDM genes. Although the presence of lipid abnormalities, dysfibrinolysis, and insulin resistance would be predicted to place PCOS women at high risk for cardiovascular disease, appropriate prospective studies are necessary to directly assess this.
Women with hyperandrogenic disorders represent a unique group among those with infertility due to anovulation. Although antiestrogens are effective in restoring ovulation in most women, it remains unclear whether these treatments restore fecundability per ovulatory cycle and the ability to maintain pregnancy in these individuals. Moreover, antiestrogens are ineffective in restoring ovulation in some hyperandrogenic anovulatory women, whose condition poses unique and vexing challenges for the infertility therapist. Gonadotropin treatment in antiestrogen-resistant women often leads to ovarian hyperstimulation syndrome, which has been addressed by modification of dosing schedules (e.g., low-dose administration), pretreatment with gonadotropin-releasing hormone (GnRH) analogs, and elimination of luteinizing hormone from the administered gonadotropins. Surgical reduction in ovarian volume has met with some success, although there may be a risk of inducing surgical adhesions of the adnexa. The second major reproductive adversity facing these patients is their elevated risk of endometrial cancer. Unopposed estrogen exposure probably contributes to this risk, but hyperandrogenicity and hyperinsulinism may act independently or in concert with estrogen to amplify the risk in these women. While the risks and strategies for preventive care in these women need to be better defined, reproductive health specialists are urged to continue using presently accepted measures, including education, to maintain these women's reproductive health.
Dahlgren E et al., 1992·Acta Obstet Gynecol Scand·
In order to estimate whether women with polycystic ovary syndrome (PCOS) have an increased risk of developing myocardial infarction, a risk factor model was applied on 33 women with PCOS and 132 age matched referents. The risk factor model was established from independent risk factors for myocardial infarction in a prospective population study of 1462 women in Göteborg, Sweden. The independent risk factors were age, manifest hypertension, manifest diabetes mellitus, central obesity measured as increased waist to hip circumference ratio and serum triglyceride concentration. A considerably increased risk (relative risk of 7.4) of developing myocardial infarction was observed for women with PCOS compared to age-matched referents. Since the risk factors include variables correlated to obesity, the results indicate that advice on dietary restriction is an important part of the treatment once the diagnosis is established.
To determine if the hormonal imbalance in women with polycystic ovary syndrome (PCOS) continues into and after menopause and to analyze factors constituting an increased risk for developing metabolic disorders. The study was a transectional retrospective cohort follow-up of patients with PCOS. The women with PCOS were recruited from hospital clinics, and referents were randomized from a population study of women. Thirty-three women ages 40 to 59 years with ovarian histopathology typical of PCOS at wedge resection 22 to 31 years previously; 132 age-matched referents were analyzed. Clinical data were collected via a questionnaire supplemented with an interview in connection to a clinical examination that also included fasting venous sampling. Infertility, hirsutism, and oligomenorrhea were more common among the subjects with PCOS, but there was a considerable spontaneous restitution of cyclic regularity with time. Women with PCOS were more often hysterectomized and entered menopause later compared with referents. The hormone data show a typical profile for PCOS. Compared with referents women with PCOS showed marked increase in prevalence of central obesity, higher basal serum insulin concentrations, and a higher prevalence of diabetes mellitus and hypertension. Perimenopausal women with PCOS have an increased morbidity in hypertension and diabetes mellitus that adds to the classic symptoms, such as anovulation, hirsutism, and infertility.
The incidence of polycystic ovarian disease (PCOD) varies from 0.6 to 92%, depending on the parameters analysed, PCOD has been reported to appear in association with Cushing's Syndrome, adrenal hyperplasia, hypothyroidism, adrenal and ovarian tumours and some genetic abnormalities. The controversy regarding the pathophysiological mechanism underlying the disease still persists. Critical evaluation of old data, assessment of new findings concerning the possible role of insulin, growth factors and their binding proteins, and extrapolation of neuroendocrinological experiments enabled the construction of a concise hypothesis of the pathophysiology of PCOD. According to this hypothesis, PCOD is a multifactorial disease. The sequence of events finally leading to clinical manifestation of the disease (hyperandrogenism, abnormal luteinizing hormone pulsatility pattern and ovulation disturbances) may originate in different organs or be triggered by different mechanisms. It may stem from the adrenals, the hypothalamus or higher central nervous system centres, or from the ovary itself; it may originate from excess of fat tissue usually combined with hyperinsulinism; or may be the result of a net increase in active growth factors. Each of the above disturbances probably appears early in life, much before the clinical signs of the disease are evident. Predisposing factors such as gestational diabetes of the mother, childhood obesity, borderline adrenal hyperplasia and late menarche have to be looked for as early as possible in order to prevent the late consequences of the disease, such as increased risk of infertility, endometrial and breast cancer and cardiovascular disease.
Few subjects have provoked such controversy in the field of reproductive endocrinology as polycystic ovary syndrome (PCOS). It is characterized by heterogeneous clinical and endocrine features and this has led to considerable debate about its definition. The controversy has been fuelled by uncertainty about the aetiology of the syndrome. It seems probable that there are several causes of the typical ovarian appearance although, as will be discussed later, a familial basis for the disorder appears to be the most common of these. Traditionally, since the classic description of the syndrome by Stein and Leventhal in 1935, the diagnosis has rested primarily on the typical appearance of bilateral sclerocystic ovaries in women presenting with anovulation or hirsutism (or both). But the results from subsequent publications indicated that there could be a wide variety of clinical presentations in women who had evidence of polycystic ovaries (PCO) at ovarian biopsy (Goldzieher & Axelrod, 1963; Goldzicher & Green, 1962; Jeffcoate, 1963; Smith et al.. 1965; Givens, 1977, 1984; Yen, 1980). Although most of the women had menstrual disorders or hirsutism, there were also those who had evidence of ovulatory cycles and others who were non-hirsute. McArthur, Ingersoll and Worcester (1958) made the important observation that women with bilateral PCO characteristically had elevated urinary excretion of luteinizing hormone (LH). When radioimmunoassay became widely available in the early 1970s the emphasis changed from diagnosis by histology to use of biochemical markers of the syndrome. The typical endocrine abnormalities in PCS were raised serum concentrations of LH and testosterone (and/or androstenedione) to which could be added, in later studies, evidence of hypersecretion of adrenal androgens and abnormalities of estrogen secretion, particularly estrone (Yen et al., 1970; Gambrell et al., 1973; Rebar et al., 1976; Baird et al.. 1977; Kandeel et al.. 1978; Yen, 1980). So great was the reliance on biochemical diagnosis that, in some studies, the appearance of the ovaries was considered to be of secondary importance. One problem has been that there has seldom been total agreement as to the biochemical definition of PCOS. Some groups, for example, have taken a raised serum LH to be important for the diagnosis (Lobo, 1985; Waldstreicher et al.. 1988). However, it was clear from early biochemical studies that some women with all the other clinical and biochemical features of PCOS had normal serum LH concentra-
tions (Givens et al., 1976; Rebar er al., 1976).
Hjortrup A et al., 1983·Acta Obstet Gynecol Scand·
Twenty-nine consecutive patients with polycystic ovary (PCO) syndrome (defined as hirsutism plus oligomenorrhea or secondary amenorrhea, and excluding Cushing's syndrome, an androgen-secreting adrenal or ovarian tumor or adrenocortical hyperplasia) were treated with ovarian wedge resection leaving normal-sized ovaries. Long-term follow-up from 2.3-9.5 years (mean 5.7 years) showed that 26 of 29 patients (90%) had established normal menstrual cycles. Fertility and normal pregnancies were achieved in all 10 patients (100%) with normal postoperative menstrual cycles who desired to conceive, but not in the 3 patients with remaining postoperative oligomenorrhea. Eight of 9 patients who were obese preoperatively and who had normal postoperative menstrual cycles showed a major weight loss after wedge resection. In contrast, none of the preoperatively obese patients, who remained oligomenorrheic after surgery, lost weight. Hirsutism was not cured by wedge resection. It is concluded that ovarian wedge resection should still be considered useful in patients with PCO.
Myrer RS et al., 2025·Utah Womens Health Rev·
Open Access
The objective of this study is to test the association between preconception polycystic ovary syndrome (PCOS) and gestational diabetes mellitus (GDM) using Utah's Pregnancy Risk Assessment Monitoring System (2016-2021). In addition, pre-pregnancy hypertension will be tested as a potential effect moderator. This cross-sectional study utilizes data from Phase 8 of the Utah Pregnancy Risk Assessment Monitoring System (PRAMS) survey (2016-2021). The association between PCOS and GDM was tested using Poisson regression to generate adjusted prevalence ratios and 95% confidence intervals. PCOS was associated with higher prevalence of GDM in all models, regardless of whether the outcome data (GDM) came from the infant's birth certificate, the PRAMS survey, or the combined measure. When adjusting for sociodemographic characteristics, lifestyle factors, reproductive history, and comorbidities, women with PCOS were 1.50 (1.16-1.95) times as likely to have GDM (reported on birth certificate and/or survey) compared to women without PCOS. Pre-pregnancy hypertension was not found to be a statistically significant effect moderator. The findings from this study were consistent with the majority of research indicating that women with PCOS have increased risk for GDM. This is also the first known study to test pre-pregnancy hypertension as an effect moderator between PCOS and GDM. More research is needed on the role of comorbidities such as chronic hypertension as effect modifiers between PCOS and GDM.
These findings show that women with PCOS are at high risk for GDM, among a population-based sample of mothers. Interventions to reduce the risk of GDM among women with PCOS need to be developed and evaluated.
Senthilkumar H et al., 2025·Journal of translational medicine
Polycystic ovary syndrome (PCOS) is an endocrine disorder that affects reproductive-aged women worldwide, causing hormonal imbalances and ovarian dysfunction. PCOS affects metabolic health and increases the risk of obesity, insulin resistance, and cardiovascular disease, in addition to infertility. This review delves deeper into the connections of gut microbiota with PCOS pathophysiology, particularly into its impact on hormone metabolism, obesity, inflammation, and insulin resistance by way of short-chain fatty acids, lipopolysaccharides, and gut-brain axis. Studies also show that changes in the metabolic processes and immune responses are seen in changes in the gut microbiota in PCOS subjects, such as changes in the Bacteroidetes and Firmicutes groups. Some bacteria, like Escherichia and Shigella, have been associated with dysbiosis in patients with PCOS, leading to systemic inflammation and changed hormone levels, which further worsen the clinical symptoms. Therapeutic interventions targeting the gut microbiota comprise probiotics, prebiotics, and fecal microbiota transplantation; these have potential to alleviate the symptoms of PCOS. Other precision microbiome-based therapies include postbiotics, and CRISPR-Cas9 genome editing, which are relatively new avenues toward precision treatment. This complex interlink of gut microbiota and PCOS pathophysiology will open the avenues for possible treatments for hormonal imbalances and metabolic problems that characterize these complex disorders. The review here focuses on the requirement of further studies to be able to elucidate the specific pathways relating gut microbiota dysregulation to PCOS and, thus, improve microbiome-based therapies for better clinical outcomes in affected individuals.
Prior JC et al., 2023·Expert Rev Endocrinol Metab·
Bone health in those with Polycystic Ovary Syndrome (PCOS) is complex, but the general consensus is that cortical areal bone mineral density (aBMD) sites will be higher in PCOS than in ageand BMI-similar controls. However, spine aBMD sites may be lower, especially in non-obese PCOS. Whether or not incident fracture risk is increased in PCOS is currently controversial; no meta-analysis has yet assessed prevalent fractures. We assessed the bone effects of PCOS-related ovarian hormone alterations, e.g. androgen excess, tonically normal/higher estradiol, and lower-than-normal progesterone levels. We also highlighted evidence that common PCOS medications (e.g. combined hormonal contraceptives [CHC], metformin, and spironolactone) have important bone effects. In adolescents, meta-analysis of CHC showed significant negative aBMD changes. Inflammation has negative PCOS bone effects and is linked with CHC use. EXPERT Opinion: Is fracture risk altered by PCOS? Our meta-analysis showed a 25% increased risk of prevalent fracture in PCOS versus controls; this did not reach statistical significance. Future prospective research needs to collect and evaluate ovulation characteristics, progesterone exposure, and adolescent CHC use, in addition to the complex variables that may influence risks for prevalent or incident fragility fractures and/or for cortical and cancellous aBMD values in PCOS.
Polycystic ovary syndrome (PCOS) is a highly prevalent endocrine disorder associated with hyperandrogenism and anovulation. Although a spectrum disorder, many women with PCOS exhibit elevated luteinizing hormone (LH) pulse frequency and an elevated LH to follicle stimulating hormone ratio. This aberrant pattern of gonadotrophin signalling drives many of the downstream ovarian features of PCOS, including increased androgen synthesis, and indicates neuroendocrine impairments upstream. Decreased responsiveness to gonadal steroid hormone negative feedback in PCOS patients points toward dysfunction within the gonadotropin-releasing hormone (GnRH) neuronal network in the brain. Excessive androgen exposure during development or over pubertal onset can recapitulate the neuroendocrine pathology of PCOS in pre-clinical models, and these models have been fundamental in beginning to pick apart the specific central mechanisms involved. This mini-review will briefly describe the pathology of PCOS associated with high frequency GnRH/LH pulses and then highlight what is currently known, and yet to be discovered, about the central mechanisms involved.
Astapova O et al., 2019·Endocrinology·
Open Access
Androgens, although traditionally thought to be male sex steroids, play important roles in female reproduction, both in healthy and pathological states. This mini-review focuses on recent advances in our knowledge of the role of androgens in the ovary. Androgen receptor (AR) is expressed in oocytes, granulosa cells, and theca cells, and is temporally regulated during follicular development. Mouse knockout studies have shown that AR expression in granulosa cells is critical for normal follicular development and subsequent ovulation. In addition, androgens are involved in regulating dynamic changes in ovarian steroidogenesis that are critical for normal cycling. Androgen effects on follicle development have been incorporated into clinical practice in women with diminished ovarian reserve, albeit with limited success in available literature. At the other extreme, androgen excess leads to disordered follicle development and anovulatory infertility known as polycystic ovary syndrome (PCOS), with studies suggesting that theca cell AR may mediate many of these negative effects. Finally, both prenatal and postnatal animal models of androgen excess have been developed and are being used to study the pathophysiology of PCOS both within the ovary and with regard to overall metabolic health. Taken together, current scientific consensus is that a careful balance of androgen activity in the ovary is necessary for reproductive health in women.
Does unilateral volume-adjusted laparoscopic diathermy increase the chances of ovulation in women with polycystic ovary syndrome (PCOS)? Although unilateral laparoscopic ovarian drilling (ULOD) using adjusted thermal doses was more efficient than bilateral laparoscopic ovarian drilling (BLOD) using fixed doses, the chances of ovulation were improved in patients irrespective of the technique used. The adjustment of the thermal dose to ovarian volume in BLOD increases ovulation and pregnancy rates compared with fixed-dose treatment, but BLOD causes the formation of adhesions, particularly on the left ovary, and increases the risk of damage to ovarian tissue. In contrast, ULOD with a fixed thermal dose minimizes the risk of ovarian tissue damage, and can increase the activity in both right and left ovaries, although this varies in humans and in other species. STUDY DESIGN, SIZE, This prospective, longitudinal, study, between September 2009 and January 2013, included 96 infertile women with PCOS who were unresponsive to clomiphene citrate treatment and had underwent either ULOD or BLOD. After surgery, the groups were followed up for 6 months to assess ovulatory response. PARTICIPANTS/MATERIALS, SETTING, Patients were assigned to two groups; one group underwent laparoscopic ovarian drilling of the right ovary alone, while both ovaries were treated in the second group. The ULOD group (n = 49) received thermal doses adjusted to the volume of the right ovary (60 J/cm³). The BLOD group (n = 47) received fixed doses of 600 J per ovary, regardless of its volume. The two treatment groups were matched by the number of participants, age and baseline parameters. MAIN The ovulation rate during the first menstrual cycle after LOD was significantly higher in the ULOD group than in the BLOD group [73 versus 49%; absolute risk reduction (ARR), -0.25; 95% confidence interval (CI), -0.44 to -0.03; P = 0.014]. Treatment with ULOD on the right ovary significantly increased the chances of ovulation in patients with a larger right ovary compared with those who had a smaller right ovary (100 versus 36%; ARR, -0.64; 95% CI, -0.84 to -0.37; P = 0.004). Interestingly, the chances of ovulation were also significantly higher in patients in the BLOD group who had a larger right ovary compared with those who had a smaller right ovary (88 versus 33%; ARR, -0.55; 95% CI, -0.73 to -0.28; P = 0.002). The pregnancy rate was also significantly higher in patients with a larger right ovary compared with those with a smaller right ovary, regardless of the treatment group. LIMITATIONS, The 6-month follow-up was too short to demonstrate any long-term differences in the ovulation rates. Future research should therefore extend the follow-up beyond 6 months. Another limitation is that ULOD was used to treat only the right ovary. Future studies should investigate whether ULOD treatment of the larger ovary, whether left or right, would significantly increase the ovulation rate. This study represents an advance in the determination of the optimal laparoscopic treatment for women with PCOS, as it was shown that improved results can be achieved using less thermal energy in volume-adjusted ULOD.
We hypothesized that oligomenorrhea (menstrual cyclicity ≥42 days), hyperandrogenism, low levels of sex hormone-binding globulin (SHBG), childhood insulin, and metabolic syndrome (MetS) at age 14 years would predict MetS and class III obesity (body mass index ≥40 kg/m(2)) at age 24 years. In this prospective study of schoolgirls, at age 14 years, the girls were categorized as regularly cycling (n = 375), oligomenorrheic (n = 18), or oligomenorrhea plus biochemical hyperandrogenism (polycystic ovary syndrome [PCOS]; n = 12), together designated PCOS. Significant explanatory variables for MetS at age 24 years included childhood insulin, MetS, and PCOS category (all positive) and SHBG (negative) at age 14 years. Using categorical data, top decile of childhood insulin, MetS at age 14, bottom decile of SHBG, and PCOS category were significant positive predictors for MetS at age 24. SHBG (negative), black race (positive), and oligomenorrhea (positive) were significant explanatory variables for class III obesity at age 24. Using categorical data, black race, MetS at age 14, bottom decile of SHBG, PCOS category, and top decile of childhood insulin were positive explanatory variables for class III obesity at age 24 years. Oligomenorrhea, PCOS (a subcohort of oligomenorrhea), hyperandrogenism, low SHBG, MetS, and childhood insulin at age 14 years may represent a critical, reversible pathway for the development of MetS and class III obesity in young adulthood.
Thyroid and Metabolic Function · Insulin and Metabolism
Sakumoto T et al., 2010·Reproductive medicine and biology·
Open Access
Obesity, which disturbs lipid and glucose metabolism, is a recent medical concern. It threatens human health and also has adverse effects on reproductive functions by causing insulin resistance/hyperinsulinemia, especially in women with polycystic ovary syndrome (PCOS). For PCOS patients to prevent these adverse effects, it is important to take into account improving their lifestyles by exercise and proper diets. The relationship between insulin resistance/hyperinsulinemia and reproductive disorders should be understood as fully as possible in order to provide effective treatment. It is well known that insulin resistance and compensatory hyperinsulinemia can be triggered by obesity with visceral fat accumulation. Hyperinsulinemia affects granulosa cells in small follicles and theca cells. This condition induces early response to luteinizing hormones on granulosa cells of small follicles and causes premature differentiation of these cells, which eventually results in anovulation. For improvement of anovulation because of hyperinsulinemia, insulin-sensitizing agents (biguanide and thiazolidinedione derivatives) are useful. Hyperinsulinemia may adversely affect the endometrial functions and environment, and evoke implantation disturbance. Treatment with an insulin-sensitizing agent (metformin) improves the levels of glycodelin, insulin-like growth factor binding protein 1, and blood flow in spiral arteries during the peri-implantation period. It supports endometrial function, improves the endometrial environment, and facilitates embryo implantation. The rate of early pregnancy loss during the first trimester is 30-50% in women with PCOS, which is threefold higher than for normal women. Metformin treatment improves the levels of insulin, the homeostasis model assessment for insulin resistance, and plasminogen activator inhibitor activity, and decreases early pregnancy loss. It goes without saying that lifestyle change is fundamental for improving reproductive performance in addition to treatment with insulin-sensitizing agents.
Baptiste CG et al., 2010·The Journal of steroid biochemistry and molecular biology·
Open Access
Polycystic ovary syndrome (PCOS) is a very common endocrine disorder characterized by chronic anovulation, clinical and/or biochemical hyperandrogenism, and/or polycystic ovaries. But most experts consider that hyperandrogenism is the main characteristic of PCOS. Several theories propose different mechanisms to explain PCOS manifestations: (1) a primary enzymatic default in the ovarian and/or adrenal steroidogenesis; (2) an impairment in gonadotropin releasing hormone (GnRH) secretion that promotes luteal hormone (LH) secretion; or (3) alterations in insulin actions that lead to insulin resistance with compensatory hyperinsulinemia. However, in the past 20 years there has been growing evidence supporting that defects in insulin actions or in the insulin signalling pathways are central in the pathogenesis of the syndrome. Indeed, most women with PCOS are metabolically insulin resistant, in part due to genetic predisposition and in part secondary to obesity. But some women with typical PCOS do not display insulin resistance, which supports the hypothesis of a genetic predisposition specific to PCOS that would be revealed by the development of insulin resistance and compensatory hyperinsulinemia in most, but not all, women with PCOS. However, these hypotheses are not yet appropriately confirmed, and more research is still needed to unravel the true pathogenesis underlying this syndrome. The present review thus aims at discussing new concepts and findings regarding insulin actions in PCOS women and how it is related to hyperandrogenemia.
Thyroid and Metabolic Function · Insulin and Metabolism
Polycystic ovary syndrome (PCOS) is non-uniformly associated with insulin resistance (IR). We examined IR in women with PCOS. Sixty-nine PCOS women were subjected to the insulin suppression test (IST) to determine their steady-state plasma glucose (SSPG) as a direct measure of insulin sensitivity. SSPG exhibited a multimodal distribution suggesting the existence of subpopulations. The heterogeneous distribution of plasma glucose at 180 min (P = 0.011), with three modes, suggested differences in the plasma glucose level trajectories during the IST. Hence, the population was separated into three groups: (i) (n = 33), subjects with SSPG < or = 152.5 mg/dl, corresponding to the first to fifth deciles; (ii) (n = 29), subjects in the interval 152.5 mg/dl < SSPG < or = 300 mg/dl; (iii) (n = 7), subjects with SSPG > 300 mg/dl, corresponding to the tenth decile. Plasma glucose distributions at 180 min showed differences in their mean values and ranges among groups (P < 0.0001). The trajectories of the groups differed significantly during the IST (P < 0.0001). insulin sensitivity in our patients exhibited a discontinuous distribution, implying that PCOS is a heterogeneous disorder possessing subpopulations regarding IR.
Hilgers TW, 2004·The Medical and Surgical Practice of NaProTECHNOLOGY·
Ovarian wedge resection reduces androgen-producing stromal tissue in women with polycystic ovary syndrome who have failed medical ovulation induction, restoring spontaneous or treatment-responsive ovulatory cycles. Within NaProTECHNOLOGY, the procedure is performed with precise tissue economy and anti-adhesion technique to preserve ovarian reserve while correcting the underlying hormonal dysfunction identified through CrMS biomarker monitoring.
Polycystic ovary syndrome (PCOS) affects about 4 to 6% of women of reproductive age and accounts for at least 75% of hyperandrogenic patients. PCOS is diagnosed by the presence of oligo-ovulation and hyperandrogenism after the exclusion of related disorders, such as 21-hydroxylase-deficient nonclassic adrenal hyperplasia (NCAH). In turn, NCAH is a homozygous recessive disorder, diagnosed by a corticotropin-stimulated 17-hydroxyprogesterone (17-HP) level greater than10 ng/mL (30.3 nmol/L) and confirmed by genotyping of the CYP21 gene. The prevalence of NCAH is approximately 50 times less than that of PCOS, affecting between 1 and 10% of hyperandrogenic women, depending on ethnicity. However, it is generally difficult to distinguish NCAH from PCOS solely on clinical grounds, as both demonstrate varying degrees of hyperandrogenism and ovulatory dysfunction. Most PCOS patients have insulin resistance, in contrast to those with NCAH. Likewise, polycystic ovaries are observed in up to 40% of NCAH patients. Both disorders have a strong familial component. The only method that allows the separation of NCAH from PCOS patients is the measurement of 17-HP levels. In conclusion, PCOS and NCAH have differences in prevalence and pathophysiology. However, because the disorders have significant clinical and hormonal similarities, the measurement of 17-HP, preferably basally as a screening method, should be incorporated into the evaluation of all hyperandrogenic patients.
Yildirim M et al., 2003·Eur J Obstet Gynecol Reprod Biol·
To determine the effects of ovarian wedge resection by minilaparotomy in infertile patients with polycystic ovarian syndrome (PCOS). One hundred and thirty-four anovulatory patients with PCOS, who were previously treated with clomiphene citrate and gonadotropins and did not conceive were operated via minilaparotomy with microsurgical principles and ovarian wedge resection was performed on each subject. Pregnancy rates and adhesion formation were investigated retrospectively. A total of 121 pregnancies were achieved in 2 years (90%). One hundred and four patients conceived within the first 6 months (78%) and the remaining 17 patients conceived within 2 years (13%) following the operation. Sixty-eight patients had a second pregnancy later. In the post-operative period, 24 patients had cesarean delivery and 20 had diagnostic laparoscopy. Out of these 44 patients, only 5 of them were found to have minimal adhesions. This technique offers high pregnancy rates and minimal adhesion formation. Ovarian wedge resection by minilaparotomy might be an alternative treatment approach in patients with PCOS who did not conceive with standard ovulation induction protocols.
Polycystic ovary syndrome (PCOS) is a disorder characterized by hyperandrogenism and chronic anovulation. Although the etiology of PCOS is unknown, perturbations of gonadotropin secretion are one of the hallmarks of this disorder. In normal menstrual physiology, the monotropic rise of plasma follicle-stimulating hormone (FSH) during the luteal-follicular transition is critical for follicular development and subsequent ovulation. One of the mechanisms by which FSH is differentially synthesized involves the luteal slowing of gonadotropin-releasing hormone (GnRH) pulse frequency by ovarian steroids. In PCOS, plasma leutinizing hormone (LH) is commonly increased, FSH is typically in the lower follicular range, and LH (and by inference GnRH) pulse frequency is persistently rapid at approximately one LH pulse per hour. The etiology of the neuroendocrine abnormalities in PCOS remain unclear; however, recent studies have revealed decreased sensitivity of the GnRH pulse generator to inhibition by ovarian steroids, particularly progesterone. This abnormality is reversed by the androgen receptor antagonist flutamide, suggesting that elevated androgen levels may alter the sensitivity of the hypothalamic GnRH pulse generator to steroid inhibition and lead to enhanced LH secretion. As such, women with PCOS require higher levels of progesterone to slow the frequency of GnRH pulse secretion, resulting in inadequate FSH synthesis and persistent LH stimulation of ovarian androgens. The decreased sensitivity of the GnRH pulse generator may help to explain the genesis of PCOS during puberty. In normal early puberty, sleep-entrained increases in LH stimulate ovarian steroids, which subsequently suppress LH frequency and amplitude during the subsequent day. In hyperandrogenemic girls destined to develop PCOS, this nocturnal increase in ovarian steroids may not be adequate to suppress the GnRH pulse generator, leading to a persistently rapid LH pulse frequency, impaired FSH production, and inadequate follicular development.
Metabolic and Endocrine Agents · Insulin Sensitizing Agents
Insulin resistance is a prominent feature of polycystic ovarian syndrome (PCOS), and women with the disorder are at increased risk for the development of other diseases that have been linked to insulin resistance-namely, type 2 diabetes and cardiovascular disease. This association between insulin resistance and PCOS must guide the chronic management of the disorder, and accumulating evidence suggests that administration of insulin-sensitizing drugs to individuals at high risk for type 2 diabetes decreases the rate of conversion to overt disease. In contrast, limited evidence exists to suggest that oral contraceptive pills-the currently standard therapy for PCOS-may actually decrease insulin sensitivity and induce impaired glucose tolerance in women with PCOS. Hence, PCOS should be regarded as a general health issue and the use of insulin-sensitizing drugs such as metformin should be considered for the prevention of type 2 diabetes.
To evaluate whether some ultrasound parameters of ovarian morphology can discriminate between control women and patients with polycystic ovary syndrome (PCOS). Retrospective data analysis. Volunteers women in an academic research environment. PATIENT(S): Eighty amenorrheic or oligomenorrheic women and 30 normal ovulatory control participants. INTERVENTION(S): None. MAIN OUTCOME MEASURE(S): We evaluated ovarian volume, area, stroma, and the stroma/total area (S/A) ratio by use of transvaginal pelvic ultrasound; and we assayed serum levels of gonadotropin, androgen, and estradiol during the early follicular phase (days 2 to 5) of the menstrual cycle in regularly cycling controls and on a random day in amenorrheic patients. RESULT(S): Patients with PCOS showed significantly higher ovarian volume, area, stroma, and mean S/A ratio when compared to multifollicular and control groups. Cut-off values have been defined for ovarian volume (13.21 mL), area (7.00 cm2), stroma (1.95 cm2), and S/A ratio (0.34). The sensitivity for PCOS diagnosis was 21%, 4%, 62%, and 100%, respectively. The S/A ratio showed the most significant correlation with the androgen levels. CONCLUSION(S): The evaluation of the S/A ratio can differentiate between PCOS and control or multifollicular women with both a sensitivity and a specificity of 100%. Furthermore, this ultrasound parameter is strictly related to hormonal milieu and to anthropometric characteristics.
To determine the prevalence of polycystic ovary syndrome (PCOS) among hyperandrogenic women who report normal menses. Prospective observational study. Academic practice in reproductive endocrinology. PATIENT(S): Fifty-eight consecutively seen new patients with hyperandrogenism who reported normal menses. INTERVENTION(S): Ovulatory status was assessed with timed serum progesterone measurements. The following tests also were carried out: vaginal ultrasound examination; measurement of the ovarian response of 17-hydroxyprogesterone (17-OHP) after the administration of leuprolide acetate, 1 mg SC; and determination of fasting serum LH, FSH, E2, 17-OHP, insulin, and androgen levels. MAIN OUTCOME MEASURE(S): Determination of ovulatory status, polycystic appearance of ovaries, and increased response of 17-OHP to leuprolide acetate. RESULT(S): Twelve (20.7%) of the hyperandrogenic women were anovulatory and met the usual criteria for the diagnosis of PCOS. The ovulatory patients had lower serum total and unbound testosterone levels. Thirty-one (53.4%) of the ovulatory women had polycystic ovaries on ultrasound examination and/or an increased 17-OHP response to leuprolide acetate, suggesting the diagnosis of PCOS despite the presence of ovulation. Considering both the anovulatory and ovulatory patients, 74% of the hyperandrogenic women studied could have PCOS. CONCLUSION(S): The data suggest that most (74%) hyperandrogenic women who report normal menses have evidence for the diagnosis of PCOS.
To investigate the relationship between the ovarian stromal area and clinical hormonal characteristics in women with polycystic ovary syndrome (PCOS). Twenty-eight women with PCOS (group 1) and 26 healthy women (group 2) participated in this study. For measuring the ovarian stromal area, transvaginal ultrasonography was performed on all women during the early follicular phase of the menstrual cycle. Venous blood was sampled from the women to determine serum follicle stimulating hormone, luteinizing hormone (LH), estradiol, androstenedione, free testosterone (FT), total testosterone (TT), 17 alpha-hydroxyprogesterone, dehydroepiandrosterone sulfate, and fasting insulin and glucose levels. Two-tailed t and Pearson correlation tests were used for statistical analysis. Women with PCOS were heavier, and their serum FT, TT and LH levels were significantly higher than in the normals (P < .001, P < .012 and P < .001, respectively). The ovarian stromal area measured by transvaginal ultrasonography was also significantly larger than in the normals (P < .001). Only basal serum insulin levels seemed to correlate positively with the ovarian stromal area in women with PCOS (r = .43 P = .09). Although transvaginal ultrasonography has played an important role in the evaluation of women with PCOS, we could not demonstrate a relationship between the ovarian stromal area and hormonal characteristics of PCOS. Therefore, transvaginal ultrasonography and hormonal parameters must be used as complementary diagnostic methods in women with PCOS.
Thyroid and Metabolic Function · Insulin and Metabolism
Ciampelli M et al., 1998·Gynecological endocrinology : the official journal of the International Society of Gynecological Endocrinology
In recent years the metabolic implications of polycystic ovary syndrome (PCOS) have received a great deal of attention; in fact 50% of women with PCOS are obese and a similar percentage of subjects was found to show exaggerated insulin secretion and reduced insulin-stimulated glucose uptake. The presence of these features in women with PCOS has profound clinical implications in terms of morbidity due to diabetes mellitus, dyslipidemia, hypertension and cardiovascular disease. Moreover, hyperinsulinemia has recently been proposed as a possible independent risk factor for endometrial and breast cancer. In the light of these considerations, the importance of metabolic screening in patients with PCOS in order to improve their quality of life cannot be underestimated. In this review we analyze all the clinical pathologies in which hyperinsulinemia of PCOS could be involved. Furthermore, in order to clarify the possible mechanisms leading to the insulin disorders of the syndrome, we review the available data about the insulin receptor abnormalities, as well as those concerning the insulin resistance and the exaggerated insulin secretion. Finally, we examine the main therapeutic strategies to ameliorate the insulinemic status of PCOS patients in order to potentially be able to prevent the long-term consequences of this syndrome.
To investigate the predictive value of polycystic ovaries for endocrine signs of polycystic ovary syndrome (PCOS). Controlled descriptive study. Academic tertiary care fertility clinic. PATIENT(S): Normogonadotropic (FSH levels between 1 and 10 mIU/mL conversion factor to SI unit, 1.0) oligomenorrheic or amenorrheic women visiting our fertility clinic and a control group of regularly cycling, healthy, normal weight volunteers recruited by advertisement. INTERVENTION(S): Single blood samples and transvaginal sonography were performed. MAIN OUTCOME MEASURE(S): Serum levels of FSH, LH, androstenedione (A), and T and ovarian volume, ovarian stroma density, and follicle number. RESULT(S): In control women, the 95th percentile was calculated for ovarian volume, follicle number, and stroma count as well as endocrine parameters. The use of these upper limits of normal in the study group resulted in 217 (66%) patients with polycystic ovaries on ultrasound (defined as increased mean ovarian volume and/or mean follicle number per ovary), whereas only 120 (36%) patients exhibited elevated serum androgens (increased A and/or T concentrations) and 155 (47%) showed elevated LH levels. Sensitivity and specificity of single or combined sonographic parameters for prediction of elevated serum LH or androgen concentrations were limited. CONCLUSION(S): In the study group of normogonadotropic oligomenorrhea or amenorrheic infertile women, we set strict cutoff levels for various criteria used in the literature for defining PCOS. Groups defined by sonographic or endocrine PCOS criteria did overlap, but sonographic parameters had limited predictive value for abnormal hormone serum levels.
Two long and broad streams of medical literature, from the 1950's to date, have established the existence of two unrelated abnormalities of androgen production in women with breast cancer. One is the genetically determined presence of subnormal production of adrenal androgens (i.e. DHEA and DHEAS) in women with premenopausal breast cancer and their sisters, who are at increased risk for breast cancer. The other is excessive production of testosterone, of ovarian origin, in subsets of women with either premenopausal or postmenopausal breast cancer and women with atypical breast-duct hyperplasia, who are at increased risk for breast cancer; along with the hypertestosteronism, there is frequently chronic anovulation in the premenopausal patients. The combination of ovarian hypertestosteronism and chronic anovulation is characteristic of the polycystic ovary syndrome and is also frequently seen in women with abdominal ("android") obesity; both PCOS and abdominal obesity are known to be characterized by high risk for postmenopausal cancer. The elevated testosterone levels and the increased levels of insulin, IGF-I, and IGF-II that are seen in PCOS and abdominal obesity could favor the development of breast cancer in several ways, all of which have been demonstrated experimentally: binding of testosterone to cancer cells bearing testosterone receptors, with direct stimulation; intratissular aromatization of testosterone to estradiol, with stimulation of estrogen-sensitive cells; stimulation of the production of epithelial growth factor (EGF) by testosterone, with direct mitogenic effect of EGF on cancer cells; stimulation of aromatase by insulin and IGF-I; direct mitogenic stimulation of cancer cells by insulin, IGF-I, and IGF-II; and stimulation by IGF-I and IGF-II of the intratissular reduction of estrone to estradiol. Since PCOS is probably largely genetically determined, and abdominal obesity may also be, the hypertestosteronism of these conditions may represent a second genetically determined hormonal risk factor for breast cancer.
To evaluate the incidence and extent of periovarian adhesion formation subsequent to laparoscopic electrocoagulation of the ovarian surface in infertility patients with polycystic ovarian disease (PCOD). From a total of 199 PCOD patients treated with ovarian electrocautery, 50 cases of laparoscopy and 12 cesarean sections served as second-look investigation. A subgroup of 30 patients had abdominal lavage and artificial ascites after surgery; they underwent "early" second-look (2 to 14 days after laparoscopy). All patients were referred to our fertility outpatient clinic affiliated with the university hospital. Infertility patients with polycystic ovarian reaction to hormonal stimulation therapy underwent laparoscopic electrocoagulation of the ovarian surface. Adhesion formation was detected in 19.3%; the incidence reduced to 16.6% with the use of abdominal lavage. The adhesions found were obviously due to bleeding of the ovarian capsule caused by electrocautery. Adhesiolysis was easily possible during "early" second-look. The incidence of de novo adhesion formation caused by laparoscopic electrocoagulation of the ovarian surface seems to be lower than after ovarian wedge resection; it can be reduced by abdominal lavage and artificial ascites.
Clomiphene citrate therapy has been found to improve the infertility rate in women suffering from polycystic ovarian disease (PCOD). However, there still exists a group of women with PCOD who fail to respond to clomiphene citrate or human menopausal gonadotropin/human chorionic gonadotropin or urofollitropin/chorionic gonadotropin treatment, an ovarian wedge resection by laparotomy approach which has been known for 50 years. Within the last decade, translaparoscopic electrocautery and laser drilling techniques have been utilized. In 1986, a translaparoscopic carbon dioxide laser ovarian wedge resection was introduced for resistant PCOD. This paper describes the surgical principle of a translaparoscopic carbon dioxide laser ovarian wedge resection. This type of treatment results in a 75% crude conception rate, with a 67% rate of healthy live birth. There was an 8% postsurgical adhesion rate among 12 cases that were incorporated into the study. This mode of therapy may prove to be very useful, safe, easy to perform, and cost effective as a second-line therapy for resistant PCOD in cases where medical inductions fail to achieve ovulation.
The incidence and fertility effects of postoperative adhesion formation after laparoscopic ovarian electrocautery or laser photocoagulation of polycystic ovaries has not been adequately analyzed. Short-interval second-look laparoscopy appears to be a useful method for addressing this issue. Employing short-interval second-look laparoscopy 3 to 4 weeks after the initial laparoscopic intervention, we were able to demonstrate adhesions in 6 of 7 patients (85%) treated with ovarian electrocautery and 8 of 10 patients (80%) submitted to laser therapy. The adhesions were amenable to laparoscopic lysis in 12 of 14 patients (85%). The subsequent conception rates within 6 months of second-look laparoscopy that were 57% and 40% in the electrocautery and the Nd:YAG laser groups, respectively, may in part be attributed to the restoration of normal pelvic anatomy during this procedure.
The rate of adhesion formation after ovarian electrocauterization has been described in two selective and unselective groups of patients with PCOS. The rate of this complication in the selective group was 0 from 16 ovaries and in the unselective group (5/25). However, the rate of major adnexal adhesion in the unselective group was 1 from 25 ovaries.
Serum gonadotropin, prolactin, estradiol, sex hormone binding globulin (SHBG) and androgen levels were measured before, 5 days and 6 weeks following ovarian wedge resection in 9 patients with polycystic ovary syndrome. Elevated levels of LH, androstenedione, testosterone and dehydroepiandrosterone-sulphate (DHEA-S) were found before surgery. There was a marked decrease in androstenedione and DHEA-S levels 5 days following wedge resection, but a rebound effect could be observed 6 weeks later. Serum gonadotropin, prolactin, testosterone and SHBG concentrations were practically unaffected by surgery. At 6-12 months follow up patients showed regular, mainly ovulatory cycles, but pregnancy occurred only in two cases.
Polycystic ovaries were defined with ultrasound imaging in a series of 173 women who presented to a gynaecological endocrine clinic with anovulation or hirsutism. Polycystic ovaries were found in 26% of women with amenorrhoea, 87% with oligomenorrhoea, and 92% with idiopathic hirsutism--that is, hirsutism but with regular menstrual cycles. Fewer than half the anovulatory patients with polycystic ovaries were hirsute, but in 93% of cases there was at least one endocrine abnormality to support the diagnosis of polycystic ovaries--that is, raised serum concentrations of luteinising hormone, raised luteinising hormone: follicle stimulating hormone ratio, or raised serum concentrations of testosterone or androstenedione. This study shows that polycystic ovaries, as defined by pelvic ultrasound, are very common in anovulatory women (57% of cases) and are not necessarily associated with hirsutism or a raised serum luteinising hormone concentration. Most women with hirsutism and regular menses have polycystic ovaries so that the term "idiopathic" hirsutism no longer seems appropriate.
Fertility following bilateral ovarian wedge resection (BOWR) was evaluated in a retrospective cohort study of 90 consecutive cases of the polycystic ovary syndrome. Post-BOWR follow-up was available for varying time spans of up to 10 years. BOWR resulted in the resumption of menstrual cyclicity in 91.1% (82/90) of the cases. However, within this ovulatory group, 26 patients were characterized by oligo-ovulation and a significantly reduced conception rate (29.2%), as compared with that of 56 normo-ovulatory counterparts (60.3%). Although the crude overall conception rate for this series was 47.8%, the overall cumulative probability of conception at the end of follow-up as determined by life table analysis was 73%. The likelihood of conception at any given point in time was estimated by a monthly fecundability rate of 1.34%. Our findings also indicate that the probability of post-BOWR conception was unaffected by age, race, ward status, or duration of infertility. In contrast, persistent post-BOWR oligo- or anovulation and the presence of concurrent tuboperitoneal disease were reaffirmed as the most important determinants of the likelihood of post-BOWR conception. A minimum incidence of 7.8% was documented for acquired post-BOWR pelvic disease.
Rajaniemi HJ et al., 1980·J Clin Endocrinol Metab·
Wedge resection was performed in 12 patients with polycystic ovarian disease, and cell samples from the cystic follicles were assayed for LH(hCG) receptor using [125I]iodo-hCG as a ligand hormone. Simultaneously to wedge resection, blood samples were taken for serum FSH, LH, 17 beta-estradiol, progesterone, and testosterone RIA measurements. Serum LH was regularly elevated (16.0-57.1 U/liter), whereas FSH (5.2-11.5 U/liter) was within the normal reference range. The LH to FSH ratio was between 2.1-7.8. The 17 beta-estradiol concentrations (0.12-0.23 nmol/liter) were within the normal reference range found during the early follicular phase. Only 3 patients had progesterone levels exceeding the assay sensitivity limit of 0.1 nmol/liter. Ony 3 of the 11 patients assayed for serum testosterone had values exceeding the upper limit of the reference range. Seventy-seven percent of the ovarian follicular samples showed specific binding of [125I]iodo-hCG. The number of receptors in positive samples averaged 0.67 +/- 0.11 fmol/mg homogenate protein, which is clearly lower than that in normal preovulatory follicles. Scatchard analyses revealed a single class of binding sites, with a mean equilibrium association constant of 5.4 X 10(9) M-1 at 37 C. These results suggest that the derangement of follicular development in patients with polycystic ovarian disease probably is not due to the lack of appearance of the LH(hCG) receptor. It is possible that the tonic elevation of serum LH results in a decrease in the number of available receptor sites; this would be one step in the process leading to ovarian changes characteristic of this disease.
Seven cases of polycystic ovarian disease were investigated by laparoscopy and endocrinologic tests after failure of ovarian resection to restore fertility. One case of bilateral and two cases of unilateral ovarian atrophy were recorded. In all seven patients the common features were extensive perivarian and peritubal adhesions. Four of the six patients amenable to cure were submitted to reconstructive surgery; three of them conceived and had normal deliveries. The present observations support the plea to relegate the surgical approach to a minor position in patients with Stein-Leventhal syndrome and stress the importance of meticulous surgical technique in the performance of ovarian surgery. Laparoscopic investigation is mandatory in all cases of unsuccessful ovarian resection.
More than twenty-five years ago Edward Reynolds gave an excellent description of the polycystic ovary, and expressed the opinion that ovarian surgery was the most important single feature in the treatment of sterility of the female. This view was not accepted by later workers in the field. Indeed, the tendency has been to consider retention cysts as items of small importance, unlikely to cause symptoms and rarely calling for treatment on their own account. It remained for Stein15- 18 and his followers to define a type of case where the presence of multiple cysts evidently interferes both with ovulation and with endocrine activity, and to show that surgery frequently succeeds in restoring normal function. I propose to discuss certain aspects of this clinical problem, and to report my own series of 65 operated cases.
The fundamental cause of retention cysts is probably, as Zondek believes, a phase of hypergonadotropism. Under normal conditions large numbers of primordial follicles start to mature but never complete the process. At some point along the way the ova die, whereupon the follicles regress and ultimately become insignificant corpora fibrosa. Under the influence of excessive pituitary stimulation, however, such follicles may continue to secrete liquor and to grow after the disappearance of their ova.
Some of them eliminate themselves by delayed resorption and atrophy or, less often, by rupturing through the tunica albuginea. Others remain as permanent cystic structures. These retention cysts are pathologic, whereas atretic follicles in various stages of regression represent nothing more than phases of the normal ovulatory cycle.