View clinical trials related to Polycystic Ovary Syndrome.
Filter by:The present study aims to elucidate if there is a metabolomic profile alteration in the embryos of obese women in order to understand if the reduced implantation rate observed in these patients is directly related to this factor. Furthermore, the investigators seek to establish if there is any difference between obese women with Polycystic Ovary Syndrome (PCO) and without PCO. The investigators compare these metabolomic profile embryos with embryos of egg-donation programme.
This is a multicenter double-blind randomized controlled trial. A total of 420 anovulatory Chinese women with PCOS will be recruited, and the randomization will be stratified by each participating site. Participants will be randomized into one of the two treatment arms: letrozole and CHMG or letrozole and CHMG placebo. CHMG or its placebo will be taken twice a day for up to six months. Letrozole (2.5 mg daily) was given on days 3-7 of the menstrual cycle after a spontaneous period or withdrawal bleeding, and the dose will be increased to 5.0 mg daily during the last three months for non-pregnant women in both groups.The aim of the present study is to determine the efficacy of combined treatment with letrozole and CHMG on improving live birth rates in infertile Chinese women with PCOS. Our hypothesis is that the combination of letrozole and CHMG is more likely to increase the ovulation rate and decrease the miscarriage rate and result in a higher live birth rate in PCOS women than letrozole alone.
Gonadotropin-releasing hormone (GnRH) is a hormone that regulates the ability of the pituitary to secrete two hormones, luteinizing hormone (LH) and follicle-stimulating hormone (FSH). LH and FSH control the production of female hormones (such as estrogen and progesterone) and the development of eggs by the ovary. Progesterone and estrogen then decrease the number of GnRH pulses produced by the brain (and therefore the number of LH pulses from the pituitary). The ability to decrease GnRH pulses seems to be very important for normal menstrual function in adult women. The purpose of this study is to learn more about how GnRH and LH pulses are controlled during puberty. The information gathered in this study will hopefully allow us to learn more about how menstrual cycles are normally established in girls during puberty.
The purpose of this study is to understand the effects of elevated male hormones in adolescent girls and how they effect the development of polycystic ovary syndrome (PCOS). If the investigators understand the effects of elevated male hormones levels in girls, the investigators may be able to better treat girls with elevated male hormone levels and perhaps even learn how to prevent the development of PCOS. Females with elevated levels of male hormones respond differently to estrace (estradiol) and progesterone than females with normal male hormone levels. The investigators will be giving you estrogen and progesterone to see how you respond after the male hormone has been blocked by a medication called flutamide.
During childhood, the levels of certain hormones: gonadotropin-releasing hormone (GnRH), luteinizing hormone (LH), follicle-stimulating hormone (FSH), estrogen, and progesterone are very low. However, when puberty starts, GnRH and LH pulses begin to increase, but they initially do so at night only. It is unknown why GnRH and LH pulses increase at night and then decrease during the day (instead of being increased all the time). The purpose of this study is to see how quickly progesterone reduces LH pulses. The study is also meant to find out whether too much testosterone (also a hormone) in the blood causes problems with the ability of progesterone to reduce LH pulses. In this study, the investigators aim to discover whether or not giving 3 small doses of progesterone to pubertal girls will prevent the nighttime increase of LH pulses. From the information gathered in this study, the investigators may be able to learn more about how menstrual cycles are normally established in girls during puberty. Ultimately, if the investigators understand these normal processes, the investigators may be able to better understand abnormalities of puberty.
Many, but not all, girls with high levels of the male hormone testosterone go on to develop polycystic ovary syndrome (PCOS) as adults. Women with PCOS often have irregular menstrual periods, excess facial and body hair, and weight gain. PCOS is also a leading cause of difficulty becoming pregnant. The investigators do not understand why some girls with high hormones develop PCOS and others do not. In a previous study by our group, some girls with high levels of male hormones had abnormalities in the secretion of another hormone, called luteinizing hormone (LH), that are often seen in women with PCOS. However, another group had normal LH secretion. The girls with the abnormal LH secretion had higher levels of another hormone, called insulin, than the girls with normal LH secretion. The investigators will test whether metformin, an insulin-sensitizing agent, changes the effects of high male hormone levels in adolescent girls, specifically by looking at their LH secretion response following metformin treatment.
Girls with high levels of the male hormone testosterone often develop polycystic ovary syndrome (PCOS) as adults. Women with PCOS often have irregular menstrual periods, excess facial and body hair, and weight gain. Women with PCOS also have difficulty becoming pregnant. Some, girls with high levels of male hormone will develop normal hormone levels as they grow up. Most girls continue to have high levels of male hormone as adults. In addition, girls with elevated levels of male hormones often have lower fertility rates in adulthood. In this study the investigators will aim to discover the effect of 7 days of estrogen and progesterone on GnRH pulses in girls and women with the goal of understanding how and why some girls and women have higher levels of male hormone and the causes of PCOS. If investigators understand the causes of these disorders, they may be able to better treat them and perhaps even learn how to prevent the development of PCOS.
Whether 12 weeks of spironolactone can reduce androgen production from ovaries and adrenal glands of girls with obesity and androgen excess
This study will test whether metformin administration can ameliorate androgen (male hormone) overproduction in overweight pubertal girls with androgen excess. The investigators hypothesize that improvement in insulin sensitivity by 12 weeks of metformin administration will improve androgen levels after adrenal stimulation testing with adrenocorticotropic hormone (ACTH) or ovarian stimulation testing with recombinant human chorionic gonadotropin (rhCG).
This study will test whether longer-term suppression of adrenal function can ameliorate androgen (male hormone) overproduction in overweight early pubertal girls with androgen excess. The investigators hypothesize that suppression of nighttime adrenocorticotropin hormone (ACTH) production by 12 weeks of evening oral hydrocortisone administration will improve androgen levels in girls with adrenal androgen overproduction. Specifically, this intervention will improve androgen levels after adrenal stimulation testing with ACTH or ovarian stimulation testing with recombinant human chorionic gonadotropin (rhCG).