The effects of progesterone and oestradiol-17beta treatment on plasma hormone levels and on the reproductive behaviour of ewes in late anoestrus and early in the breeding season.
Explore the source record for details and available documents.
SEARCH · Search PubMed
Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Explore the source record for details and available documents.
The contraceptive effect of continuous treatment with low dose progestogens (minipill) has been attributed mainly to alterations of the cervical mucus and the endometrium. This study was undertaken to investigate the effect of low dose progestogens on hypothalamic-pituitary-ovarian function. Plasma concentrations of follicle stimulating hormone (FSH), luteininzing hormone (LH), estradiol-17 beta (E-2) and Progesterone were measured daily during apparently ovulatory menstrual cycles and during treatment cycles with different low dose progestogens. From the results obtained it was concluded that the minipill has a clear-cut effect on the LH/FSH peak at midcycle and on corpus luteum function. A cyclic secretion of E-2 is maintained in the majority of cases. In a few treatment cycles however, follicular maturation was suppressed as indicated by low E-2 concentrations. It was concluded that the minipill exerts a profound effect at the central and ovarian level which contributes to its satisfactory contraceptive efficacy.
Explore the source record for details and available documents.
Serum follicle-stimulating hormone (FSH), luteinizing hormone (LH), prolactin, estradiol, and progesterone concentrations were measured in 58 ovulating women in different age groups (20 to 29, 34 to 39, 40 to 44, and 45 to 50 years) at five- to seven-day intervals through a single menstrual cycle and in 18 postmenopausal women sampled weekly five to six times. The over-all hormone patterns were similar in four premenopausal groups. However, mean serum FSH levels increased with age and significantly higher concentrations were found in the 40 to 50 years group than in the 20 to 29 year group. Serum LH levels did not show a similar rise with age, although follicular LH levels in the oldest group were higher than in the 20 to 29 year group. Prolactin and estradiol concentrations did not change with age prior to the menopause, but luteal progesterone levels were lower in the three older premenopausal groups than in the 20 to 29 year group. Postmenopausal women showed elevated FSH and LH, decreased prolactin, and negligible estradiol and progesterone levels. There was an over-all significant linear correlation between prolactin and estradiol concentrations. It appears that the menopause is preceded by several years of rising gonadotropin, predominantly FSH, levels. During this period, ovarian estrogen production appears to be maintained and ovulation continues, but luteal progesterone levels decline. It is likely that these premenopausal alterations in pituitary-ovarian relationships reflect depletion of ovarian follicles.
The enzymes amino peptidase and esterase were identified in human cervical mucus. Their concentration was serially determined during a menstrual cycle in 5 normal ovulatory women and correlated with the time of ovulation as monitored by the basal body temperature and radioimmunoassay of serum luteinizing hormone (LH), progesterone, and estradiol (E2). The activity of both enzymes decreased at midcycle just before the LH surge and began to rise after ovulation. The preovulatory decline in enzyme activity was significant for esterase but not for amino peptidase. The site of production and functional significance of these enzymes are not at present identified.
Basal body temperature (BBT) as a predictor of ovulation was assessed by examining the temporal relationship between the BBT shift and the luteinizing hormone (LH) surge in individual cycles of 27 normal women. For 22 of the subjects, the LH surge occurred on the same day or within one day of the BBT nadir. For the remaining five subjects, the surge fell within 2 days after or 3 days before the nadir. Despite the BBT nadir's close temporal association with the LH surge, daily examination of BBT for the purpose of predicting the day of ovulation during a given cycle is unsatisfactory. By 48 hours following the nadir, when one could usually be certain that temperature elevation had occurred, all subjects had already exhibited the LH surge.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
165 STERILE MALE PATIENTS UNDERWENT SEMEN EXAMINATIONS AND SERUM GONADOTROPINS DOSAGE. In 47 of these patients a testicular biopsy was preformed. The results of the statistical analysis showed a significant correlation between the sperm count and the FSH in addition to a close and precise relation between the initial stages of the spermatogenesis and FSH. No correlation was found to exist in regard to the LH. The Authors finally showed their interpertation of such data, with the possibility of different prognosis in subjects having severe oligozoospermia, but with a bioptic picture which did or did not present damage at the spermatid maturation stage.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Thyroid-stimulating hormone and prolactin (PRL) were measured in a group of 149 women with galactorrhea. Three of these patients were found to have primary hypothyroidism. In the remaining 146 patients, the PRL assay was correlated with the menstrual history and the results of hypocycloidal polytomography. Sixty-two per cent of these patients had hyperprolactinemia and 35 per cent had abnormal tomograms. Nine patients with abnormal x-rays had normal prolactin levels. None of the patients with normal menses and normal PRL was found to have an abnormal x-ray. Fourteen of the 15 patients with PRL levels greater than 200 ng. per milliliter had abnormal tomograms. Almost 70 per cent of patients with secondary amenorrhea and low estrogen status had abnormal x-rays. In patients with oligomenorrhea and secondary amenorrhea with normal estrogen status, it was not possible to differentiate between patients with normal or abnormal tomograms based on the level of serum PRL. Polytomography remains the single most important diagnostic test in establishing the presence of a pituitary tumor.
Explore the source record for details and available documents.
Serum levels of luteinizing hormone (LH), follicle-stimulating hormone (FSH), prolactin (HPRL), 17 beta-estradiol (E2) and progesterone (P) were estimated in 46 subjects with normal menstrual cycles in whom hysterectomies were performed. Estrogen (ER) and progesterone receptor (PgR) levels in endometrial samples of these patients were estimated, and histological dating of the cycle day was carried out. Similarly, hormone serum levels and ER as well as PgR were estimated in 17 patients with endometrial carcinoma. No correlation between LH, FSH, HPRL and ER as well as PgR was noted in the normal subjects. Correlation between P and ER was observed in this group. Parallel variations between E2 and PgR were recorded in the normal females. In the carcinoma group no correlations between hormone serum levels and receptor contents were found, but ER and PgR correlated with each other. Receptor levels was highest in the well-differentiated group of endometrial carcinoma. The present experiments provide a rationale for progestagen therapy of carcinoma of the endometrium.
The secretion rate and plasma concentration of the adrenocortical steroid cortisol is modified in subjects treated with estrogenic and/or progestational steroids. The effects of contraceptive steroids on the secretion of ACTH are poorly documented, however, In the current investigation, we found that concentrations of ACTH and cortisol in plasma obtained at 0800--0900 h from a group of women with normal cyclic menses (n = 4) ranged from 78--120 pg/ml and 77--137 ng/ml, respectively. Although significant cyclic changes in the plasma levels of LH, FSH, 17 beta-estradiol, and progesterone occurred during the ovarian cycle, no obvious cyclic fluctuations in plasma levels of ACTH or cortisol were observed. In women treated with Norinyl 1 + 80 (1.0 mg norethindrone plus 0.08 mg mestranol), plasma concentrations of LH, FSH, 17 beta-estradiol, and progesterone were significantly lower (P less than 0.001) than plasma levels of these hormones in normal women during the ovarian cycle. The mean daily plasma concentrations of ACTH were significantly lower (P less than 0.001), whereas plasma cortisol levels were significantly higher (P less than 0.001) in women treated with oral contraceptive steroids compared to the levels of these hormones in the untreated ovulatory women.
Ten women were studied during the first post-partum week. Suckling for 20 min induced a marked increase in plasma prolactin, reaching a maximum within 0-25 min after the end of suckling and then returning to pre-suckling levels after 120 min. Suckling induced no changes in plasma thyrotrophin (TSH), growth hormone (GH) or follicle stimulating hormone (FSH). The iv injection of 200 mug of thyrotrophin releasing hormone (TRH) immediately after suckling resulted in an additional increase in plasma prolactin and a rise in TSH. When given 120 min after suckling TRH was followed by increased plasma levels of prolactin and TSH, which for both hormones were of a magnitude comparable to the TRH induced increment seen immediately after suckling. Thus, suckling did not inhibit the effect of TRH on the release of TSH. These studies indicate that TRH is probably not involved in the suckling induced increase in prolactin secretion. The mean plasma FSH level was below the limit of detection before and after suckling. Neither plasma FSH nor prolactin showed any appearant changes following the iv injection of 25 mug of luteinizing hormone releasing hormone (LH-RH), when given immediately after and 120 min after suckling. When given after suckling as indicated above, TRH induced no changes in plasma GH or FSH and similarly LH-RH was without influence on plasma GH and TSH.