[Bioelectric activity of cervix uteri in normal menstrual cycle and in the syndrome of sclerocystic ovaries].
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A report of reduced serum levels of progestins, following oral administration after jejunoileal bypass, promoted the present investigation of the absorption of D-norgestrel and estradiol following different types of intestinal bypass surgery for morbid obesity. A group of non-operated obese patients served as control. Apart from significantly higher gonadotrophin levels, which could be attributed to periovulatory sampling in the non-operated group, there was no significant differences in basal levels of estradiol, estrone, conjugated estrone, androstendione, testosterone, and progesterone. The operation did not influence the pattern of the menstrual cycle. Following a single oral dose of 4 mg micronized estradiol and 125 microgram D-norgestrel, serum levels of estradiol and estrone were equal in the three groups. serum D-norgestrel was equal in the two operated groups, but was significantly higher in the bypass group with 1:3 jejunoileal ratio, compared with the non-operated group. Further, a significant negative correlation between peak levels and weight was found. It is suggested that one year following bypass surgery, obesity - but not intestinal bypass - might be associated with reduced serum levels of exogenous sex steroids following oral administration.
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The effect of intramuscular triamcinolone acetonide (TCA-A) on pituitary gonadotropins and ovarian hormones was studied in a normally menstruating woman. Serum levels of luteinizing hormone (LH) and follicle-stimulating hormone (FSH), as well estradiol 17-beta (E2) and progesterone (P), were determined daily in a normal "ovulatory" pretreatment cycle. A total of 160 mg of TCA-A was then administered in four injections over two and a half months. Daily serum levels of LH, FHS, E2, and P were again measured during a period beginning thirty days after the last injection of TCA-A. Cyclicity of all these hormones was absent after treatment. Both LH and FSH were suppressed in the first half of the post-treatment period when compared with the pretreatment ovulatory cycle. A potent corticosteroid such as TCA-A is apparently capable of producing anovulatory cycles in humans by disruption of cyclic pituitary gonadotropin secretion.
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The serum levels of luteinizing hormone (LH), estradiol-17beta, and progesterone were determined simultaneously with the concentrations of immunoglobulin (Ig) G, IgA, C'3, alpha1-antitrypsin, inter-alpha-trypsin inhibitor, alpha1x-antichymotrypsin, albumin, and lysozyme in cervical mucus during nine ovulatory cycles. Spinnbarkeit and ferning were also assessed, and the basal body temperature was measured and recorded during these cycles. The profiles were synchronized according to the LH peak. The midcycle period, characterized by the rapid increase and decline of estrogen and the beginning rise of progesterone, shows a prounced minimum of immunoglobulins, C'3, proteinase inhibitors, albumin, and lysozyme in cervical mucus, which is known to be most receptive to sperm penetration at this time. Although the variation of cervical mucus values is considerable during the early proliferative and the luteal phases, the midcycle values appear to be constantly low, showing slight differences among the profiles of the different parameters. The statistical evaluation and the assessment of the significance of parameters for ovulation detection and the assessment of the fertile period as well as the correlation of these parameters with basal body temperature will be the subject of the second communication of this series.
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Cytosolic and nuclear fractions prepared from the urethra, urinary bladder, and trigonum of the bladder obtained at urethrocystectomy from four female patients were analyzed for the presence of estrogen receptors. High-affinity estradiol receptors (KD 0.7 x 10(-9)M) could be detected in both cytosolic and nuclear fractions of the urethra from all four patients. Estradiol receptors could be detected in only the nuclear fractions of the urinary bladder in two of the four preparations. In the trigonum, cytosolic and nuclear receptors could be measured in one and three preparations, respectively. The receptor concentrations in both trigonum and the bladder were lower than those in the urethra. By providing experimental evidence for the presence of estradiol receptors in the lower uninary tract, the present data advance the case for estradiol therapy in incontinent patients.
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Four women used polysiloxane vaginal rings of core design containing 50 mg of norgestrienone (17 alpha-ethynyl-17 beta-hydroxy-estra-4,9,11,trien-3-one). The treatment was given in three-week cycles, leaving one treatment-free week between the cycles. The patterns of bleeding were registered and plasma norgestrienone (R2010), estradiol, progesterone, and gonadotropins were determined. Altogether twelve cycles were studied. The patterns of bleeding were unsatisfactory; only one subject had regular bleedings, and two of these were preceded by a luteal phase. The mean plasma concentration of norgestrienone (R2010) produced by the rings was 0.9 ng/ml. Ovulation was observed in 25% of cycles studied. Some follicular activity was present in every subject as judged by estradiol peaks. Excluding LH peaks in subjects who ovulated, mild pituitary suppression was achieved by this treatment. The only side-effect complained of was acne in one subject. The ring was regarded as easy to use.
Six normally menstruating women were inserted each with a single silastic implant-D releasing norethindrone acetate (NETA). The levels of endogenous hormones, FSH, LH, E2 and progesterone, were estimated by radioimmunoassay (RIA) procedures in the control and treatment cycles. In addition, the levels of drug in the serum as norethindrone (NET) which is a major metabolite of NETA were also estimated by RIA procedures in the treatment cycles. In all, 12 treatment cycles were studied. In the initial treatment cycles (1st/2nd or 3rd), the serum NET levels were either 1 ng/ml or above. The LH and FSH showed either normal or suppressed mid-cycle peaks, but the progesterone levels were completely suppressed. In the sixth treatment cycles, the serum NET levels were either 0.5 ng/ml or below. The FSH and LH mid-cycle peaks were lower but distinct while the luteal progesterone levels were of normal ovulatory type. These studies lead us to the conclusion that a serum level of NET of the order of 1 ng/ml is required to bring about suppression of luteal progesterone, either as a result of direct action on the ovary or through suppression of pituitary gonadotropins. When the serum level falls to 0.5 ng/ml or below, the suppressive effect is removed and ovulatory pattern of progesterone returns.