[Role of gonadotropins in the biosynthesis of corticosteroids measured in the blood of the adrenal vein in castrated rats].
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Biomedical subjects
Publications and source records attributed to B Buntner.
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In 31 adult rats of Wistar strain (body weight 231 +/- 14g) the relationships between testosterone concentration in testicular venous blood of an individual rat and weight of accessory sex organs (testes, seminal vesicles, ventral prostate, levator ani muscle) and citric acid and fructose concentrations in seminal vesicles were investigated. No direct relationship was found between testosterone concentration and the above parameters. The correlation coefficient varied from 0.042 to 0.394.
This report describes the modification of Detter and Klingmüller's method for the determination of urinary alpha- and beta-pregnanediol and pregnanetriol by means of thin -layer chromatography. The modifications were as follows: 1. The addition of formol prior to hydrolysis to prevent pigments penetration into urinary extracts. 2. The use of Kieselgel HF 254+366 nach Stahl (E. Merck, Darmstadt) which allows to localize the spots under UV-light at 366 nm without the use of colour reagents. The results concerning accuracy, sensitivity, precision and specificity in the modification described are profitable. Using this method in 7 healthy women (aged 28-37) with normal menstrual cycles the urinary excretion of alpha- and beta-pregnanediol and pregnanetriol were evaluated every second day (starting the 6th day of the cycle). The maximum of excretion of alpha- and beta-pregnandiol appeared on day 20 of the cycle, with the mean (+/- S.D.) 1.27 +/- 0.37 mg/24hr and 2.97 +/- 0.80 mg/24hr for alpha- and beta-pregnanediol, respectively. Mean values of pregnantriol were at the same level and ranged from 0.25 to 1.42 mg/24 hr. Single determination of these compounds in 8 healthy men (aged 19-42) revealed the mean excretion values (+/- S.D.) 0.96 +/- 0.17 mg/24 hr, 1.24 +/- 0.40 mg/24 hr, 1.12 +/- 0.65 mg/24 hr for alpha- and beta-pregnanediol and pregnanetriol, respectively.
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The authors determined the amounts of free and total 17-hydroxycorticosteroids (17-OHCS) and 17-ketosteroids (17-KS) in the urine of 11 women in whom epileptic seizures occurred most frequently on the 2nd and 1st day before menstruation and in 7 women with seizures showing no such correlation with the menstrual cycle. A statistically significant decrease of 17-KS was demonstrated in women with premenstrual seizures. In both groups of women the amounts of free 17-OHCS were near the lower normal range, while the amounts of total 17-OHCS were reduced and the obtained results compared with the accepted normal values showed statistically significant differences (p less than 0.01). The obtained results are, however, insufficient for assuming that these hormones play an important role in the mechanism of seizure release in premenstrual period. The authors think, on the other hand, that the statistically significant fall in 17-KS in women with premenstrual seizures may play some role among other factors in the mechanism of seizure release.
The authors determined the amounts of oestrone, oestradiol, oestriol, alpha and beta pregnanediol, and pregnanetriol in 24-hour urine of 11 women with epileptic seizures occurring two and one day before the onset of menstruation, and in 7 women with seizures not dependent on the menstrual cycle. Determinations of these hormons were done during three successive menstrual cycles on the 2nd and 1st day before the onset of bleeding. In both groups a significant decrease was observed in the urinary levels of oestradiol and oestriol as compared with normal values. On the other hand, the amount of excreted oestrone was only slightly lowered in relation to the amount of this hormone excreted by controls. A significant decrease in the amounts of alpha pregnanediol (the difference being statistically significant at p less than 0.01 level) was observed two days before menstruation. On the other hand, pregnanetriol was decreased only in women in whom the seizures showed no temporal correlation with the stage of the menstrual cycle. The authors suggest that the observed reduction in the metabolites of progesterone in both groups was associated with an increased seizure readiness of the brain on the days preceding menstrual bleeding.
The influence of pinealectomy and melatonin administration on the levels of total T3 and T4 plasma levels were determined by RIA method. The results of hormonal measurements were evaluated by means of Student's t-test, and the diurnal rhythm by cosinor method. It has been established that pinealectomy disturbs the T3 diurnal rhythm and caused marked changes in T4 levels during the 24 hours. Exogenous melatonin does not influence the thyroid function during the light phase. During the dark phase, however, its inhibitory effect is prevalent in pinealectomized rats, and the stimulating in sham operated rats.
We investigated iron metabolism in 47 women with thyrotoxic Graves' disease. Serum iron, ferritin, transferrin, triiodothyronine and thyroxine concentrations were RIA measured before and after methimazole treatment when patients became euthyroid. The control group consisted of 52 healthy women. We noted that serum ferritin levels and the ferritin to transferrin ration were significantly lower while the iron to ferritin ratio was higher in patients before and after methimazole therapy. Iron concentration as well as the iron to transferrin and the iron to thyroid hormone ratios were decreased only before treatment.