[Conversion and uptake of androgens in the periphery of an XXY-male (author's transl)].
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Biomedical subjects
Publications and source records attributed to J Neuwirth.
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Acetoacetate, beta-hydroxybutyrate, pyruvate and lactate in whole blood, the acid-base balance according to Astrup, SGOT and SGPT, and the serum and urinary sodium and potassium were estimated in 10 fasting obese women. Fasting led metabolic acidosis due to a tenfold increase of acetoacetate and beta-hydroxybutyrate, while pyruvate and lactate had a tendency to decrease. Serum and urinary sodium and potassium decreased; A tendency to increased SGOT and SGPT was observed. Sodium bicarbonate administered in general since the 8th or 9th day of fasting led in 4 to 5 days to an earlier correction of blood pH, while pCO2, actual HCO3, standard HCO3, base excess, buffer base, pO2, Hb saturation and total CO2 reached the prefasting values only several days after blood pH normalisation. The administration of NaHCO3 corrected the serum level of sodium while its excretion remained low. Bicarbonate had no influence on the decreasing trend of serum potassium, but the urinary output of potassium was stabilized. It is suggested that in fasting subjects 1. the correction of the metabolic acidosis by NaHCO3 does not reduce the rate of lipid catabolism and does not lead to fluid retention and 2. liver damage in fasting may be prevented by blood pH normalisation.
The conversion of 3H-testosterone and the uptake of 3H-testosterone and 3H-5alpha-dihydrotestosterone were investigated in pubic skin and pubic hair follicles of a XXY-man with inadequate pubic hair. The uptake of both androgens was demonstrated in the skin as well as in the hair follicles. Similarly the activity of steroid 5alpha-reductase was present in both tissues. The total conversion of 3H-testosterone was 2-3 times higher in the patient than in control persons. In the XXY-man the major metabolites were 5alpha- and 5beta-androstanediols, whereas in the normal men 5alpha-dihydrotestosterone and 4-androstenedione were mainly formed from testosterone. An explanation of the inadequate growth of pubic hair in our patient seems to be related to a conversion of testosterone - at its low plasma level - to its relatively inactive metabolites.
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The values of serum T4, T3, T4/T3, RT3U, FT4I, PBI, ATR, TSH, 132I uptake and antibodies against thyreoglobulin were estimated in non-obese, healthy women and in obese women with a stabile body weight on total fasting of 14 days. Obesity with no dietary restriction compared with normal controls was accompanied by a tendency to higher serum levels of T4 and T3 and prolonged ATR. Other indicators of thyroid function remained unchanged. Total fasting led to a decrease of serum T3 and to an increase of FT4I and RT3U. The remaining tests were unchanged. These results are conform with a decreased transformation of T4 into T3 in the periphery. The participation of the hypothalamus and hypophysis to adaptation of the thyroid to fasting was discussed.
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Clinical, spermiologic and karyologic examinations and determinations of plasmatic testosterone were performed in a group of 105 chromatin-positive patients aged 16 to 45 years. A comparison with a control group of 108 somatosexually well developed and fertile men at the age of 21 to 55 years has established that in the Klinefelter's syndrome the male sex hormone level in the blood was highly significantly lower. Whereas in the control group the male sex hormone values in the blood were dependent on age, it was not possible to prove any dynamic changes in the process of ageing between 21 and 45 years in chromatin-positive patients. A comparison of some phenotypical and laboratory findings in the various chromosomal variants of Klinefelter's syndrome shows that comparatively the least changes were found in patients with a mosaic of 46,XY/47,XXY.
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