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K Sinterhauf

Publications and source records attributed to K Sinterhauf.

35 records · Page 2Linked to original sources

Kinetics of 3H-testosterone and 3H-dihydrotestosterone metabolism in patients with benign prostatic hypertrophy. Effect of cyproterone acetate.

The response of 3H-testosterone and 3H-dihydrotestosterone to the administration of cyproterone acetate (CA) over a period of 5 days was investigated. Both tracers were injected intravenously in patients with benign prostatic hypertrophy. Blood was withdrawn for up to 5 h. Benign prostatic hypertrophy tissue was obtained by transurethral resection. Nine patients served as controls. Eleven patients received 300 mg CA intramuscularly. Cyproterone acetate suppressed testosterone and FSH, but not LH. 3H-testosterone was cleared more rapidly from plasma in the patients given CA presumably due to increased metabolism in the liver. 3H-dihydrotestosterone, however, remained virtually uninfluenced. Moreover, CA did not significantly alter the 3H-testosterone and 3H-dihydrotestosterone uptake and metabolism within prostatic tissue.

Aged↗

[Diurnal profiles of plasma aldosterone, cortisol, renin, angiotensinogen and angiotensinases in normal subjects (author's transl)].

Plasma cortisol and renin were estimated in 1 h intervals, plasma aldosterone, angiotensinogen and angiotensinases in 3 h intervals over periods of 24 h in six normal volunteers (age 20-26) under control conditions and subsequently under suppression of ACTH release by dexamethasone. Highest cortisol levels were found around 7 a.m., minimum levels between 9 p.m. and 1 a.m. Dexamethasone reduced cortisol to constantly low concentrations. Aldosterone was highest around 4 a.m. under control conditions and under dexamethasone, and showed lowest concentrations between 4 and 10 p.m. There were no significant differences between mean aldosterone concentrations at corresponding time points of the control and the dexamethasone period. Similar to aldosterone, renen showed peak values around 4 a.m. All mean values at corresponding time points between 7 a.m. and 11 p.m. and the 24 hour mean values of each subject were significantly increased under the influence of dexamethasone. No evidence could be achieved for the existence of circadian rhythms of angiotensinogen and angiotensinases. Dexamethasone did not cause significant changes of these parameters.

Adrenocorticotropic Hormone↗

[Behavior of gastrin, renin, aldosterone and electrolytes after administration of deglycyrrhizinized liquorice and carbenoxolone in healthy subjects].

We found that renin and aldosterone values do not drop except when administering Carbenoxolone. The significant rise of sodium (11) in the serum and the drop of the serum-potassium values are probably responsible for the undesirable Carbenoxolone side effects; they occur following the administration of deglycyrrhizinized succus. The rise of post-prandial gastrin in the serum of the above as compared to the values obtained from untreated controls is common to both.

Adult↗

Fetal and maternal plasma cortisol levels during labour and after delivery in the human.

In a group of 15 cases the cortisol concentrations were determined in fetal and maternal plasma during labour and after delivery. In maternal plasma the levels were about twice as high as in fetal plasma and rose up to more than 1000 mug/l during labour (x = 639 +/- 222). After delivery the concentrations decreased. In fetal plasma, cortisol increased during labour from x = 173 +/- to x = 276 +/- 75 at the time of delivery and decreased to x = 106 +/- 36 within the first 23 hours. In a second group of 20 cases maternal and umbilical cord blood and blood of the newborn during the first 28 hours after delivery were analyzed. The values were in the same ranges as in the first group. Extremely high maternal levels were not correlated to higher fetal values. The cortisol levels of postmature children did not significantly differ from those of normal babies.

Female↗