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Biomedical subjects

L Bodrogi

Publications and source records attributed to L Bodrogi.

At least 37 records · Page 2Linked to original sources

Role of human adipose tissue in the production and metabolism of steroid hormones.

Radioimmunological methods have been employed for the simultaneous determination of dehydroepiandrosterone, androstenedione, testosterone, oestrogens (oestradiol + oestrone), progesterone, 17 alpha-hydroxyprogesterone and cortisol in human adipose tissue and peripheral blood to compare the hormone pool of adipose tissue with that in the general circulation. Extremely high steroid concentrations in the adipose tissue and hormone pool in the fat of obese subjects were observed. For adipose tissue/serum steroid ratios, the highest values were obtained for dehydroepiandrosterone and the lowest ones for cortisol. A preliminary study showed a great accumulation of steroids in adjacent adipose tissue of breast tumors. Striking differences were observed in the adipose tissue steroid concentrations between benign and malignant mammary tumors. The present findings revealed that blood hormone determinations may be insufficient to consider the steroid hormone availability in various endocrinopathies or steroid responsive tumors, especially when the endocrine state of extremely obese subjects is observed.

17-alpha-Hydroxyprogesterone↗

Functional relationships of the hypothalamic-pituitary-testicular system in Graves' disease.

An increased secretion of gonadotropic hormone was found in hyperthyroid males despite the high basal serum total testosterone and oestradiol levels. This suggests that hyperthyroidism affects the responsiveness of the hypothalamic-pituitary axis to sexual steroid hormones. While in the hyperthyroid patients the elevation of the serum testosterone level in response to chorionic gonadotropin was lower than normally, the LH and FSH responses to LRH were increased. The results indicate that male hyperthyroidism is associated with a loss of responsiveness of the Leydig-cells to adequate stimuli, to which the pituitary reacts by a compensatory increase in its LH-secretion and by an increased reactivity to LRH. It is suggested that in addition to the direct effect of the increased thyroid hormone levels, a secondary elevation of the oestradiol concentration plays a major part in the alterations in question.

Adult↗

Long-lasting effect of single ecdysone injections in newborn rats.

Single injections of ecdysone to newborn rats were followed by increases in the weights of the adrenals and decreases in the weights of the thymuses in the adults. No change was registered in body weights and in the weights of the gonads. The plasma androsterone levels seemed to decrease; however, the interindividual differences proved to be too great to draw definite conclusions.

Adrenal Glands↗

Free and solvolysable dehydroepiandrosterone and androsterone in blood of mammals under physiological conditions and following administration of dehydroepiandrosterone.

A gas chromatographic method has been empolyed for the determination of dehydroepiandrosterone (D), androsterone (A), dehydroepiandrosterone sulphate (DS) and androsterone sulphate (AS) in the peripheral blood of human subjects and in various mammals under physiological conditions and after the administration of D or DS. Unconjugated D has been isolated and the resting level determined in the rat, rabbit, dog , sheep, pig and cow, while DS was detectable in the peripheral circulation of the rat, dog and pig. Unconjugated A was present in blood of the rodents and domestic ungulates studied, while the parent sulphate could be demonstrated only in rat, dog, pig and cow. The plasma of lower mammals contained D in higher (0.8-10.9 microng/100 ml) and DS, if any, in lower level (1.5-5.7 microng/100 ml) than the human plasma samples (0.1-2.7 and 86-308 microng/100 ml, respectively). There was a more pronounced increase in D and A than in the DS and AS level in the rat and dog following administration of D. On the contrary, exogenous D hardly affected unconjugated D and appreciably enhanced the DS level in human plasma. The conclusion drawn for human subjects, that D is the metabolically active and DS the reserve hormone, does not seem to be valid for all the animals here studied.

Administration, Oral↗

Spironolactone metabolism in normal subjects and in patients with liver cirrhosis.

The dynamic excretion of aldadiene, the principal metabolite of spironolactone with biological activity, was studied in normal subjects and patients with liver cirrhosis following administration of spironolactone. Aldadiene appeared in the three-days urine collection in around 3% of the dose. There was no significant difference in the biological half-life, calculated from the urinary pattern, and in the rate of excretion in patients with hepatopathy and hospitalized controls. Healthy volunteers without hospitalization exhibited the most rapid elimination of the metabolite. An increase of spironolactone dose enhanced the per cent rate of aldadiene excretion, while the biological half-life did not change. Spironolactone decreased the rate of dehydroepiandrosterone and androsterone excretion even after a single dose. Determination of total 17-ketosteroids is of no value on evaluation of adrenal function during spironolactone therapy, due to a Zimmermann-positivity of spironolactone metabolites.

Administration, Oral↗

Dehydroepiandrosterone concentration in adipose tissue of normal and overweight subjects.

Unconjugated dehydroepiandrosterone has been isolated from human abdominal adipose tissue and identified by double isotope derivatization and recrystallization to constant isotope ratio. Gas chromatography with electron capture detection revealed an actual dehydroepiandrosterone concentration between 0.32 to 2.82 mug/g in adipose tissue of normal and overweight subjects. The approximate dehydroepiandrosterone content of the total adipose tissue mass varied between 30 and 173 mg in subjects with severe obesity.

Adipose Tissue↗

Testosterone in human urine as determined by gas-liquid chromatography.

A simple and accurate gas chromatographic method for the determination of testosterone in human urine is described. Radioactive testosterone was added to samples to correct methodological loss. A mild acid hydrolysis under protection of benzene layer gave a single estimate of testosterone glucuronate and sulphate. Paper chromatography and rechromatography on chromatoplate served for preliminary qurification. Testosterone was gas chromatographed as acetate and guantitated by the internal standard procedure and flame ionization detector. Results of control experiments, normal values for female and male subjects and estimations in patients with alterations of androgen hormone metabolism are presented.

Adolescent↗

A simple gas-liquid chromatographic method with electron capture detection for the determination of progesterone in the blood of humans and domestic animals.

A simple routine method is reported for the determination of progesterone in blood by gas-liquid chromatography. An unlabelled internal standard, testosterone acetate, was added to plasma samples. Following preliminary purification by thin-layer chromatography, progesterone in pregnancy plasma was evaluated as the free steroid with a flame ionization detector. The hormone in the plasma of women during the menstrual cycle and of cycling domestic animals was determined as the 3-enol ester heptafluorobutyrate by electron capture detection. The validity of testosterone acetate as an internal standard was proved by simultaneous processing of [7alpha-3H]progesterone and a [4-14C]testosterone acetate and the determination of the isotope ratio in samples. The results of control experiments and normal values are also presented.

Animals↗