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The in vitro metabolism in man of two 16-androstene steroids, 5alpha-16-androsten-3-one and 5alpha-16-androsten-3alpha-ol, has been studied using 3H-labelled tracers. 4 healthy subjects (2 of each sex) were chosen, and each labelled steroid was administered, by a single injection, to 1 man and 1 woman. Disappearance of (3H)-3alpha-androstenol in the subjects receiving this compound followed a curve which indicated a two-pool distribution in both cases; metabolic clearance rates for these subjects were found to be 3,790 1/24 h in the man and 3,120 1/24 h in the woman. Blood production rates calculated for the 3alpha-androstenol-treated subjects were 875 microgram/24 h in the man and 1,780 microgram/24 h in the woman. Recovery of 3H in the urine of all 4 subjects was very low, between 28 and 42%. Conversion of the injected precursors to urinary 3alpha-androstenol was 13.5 and 12.7% in the 2 men and 6.1 and 5.9% in the 2 women. The male subjects were found to have a lower 24-hour urinary 3alpha-androstenol output (570 and 387 microgram/24 h) than the average for men of their age. The urinary 3alpha-androstenol output in the women was 225 and 276 microgram/24 h, and was within the normal range for women. The urine production rates of 3alpha-androstenol were 2,470 and 4,090 microgram/24 h in the male and female subjects, respectively; the difference between the blood and urine production rates of this compound are thought to indicate the direct secretion of conjugates. Urine production rates of 5alpha-androstenone (measured as 3alpha-androstenol) were 2,370 and 4,340 microgram/24 h in the male and female subjects, respectively.  相似文献   

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S L Dale  J C Melby 《Steroids》1973,21(5):617-632
Incubations of 1,2-3H-18-hydroxydeoxycorticosterone with human adrenal glands resulted in conversion to a more highly hydroxylated material in addition to other material. By derivative formation, gas chromatography — mass spectrometry, and nuclear magnetic resonance spectroscopy, the structure of this material was shown to be 16α, 18-dihydroxydeoxycorticosterone. Possible biological activity of this compound is discussed.  相似文献   

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We present a method for the analysis of urinary 16(5alpha)-androsten-3alpha-ol together with 5beta-pregnane-3alpha,20alpha-diol and four testosterone metabolites: androsterone (Andro), etiocholanolone (Etio), 5alpha-androstane-3alpha,17beta-diol (5alphaA), 5beta-androstane-3alpha,17beta-diol (5betaA) by means of gas chromatography/combustion/isotopic ratio mass spectrometry (GC/C/IRMS). The within-assay and between-assay precision S.D.s of the investigated steroids were lower than 0.3 and 0.6 per thousand, respectively. A comparative study on a population composed of 20 subjects has shown that the differences of the intra-individual delta(13)C-values for 16(5alpha)-androsten-3alpha-ol and 5beta-pregnane-3alpha,20alpha-diol are less than 0.9 per thousand. Thereafter, the method has been applied in the frame of an excretion study following oral ingestion of 50 mg DHEA initially and oral ingestion of 50mg pregnenolone 48 h later. Our findings show that administration of DHEA does not affect the isotopic ratio values of 16(5alpha)-androsten-3alpha-ol and 5beta-pregnane-3alpha,20alpha-diol, whereas the isotopic ratio values of 5beta-pregnane-3alpha,20alpha-diol vary by more 5 per thousand upon ingestion of pregnenolone. We have observed delta(13)C-value changes lower than 1 per thousand for 16(5alpha)-androsten-3alpha-ol, though pregnenolone is a precursor of the 16-ene steroids. In contrast to 5beta-pregnane-3alpha,20alpha-diol, the 16-ene steroid may be used as an endogenous reference compound when pregnenolone is administered.  相似文献   

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M Numazawa  A Mutsumi  M Ogata  Y Osawa 《Steroids》1987,49(4-5):247-257
3 beta,16 alpha,19-Trihydroxy-5-androsten-17-one and 16 alpha,17-dihydroxy-4-androstene-3,17-dione were synthesized from the 5 alpha-bromo-6 beta,19-epoxy-17-ketone derivative 1, using the bromination at C-16 alpha of the 17-ketone 1 and the controlled alkaline hydrolysis of the 16 alpha-bromo-17-ketones 2 and 11 as key reactions. Zinc dust reductive cleavage of the 6 beta,19-epoxy-16 alpha-hydroxy-17-ketones 4 and 12, produced by controlled hydrolysis, gave the corresponding 19-alcohol derivatives 6 and 14, which were rearranged to the 17 beta-hydroxy-16-ketones 7 and 15 when treated with sodium hydroxide. The 3 beta,16 alpha,17 beta,19-tetrol 8 was obtained from the 16 alpha-ketol 6 by reaction with sodium borohydride.  相似文献   

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