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1.
A method was developed for quantitative determination of 5α,7α-dihydroxy-11-ketotetranor-prostane-1,16-dioic acid, the major urinary metabolite of prostaglandins F and F in man. The method was based on the use of the O-methyloxime derivative of [5β-3H; 10,10,12,12-2H4]5α,7α-dihydroxy-11-ketotetranor-prostane-1,16-dioic acid as internal standard and determination of ratios between unlabeled and deuterium-labeled molecules by multiple-ion analysis. Excretion values found for healthy human subjects were: males, 10.8–59.0 μg24 hr (n = 10, mean value, 24.0 ± 17.2 (SD) μg) and females, 7.6–13.6 μg24 hr (n = 10, mean value, 10.5 ± 2.1 (SD) μg).  相似文献   

2.
A Z Mehdi  T Sandor 《Steroids》1974,24(2):151-163
Incubations of whole homogenates of. the tiju lizard (Tupinambis sp.) adrenals tissue were carried out using 14C-labelled progesterone1*, pregnenolone and cholesterol. 14C-progesterone was metabolized to labelled 18-hydroxycorticosterone, aldosterone, corticosterone and 11-deoxycorticosterone. Identical metabolites plus 14C-progesterone were obtained from pregnenolone. Cholesterol-4-14C was transformed into products similar to those obtained from progesterone. In all these studies the elaboration of cortisol or any other 17-hydroxylated steroids could not be demonstrated. In another set of experiments, whole homogenate preparations from adrenals of the green lizard (lacerta viridis) were incubated with 14C-labelled androstenedione and testosterone. Ahdrostenedione was converted to testosterone and 11β-hydroxyandrostenedione. Testosterone was metabolized to 11β-hydroxyandrostenedione and androstenedione. The results indicate that the in vitro transformation of C-27 or C-21 radioactive substrate by lizard adrenals is similar to the other reptiles studied. However, it appears to possess 17β-hydroxysteroid oxido-reductase, though the adrenal tissue itself lacks 17α-hydroxylase activity.  相似文献   

3.
C W Martin  H J Nicholas 《Steroids》1973,21(5):633-646
The subcellular localization of 3α-hydroxysteroid dehydrogenase, the dependency of the rate of reaction on time, concentration of protein, cofactor requirements and the substrate stereospecificity were investigated in the adult rat brain. The in vitro conversion of 3-keto-5β-cholanoic-24-14C acid to lithocholic acid was shown to occur in the cytosol without added cofactors. Incubation of 14C labeled 3α,7α-dihydroxy-5β-cholanoic and 3α,12α-dihydroxy-5β-cholanoic acids with adult rat brain cell-free preparations resulted in the production of less polar metabolites identified as 3-keto-7α-hydroxy-5β-cholanoic and 3-keto-12α-hydroxy-5β-cholanoic acids by TLC, GLC combined with a radioactive monitoring detection system and by cocrystallization to constant specific activity.  相似文献   

4.
A series of 12α-hydroxy steroids with varying side chains was prepared, and their 24-hour acetylation yields were compared, l2α-Hydroxy-5β-pregnan-20-one (lb) was prepared from 3α, 12α-diacetoxy-5β~pregnan-20-one (2) and also by side chain degradation of 12α-acetoxy-5β-cholanoic acid (5d). 21-Benzyl-5β-pregnan-12α-ol (1g) was synthesized by hydrogenation of the 21-benzylidine derivative of ketone 1b. 23-Pheny1-5β-norcholan-12α-ol (1k) was obtained by the Grignard reaction of 2-phenyl-ethylmagnesium bromide and ketone 1b, dehydration, hydrogenation and hydride reduction; a similar sequence produced 20-methyl-5β-pregnan-12α-ol (lm). The acetylation results (Table 11) imply that branching at C-20 may be more significant for 12α-hydroxyl reactivity than side chain length or type. An additional compound with an unbranched side chain, 21-nor-5β-cholan-12α-ol (14), was synthesized by a Grignard reaction on the 21-bromo intermediate 11b. Acetylation rates determined by glc indicate (Table 111) That compounds with unbranched side chains have 12α-hydroxyl groups about ten times as reactive as their analogs with 20-methyl groups.  相似文献   

5.
Sertoli cells from 17 day old rats convert progesterone to 20α-hydroxy-pregn-4-en-3-one and pregnenolone to 3β,20α-dihydroxy-5α-pregnane after 72 hours in vitro. The metabolites were identified by several systems of thin layer and gas chromatography, derivative formation and crystallization with authentic steroids. The production of 20α-hydroxy-pregn-4-en-3-one and 3β,20α-dihydroxy-5α-pregnane amounted to 1380 and 740 pmoles/h/mg protein which can account for the total amounts of these steroids reported in the testis. It is the first direct evidence that Sertoli cells can metabolize progesterone and pregnenolone and suggests that Sertoli cells contain the major, if not the only, amounts of 20α-hydroxysteroid dehydrogenase in the immature rat testis.  相似文献   

6.
The ability of bovine liver and fat to metabolize progesterone and also to form glucuronide conjugates with these progestins in vitro was investigated. Tissue supernatants were incubated with [4-14C] progesterone, UDP-glucuronic acid, and a NADPH generating system for 5 hr, at 37°C. Steroids were identified by thin-layer chromatography, high performance liquid chromatography, and recrystallization to a constant specific activity. The total original radioactivity which could not be removed by exhaustive ether extraction (presumptive conjugates) was 44.7 ± 14.2% in liver, 5.0 ± 3.6% in subcutaneous fat, and 3.7 ± 2.2% in kidney fat samples. Progestins identified in liver samples include 5β-pregnane-3α, 20α-diol (free and conjugate), 5β-pregnane-3α, 20β-diol (free and conjugate), 3α-hydroxy-5sB-pregnan-20-one (free and conjugate), 3β-hydroxy-5β-pregnan-20-one (free), 5β-pregnane-3, 20-dione (free), and progesterone (conjugate). Progestins identified in both the free and conjugate fractions of subcutaneous fat and kidney fat samples include progesterone, 3α-hydroxy-5β-pregnan-20-one, 20β-hydroxy-4-pregnen-3-one, and 20α-hydroxy-4-pregnen-3-one. Differences due to sex of bovine used were noted. These results confirm the ability of bovine liver to readily metabolize progesterone and form glucuronide conjugates of these compounds and suggest that adipose tissues take an active role in these actions in cattle.  相似文献   

7.
Testicular steroidogenesis in rams was examined by constant infusion (3 hr) of [1-14C]-acetate into the testicular artery of four conscious standing animals.The following steroids (in order of decreasing levels of [14C] labeling) were secreted by the testis and found in testicular tissue: testosterone, dehydroepiandrosterone, 3β-hydroxy-5-androsten-17-one, androstenediol, 5-androsten-3β,17β-diol and 17-hydroxy-4-pregnene-3,20-dione. In addition, [14C] labeling of 17,20α-dihydroxy-4-pregnen-3-one occurred in testicular tissue but not in blood. This in vivo system with the conscious standing ram demonstrated an operative Δ5 steroidal pathway to testosterone. The physiological significance of 17,20α-dihydroxy-4-pregnen-3-one is not yet explained in this species.  相似文献   

8.
The metabolism of the prostaglandin F analogues, 15-methyl-Δ4-cis-PGF and 16,16-dimethyl-Δ4-cis-PGF, has been investigated in the cynomolgus monkey and the human female. The two analogues, tritium labelled in the 9β-position, were administered by intramuscular injections into the monkeys and by subcutaneous injections into the human. Excretion of tritium labelled products were followed in urine (in both species) and feces (in monkeys only) and several metabolites were identified by GC/MS. The analogues were found to be resistant to the 15-hydroxy dehydrogenase and furthermore the degradation by β-oxidation was delayed. About 13% of the given dose of 15-methyl-Δ4-cis-PGF was excreted unchanged into urine and feces from the monkey. The corresponding figure for 16,16-dimethyl-Δ4-cis-PGF was about 20%. In addition, a large part of the metabolites had the carbon skeleton intact and were only metabolized by ω-oxidation. The relative resistance to degradation of these two analogues is likely to be the basis for their prolonged pharmacological activity.  相似文献   

9.
These studies were undertaken to determine the principal pathway of androgen biosynthesis by the testis of the marmoset Saguinus oedipus. Testicular fragments (25 mg) were incubated at 37°C in Krebs-Ringer bicarbonate buffer, pH 7.4, containing pregnenolone-7-3H (3β-hydroxy-5-pregnen-20-one) or progesterone-7-3H. Duplicate fragments were incubated with each substrate for 30 min, one hr, three hr, or five hr, for a total of 16 separate incubations. Metabolites were separated by paper and thin-layer chromatography, with identity established by recrystallization to constant specific activities and 3H/14C ratios. Pregnenolone was readily metabolized to progesterone, 17α-hydroxyprogesterone, androstenedione (4-androstene-3, 17-dione) and testosterone. Progesterone was converted to 17α-hydroxyprogesterone, androstenedione and testosterone. 17α-hydroxyprogesterone was the predominant metabolite obtained from both substrates at one, three and five hrs of incubation. Neither 17α-hydroxypregnenolone (3β-17-dihydroxy-5-pregnen-20-one) nor dehydroepiandrosterone (3β-hydroxy-5-androsten17-one) was detected in the incubates. These data suggest a predominant Δ4 pathway with accumulation of 17α-hydroxyprogesterone in the testis of this primate specie.  相似文献   

10.
I Huhtaniemi 《Steroids》1973,21(4):511-519
In order to study further the metabolism of neutral steroids in human fetal adrenal and liver tissue the fractions of unconjugated neutral steroids isolated from these tissues were analyzed by gas-liquid chromatography and gas chromatography — mass spectrometry. In the adrenals, pregnenolone and 17-hydroxypregnenolone, but no corticoids, were detected. In the liver, pregnenolone, 3α-hydroxy-5β-pregnan-20-one, 5β-pregnane-3α, 20α-diol and 3β, 16α-dihydroxy-5β-pregnan-20-one were found. Thus, all the free steroids detected were C21 compounds. From these results and those obtained earlier by the analysis of the sulfate-conjugated steroids present in these tissues it is concluded that in the fetal adrenals in situ both sulfated and unconjugated steroids are actively metabolized. Regarding the liver it is obvious that the conjugated metabolites of progesterone are rapidly eliminated from this tissue. Here, pregnenolone is present both in the free and sulfate conjugated form, whereas its metabolites are found only as sulfate conjugates.  相似文献   

11.
Samuel A. Sholl 《Steroids》1981,38(2):221-228
C17–20Lyase and 21-hydroxylase activities were measured during late gestation In the rhesus monkey (Macaca mulatta) fetal adrenal. Activities were assessed in 10,000 × g supernatants with 17-hydroxyprogesterone and NADPH as substrates. Although conversion of [14C]17-hydroxyprogesterone to [14C]androstenedione was noted, activity was often nonlinear and far less than the rate of hydroxylation which together prevented an accurate estimation of lyase rate, Km and Vmax. 21-Hydroxylase activity was characterized; the mean reaction rate was 1.6 × 10?3 μmoles NADPH oxidized/min. × mg?1 protein with an apparent Km of 3.6 × 10?7 M and a Vmax of 2.2 × 10?3 μmoles/min. × mg?1 protein. These values were similar to data obtained In adrenals from adult monkeys. A relatively high level of hydroxylase activity in the fetal gland might lead to an Inadequate supply of precursors for the synthesis of dehydroepiandrosterone sulfate (DHEAS) in the adrenal if it also contained 3β-hydroxysteroid dehydrogenase (3β-hsdh). However, the fact that the fetal adrenal reportedly is deficient in 3β-hsdh may serve to protect both DHEAS and corticoid synthesis.  相似文献   

12.
A goat antibody produced against homogeneous bovine adrenal ferrodoxin has been employed to study the involvement of this iron-sulfur protein in the side-chain cleavage of 20α-hydroxycholesterol catalyzed by a soluble fraction, supernatant S1, prepared from sonicated bovine adrenocortical mitochondria. When added to this supernatant, the antibody inhibited the side-chain cleavage of 20α-hydroxycholesterol as well as the side-chain cleavage of cholesterol, the 11β-hydroxylation of deoxycorticosterone, and the NADPH-dependent reduction of cytochrome c. These results demonstrate that, similar to the NADPH-cytochrome c reductase and both the cholesterol side-chain cleavage and steroid 11β-hydroxylase reactions, adrenal ferredoxin is also required for the side-chain cleavage of 20α-hydroxycholesterol.  相似文献   

13.
(22S)-[22-3H1]-Cholesterol was incubated with an adrenocortical preparation and the isolated (22R)-[22-3H1]-22-hydroxycholesterol had a small loss of radioactivity, proving that direct replacement of the hydrogen from the now hydroxylated position occurred.In addition [1-3H1]-4-methylpentanol was isolated, which also had incurred a relatively small loss of its specific activity, thereby excluding (20R)-3β,20-dihydroxycholest-5-en-22-one as an important metabolite in the degradation of cholesterol to pregnenolone by adrenal tissue.  相似文献   

14.
Incorporation of 20% tyramine residues into its structure greatly increased the rate of pinocytosis of poly(α,β-(N-2-hydroxyethyl))-DL-aspartamide (PHEA) by rat visceral yolk sacs cultured in vitro. Both the parent macromolecule and the tyramine derivative (PHEA-tyramine) were captured by adsorptive pinocytosis, the higher affinity of the derivative for the yolk sac plasma membrane being responsible for its greater rate of capture. Using 125I-labelled PHEA-tyramine, the relationship between substrate concentration and rate of capture was determined, it was also shown that following internalization, the PHEA-tyramine linkage is resistant to intracellular hydrolysis. Fluorescence micrographs were consistent with capture of both substrates being by pinocytosis and illustrated the highly efficient concentration of the tyramine derivative by yolk sac endodermal cells.  相似文献   

15.
The syntheses of (±) 2α,6β-diethyl-7α-ethynyl-3α-(p-hydroxyphenyl)-trans-bicyclo[4.3.0]nonan-7β-ol (8), (±)2β,6β-diethyl-7α-ethynyl-3β-(p-methoxyphenyl)-trans-bicyclo[4.3.0]nonan-7β-ol (12) and (±) 2α,6β-diethyl-7α-ethynyl-3β-(p-hydroxyphenyl)-trans-bicyclo[4.3.0]nonan-7β-ol (18) and their derivatives, which are essentially B-seco-steroids having cis-anti-trans, cis-syn-trans and trans-anti-trans geometries have been carried out. A study of their antiimplantation activities (AI) and receptor binding affinities (RBA) show that trans-anti-trans compounds are biologically most potent, followed by the corresponding cis-anti-trans and cis-syn-trans compounds. The most potent compound 18 is active at 1 mg/kg in rats. Introduction of 7α-ethynyl group increases their AI activity; however, no significant effect on their RBA is observed.  相似文献   

16.
Placental homogenates from guinea-pigs at 16, 20, 35 and 55 days gestation were incubated with 7α-3H-dehydroepiandrosterone and 4-14C-androstenedione and analyzed for conversion products by reverse isotope dilution methods. 14C-3α-Hydroxy-5α-androstan-17-one, 14C-androstane-3α, 17β-diol and 3Handrost-5-ene-3β, 17β-diol were isolated from homogenates incubated with substrates for 2 hours. 3H, 14C-Testosterone was isolated from preparations incubated for 15 minutes or with high substrate: tissue ratios. Androst-4-ene-3, 17-dione, 5α-androstane-3, 17-dione, 5β-androstanedione derivative and C18 steroid formation could not be demonstrated. These results demonstrate the capacity of guinea-pig placentas to convert dehydroepiandrosterone and androstenedione to testosterone and to derivatives reduced in ring A (5α) and at carbon 17. The activity of the Δ5-3β-hydroxysteroid dehydrogenase enzyme system appears to have been rate limiting.Homogenates of adrenals from 44–55 day old fetuses converted 4-14C-pregnenolone to androst-4-ene-3, 17-dione and 6β- and 11β-hydroxyandrostenedione. A guineapig fetal-placental unit is postulated, with steroid metabolic characteristics different from the human unit. Both permit reduction of fetal adrenal cortisol production and placental removal of C19 steroids.  相似文献   

17.
The activity of cholesterol 7α-hydroxylase in rat liver microsomes was assayed by measuring the mass of 5-cholestene-3β, 7α-diol formed from endogenous cholesterol under standardized incubation conditions. After termination of incubations, a known amount of 5-[24,25,7β-2H3]cholestene-3β,7α-diol was added. A chloroform extract of the incubation mixture was subjected to thin layer chromatography and the fraction containing 5-cholestene-3β,7α-diol was converted into trimethylsilyl ether. The trimethylsilyl ether was subjected to combined gas chromatography-mass spectrometry and the amount of unlabeled 5-cholestene-3β,7α-diol in the mixture was calculated from the ratio between the relative intensitics of the peaks at me 456 (M-90) and me 459 [M-(90 + 3)]. The precision of the method was ±2.2% (SD). The results with this method of assay of cholesterol 7α-hydroxylase were compared with those obtained with a method based on conversion of a trace amount of added [4-14C]cholesterol into 5-cholestene-3β,7α-diol.  相似文献   

18.
A new polyhydroxysterol 1β,3β,5,6β-tetrahydroxy-5α-androstan-17-one (1) was isolated from the soft coral Sarcophyton glaucum. The structure of 1 was deduced from comparison of the spectral data with those of known 1β,3β,5α,6β-tetrahydroxysterols and confirmed by the synthesis starting from 1β,3β-dihydroxy-5,16-pregnadien-20-one (6a)  相似文献   

19.
A new steroid-like compound, Δ1-11-oxa-11-deoxycortisol, was tested in a one-week growth suppression, thymus suppression and adrenal weight suppression bioassay for possible glucocorticoid antagonist activity in vivo. We hypothesized that this compound would have antiglucocorticoid activity based on previous studies of 11-deoxycortisol and Δ1,9(11)-11-deoxycortisol, which were optimal glucocorticoid antagonists in vivo in adrenalectomized rats, but which lost antiglucocorticoid activity in intact animals, apparently due to adrenal 11β-hydroxylation. Thus, Δ1-11-oxa-11-deoxycortisol, a compound which cannot undergo llβ-hydroxylation, was synthesized and tested as an antiglucocorticoid. This analog had an affinity for the rat thymus glucocorticoid receptor similar to that of its parent compounds (Ki 0.9-3.1×10?7M). A dose of 1 mgrat antagonized the effect of 15μg of dexamethasone in the growth suppression assay (p<0.05) and in the thymus suppression assay (p<0.06), but did not antagonize dexamethasone-induced adrenal weight suppression. Δ1-11-oxa-11-deoxycortisol did not exhibit glucocorticoid activity in any of the three assays. These data suggest that Δ1-11-oxa-11-deoxycortisol may be a pure competitive antagonist of dexamethasone.  相似文献   

20.
The in vitro and in vivo metabolism of 1,2- 3H-progesterone was studied in estrogen-stimulated and control vaginae of ovariectomized mice. Employing two-dimensional thin-layer chromatography, gas-liquid chromatography and metabolite “trapping” techniques, the major and minor pathways for progesterone metabolism were determined in vitro and shown to involve saturation of the Δ4-double bond to yield 5α-pregnane compounds and reduction of the C20 and C3 ketone groups to form 20α- and 3α- and 3β-hydroxy derivatives, respectively. The quantities of 20β-hydroxy metabolites and 5β-epimers that were detected were considered not to be significant. The major metabolites formed by untreated tissues following in vitro incubation in the presence of both high (10?6M) and low (10?8M) progesterone concentrations were 3α-hydroxy-5α-pregnan-20-one and 5α-pregnane-3,20-dione. Although these two derivatives were also found in sizable quantities in estrogen-treated tissues, a marked increase (5-fold) in the rate of C20 ketone reduction at high progesterone concentrations (10?6M) to yield 20α-hydroxy-4-pregnen-3-one was demonstrated. Following intravaginal administration of 3H-progesterone in vivo, only progesterone and 3α-hydroxy-5α-pregnan-20-one were retained in appreciable quantities through 2 hr, suggesting rapid loss of 20α-hydroxy-4-pregnen-3-one and the 5α-pregnanediols from this tissue under in vivo conditions.  相似文献   

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