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At least 19 recordsLinked to original sources

Stability of corticosteroids under anaerobic conditions. VII. 17a-hydroxy-17a-hydroxymethyl-17-keto-D-homosteroid phosphate.

The major decomposition product of prednisolone phosphate formed under anaerobic decomposition conditions in aqueous solution at pH = 8.3 is identified as 17a-hydroxy-17a-hydroxymethyl-17-keto-D-homosteroid phosphate. The chromatographic properties, the isolation and the structure elucidation of both the D-homosteroid phosphate and its specific dephosphorylated analogue are given. Finally a mechanism leading to the D-homosteroid phosphate is postulated.

Alkaline Phosphatase↗

Synthesis of novel steroid-tetrahydroquinoline hybrid molecules and D-homosteroids by intramolecular cyclization reactions.

Steroidal aryliminium salts were prepared from D-seco-pregnene aldehyde 2b, and their BF3.OEt2-catalyzed reactions were studied. The nature of the substituent R1 in the anilines 3-6 essentially influenced the chemoselectivity. Using unsubstituted 3, 4-methoxy- (4) or 4-bromoaniline (5), different tetrahydroquinoline derivatives 7a-13a via intramolecular hetero Diels-Alder reaction were formed. In the case of 4-nitroaniline (6) the N-arylamino-D-homopregnane (14a) were also obtained. We assume, that an intramolecular Prins reaction led to this type of fluoro-D-homosteroid. The main products represent a new class of tetrahydroquinolino-androstenes.

Animals↗

A randomized trial on the D-homosteroid domoprednate (Ro 12-7024) in the treatment of dermatoses.

39 patients with bilateral dermatoses, mainly psoriasis vulgaris and atopic dermatitis, were treated with 0.1% Ro 12-7024 ointment and 0.1% betamethasone valerate ointment according to a double-blind, right-left, randomized design. Treatment lasted up to 4 weeks. 5 patients did not complete the trial. Assessment of efficacy, expressed as degree of healing in percent of treated skin area and according to an overall assessment of efficacy made by both physician and patient only revealed marginal, mostly statistically insignificant differences, with a trend in favor of betamethasone. Patients' preferences for one of the two treatments favored betamethasone valerate in 17 cases and Ro 12-7024 in 5 cases; 13 cases were ties (p less than 0.001). With the exception of one case of bilateral erythema and itching no side effects were reported. The efficacy of the D-homosteroid Ro 12-7024 is evidently of the same order as that of the group III steroid betamethasone valerate, and the tolerance of the two ointments is good and equal.

Adolescent↗

Sterol biosynthesis: strong inhibition of maize delta 5,7-sterol delta 7-reductase by novel 6-aza-B-homosteroids and other analogs of a presumptive carbocationic intermediate of the reduction reaction.

A series of mono- and diazasteroids have been synthesized as analogs of a predicted carbocationic intermediate of delta 5,7-sterol delta 7-reductase (delta 7-SR). 6-Aza-B-homo-5 alpha-cholest-7-en-3 beta-ol (4), a novel compound whose synthesis is described for the first time, and 6,7-diaza-5 alpha-cholest-8(14)-en-3 beta-ol (6) were shown to be very powerful inhibitors of delta 7-SR in a preparation isolated from maize (Zea mays) (K(i),app = 50-70 nM, Ki,app/Km,app = 1.0 x 10(-4) to 1.3 x 10(-4). The data are consistent with a carbonium ion mechanism for the reduction; compounds 4 and 6 probably act as reaction intermediate analogs. Compound 4, in contrast to compound 6, displayed in the same microsomal preparation more than 50-fold selectivity for inhibition of the delta 7-SR versus delta 8-delta 7-sterol isomerase, cycloeucalenol isomerase, and delta 8,14-sterol delta 14-reductase, the mechanism of these four enzymes involving presumptive cationic intermediates centered respectively at C7, C8, C9, and C14. These observations highlight the paramount importance of the location of the positively charged nitrogen atom(s) in the B-ring structure for selectivity among these enzymes involving structurally close cationic reaction intermediates. Efficient in vivo inhibition of sterol biosynthesis in bramble cell suspension cultures by a low concentration of compound 4 was demonstrated and confirmed the in vitro properties of this derivative.)

Azasteroids↗

Clinical analysis on steroids. XII. Occurrence of D-homoannulation during the hot acid hydrolysis of 5 beta-pregnane-3 alpha, 20 alpha-diol disulfate.

Two D-homosteroids were isolated from the hydrolyzate of 5 beta-pregnane -3 alpha, 20 alpha-diol disulfate (II) when it was refluxed in 3N hydrochloric acid. The structures of these steroids have been elucidated as 17 alpha-methyl-D-homo-5 beta-androstane-3 alpha, 17a beta-diol (VI) and 17 alpha-methyl-17a beta-chloro-D-homo-5 beta-androstan-3 alpha-ol (VIII) by instrumental analyses. The former was identical with a synthetic specimen derived from 5 beta-pregnane-3 alpha, 20 beta-diol disulfate (IV) by uranediol rearrangement. The main hydrolyzates obtained were 17 alpha-ethyl-17 beta-methyl-18-nor-5 beta-androst-13-en-3 alpha-ol (V) and 5 beta-pregnane-3 alpha, 20 alpha-diol (III).

Androstane-3,17-diol↗