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首页> 外文期刊>Tetrahedron >New approaches toward the synthesis of (D-homo) steroid skeletons using Mukaiyama reactions
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New approaches toward the synthesis of (D-homo) steroid skeletons using Mukaiyama reactions

机译:使用Mukaiyama反应合成(D-homo)类固醇骨架的新方法

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摘要

New, short, and flexible procedures have been developed for syntheses of steroid and D-homo steroid skeletons. A Mukaiyama reaction between the silyl enol ether of 6-methoxytetralone and 2-methyl-2-cyclopentenone or carvone, with transfer of the silyl group to the receiving enone, gave a second silyl enol ether. Addition of a carbocation, generated under Lewis acid conditions from 3-methoxy-2-butenol, 3-ethoxy-3-phenyl-2-propenol or 3-methoxy-2-propenol to this second silyl enol ether gave adducts, which could not be cyclized by aldol condensation to (D-homo) steroid skeletons. The Mukaiyama-Michael reaction of the silyl enol ether of 6-methoxy tetralone with 2-methyl-2-cylopentenone gave a second silyl enol ether, which reacted in high yield with a carbocation generated from 3-hydroxy-3-(4-methoxyphenyl)propene. Ozonolysis of the double bond in this adduct gave a tricarbonyl compound (Zieglers triketone), which has been used before in the synthesis of 9, 11-dehydroestrone methyl ether. A second synthesis of C17 substituted CD-trans coupled (D-homo) steroid skeletons has been developed via addition of a carbocation, generated with ZnBr2 front a Torgov reagent, to a silyl enol ether containing ring D precursor. The obtained seco steroids have been cyclized under formation of the 8-14 bond by treatment with acid. The double bonds in one of the cyclized products have been reduced to a C17-substituted all trans steroid skeleton. (c) 2005 Elsevier Ltd. All rights reserved.
机译:已经开发了用于合成类固醇和D-均质类固醇骨架的新的,简短而灵活的程序。在6-甲氧基四氢萘酮的甲硅烷基烯醇醚和2-甲基-2-环戊烯酮或香芹酮之间的Mukaiyama反应,将甲硅烷基基团转移到接收的烯酮上,得到第二种甲硅烷基烯醇醚。在路易斯酸条件下,由3-甲氧基-2-丁烯醇,3-乙氧基-3-苯基-2-丙烯醇或3-甲氧基-2-丙烯醇生成的碳正离子加成到第二种甲硅烷基烯醇醚中,不能得到加合物。通过醛醇缩合环化成(D-均质)类固醇骨架而被环化。 6-甲氧基四氢萘酮的甲硅烷基烯醇醚与2-甲基-2-Cylopentenone的Mukaiyama-Michael反应产生了第二种甲硅烷基烯醇醚,其与3-羟基-3-(4-甲氧基苯基)生成的碳正离子高产率反应丙烯。该加合物中双键的臭氧分解得到三羰基化合物(Zieglers triketone),该化合物已用于合成9,11-脱氢雌酮甲基醚。通过向含甲硅烷基烯醇醚的环D前体中添加由ZnBr2生成的碳正离子,开发了C17取代的CD-反式偶联的(D-homo)类固醇骨架的第二种合成方法。通过用酸处理,在形成8-14键的条件下将获得的山高甾体类环化。环化产物之一中的双键已还原为C17取代的全反式甾体骨架。 (c)2005 Elsevier Ltd.保留所有权利。

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