首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Asymmetric Reduction of N-[4-(2-Bromoacetyl)phenyl]methanesulfonamide by Employing Candida viswanathii MTCC 5158
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Asymmetric Reduction of N-[4-(2-Bromoacetyl)phenyl]methanesulfonamide by Employing Candida viswanathii MTCC 5158

机译:通过使用假丝酵母念珠菌MTCC 5158不对称还原N- [4-(2-溴乙酰基)苯基]甲磺酰胺

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Enantioselective synthesis of chiral drugs by chemoenzymatic processes have attracted attention in which the crucial stereogenic step involves an enzymatic reaction by virtue of chemo-, regio- and enantio- selectivity and eco-friendly nature of biocatalysis, (S)-sotalol a β-biocker. belongs to class-Ill antiarrhythmic agents. To avoid the side effects of racemic sotalol, efforts have been put forward to synthesize a key intermediate for the synthesis of (S)-enantiomer of sotalol, which is more potent than the (R)-enantiomer. The aryl ketone, N-(4-acetyl-phenyl) mefhanesulfonamide was synthesized from the initial substrate 4-aminoacetophenone. Further, the bromination of aryl ketone was carried out to obtain N-(4-(2-bromo-acetyl)-phenylj-methanesulfonamide. The chemical reduction as well as biological reduction of aryl ketone was carried out to obtain a racemate alcohol N [4-(2-bromo-l -hydroxy-ethyl) (4-methanesulfonamide)]ethanol and chiral (S)-N-(2-bromo-1-hydroxy-ethyl)(4-methanesulfonamide)]ethanol, respectively. (S)-N-[-4-(2-bromo-1-hydroxy-ethyl)(4- methanesulfonamide)]ethanol is a key intermediate for the synthesis of (S)-sotalol. The biological reduction was carried out by using whole cells and found that 96 % conversion was obtained at 12th h of reaction after that the percentage conversion decreased.
机译:通过化学酶促方法进行手性药物的对映选择性合成已引起人们的关注,其中关键的立体生成步骤涉及化学,区域和对映体选择性以及生物催化的生态友好性质(S)-索他洛尔-β-biocker的酶促反应。 。属于III类抗心律不齐药物。为了避免外消旋的索他洛尔的副作用,已经做出努力来合成用于合成索他洛尔的(S)-对映异构体的关键中间体,该中间体比(R)-对映异构体更有效。从初始底物4-氨基苯乙酮合成了芳基酮N-(4-乙酰基苯基)甲磺酸磺酰胺。进而,对芳基酮进行溴化,得到N-(4-(2-溴-乙酰基)-苯基j-甲磺酰胺,对芳基酮进行化学还原和生物还原,得到外消旋醇N [ (4-(2-溴-1-羟基-乙基)(4-甲磺酰胺)]乙醇和手性(S)-N-(2-溴-1-羟基-乙基)(4-甲磺酰胺)]乙醇。 S)-N-[-4-(2-溴-1-羟基-乙基)(4-甲磺酰胺)]乙醇是合成(S)-索他洛尔的关键中间体,通过全氟辛烷磺酸进行生物还原细胞并发现在反应的第12小时转化率降低了96%。

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