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Alcohol Dehydrogenases as Tools for the Preparation of Enantiopure Metabolites of Drugs with Methyl Alkyl Ketone Moiety

机译:酒精脱氢酶作为制备甲基烷基酮部分药物对映体纯净代谢产物的工具

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摘要

Three dehydrogenases - (R)-alcohol dehydrogenase from L. kefir, (S)-aromatic alcohol dehydrogenase from T. sp. and fSj-alcohol dehydrogenase from T. brockii - were tested for the preparation of enantiopure hydroxyl metabolites of pentoxifylline (PTX), propentofylline (PPT) and denbufylline (DBF). These metabolites have an important pharmacological significance. The experimental conditions were optimized for biocatalytic reactions. LKADH produced the chirai secondary alcohols: (R)-OHPTX, (R)-OHPPT and (R)-OHDBF, in an anti-Prelog's rule configuration. In contrast, TBADH and SAADH also generated chiral secondary alcohols, but according to Prelog's rule, giving (S)-OHPTX, (S)-OHPPT and (S)-OHDBF respectively. All the ADHs tested were characterized by a high enantioselectivity (ees of 99-100%), but the yield of bioconversion was only satisfactory for the reactions performed using LKADH, being in the 96-98% range for PPT and PTX respectively.
机译:三种脱氢酶-L.kefir的(R)-醇脱氢酶,T。sp。的(S)-芳族醇脱氢酶。测试了来自T. brockii和fSj的乙醇脱氢酶的制备,以制备己酮可可碱(PTX),丙戊茶碱(PPT)和denbufylline(DBF)的对映纯羟基代谢产物。这些代谢物具有重要的药理学意义。针对生物催化反应优化了实验条件。 LKADH以反Prelog的规则构型生产了chirai仲醇:(R)-OHPTX,(R)-OHPPT和(R)-OHDBF。相反,TBADH和SAADH也产生手性仲醇,但是根据Prelog的规则,分别得到(S)-OHPTX,(S)-OHPPT和(S)-OHDBF。所有测试的ADH均具有高对映选择性(99-100%的对映体),但生物转化的收率仅对使用LKADH进行的反应令人满意,PPT和PTX分别在96-98%的范围内。

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