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首页> 外文期刊>Research on Chemical Intermediates >Facile new industrial process for synthesis of teneligliptin through new intermediates and its optimization with control of impurities
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Facile new industrial process for synthesis of teneligliptin through new intermediates and its optimization with control of impurities

机译:通过新中间体合成Teneligliptin及其对杂质的优化的构成新工业工艺

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The present study is related to a commercially practicable new synthetic process for production of teneligliptin hydrobromide hydrate (1), a dipeptidyl peptidase-4 (DPP-4) inhibitor. Key strategies in the new process include preparation and isolation of new intermediates such as a better reactive nosyl derivative (3c) of l-proline methyl ester (2), its stereoselective substituted intermediate (5) with 1-(3-methyl-1-phenyl-1H-pyrazol-5-yl)piperazine (4) through S(N)2-type nucleophilic substitution, and isolation of carboxylic acid derivative 6 by deesterification of intermediate 5. The reaction conditions for preparation of new intermediates, and the additionally used coupling reaction for amidation and deprotection of N-Boc were optimized with control of impurities to improve the quality of drug molecule 1 with good yield. The developed synthetic strategy offers significant advantages over existing synthetic approaches, avoiding use of expensive reagents, long time consumption, and laborious procedures involving isolation of intermediates. The developed process for drug molecule 1, achieving overall yield of 37-39% over six sequential chemical transformations, enables rapid delivery of multi-kilogram quantities of the desired active pharmaceutical ingredient (API), meeting stringent purity requirements.
机译:本研究与商业上切实可行的新型合成方法有关,用于生产Teneligliplin氢溴酸盐水合物(1),二肽基肽酶-4(DPP-4)抑制剂。新方法中的关键策略包括制备和分离新的中间体,例如L-脯氨酸甲酯(2)的更好的反应性乳氧基衍生物(3c),其立体选择取代的中间体(5),其中1-(3-甲基-1-苯基-1H-吡唑-5-基)哌嗪(4)通过S(n)2型亲核取代,并通过中间体的脱酯分离羧酸衍生物6.制备新中间体的反应条件和另外的反应条件用杂质的控制优化了对N-BOC的酰胺化和脱保护的使用偶联反应,以提高药物分子1的质量。开发的合成策略提供了与现有的合成方法相比具有显着的优势,避免使用昂贵的试剂,长时间消耗和涉及分离中间体的少数费用。药物分子1的发达方法,在六种顺序化学转化中实现了37-39%的总产率,能够快速递送多千克数量所需的活性药物成分(API),满足严格的纯度要求。

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