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开发 Venetoclax 的汇聚式大规模合成方法,Venetoclax 是一种首创的 BCL-2 选择性抑制剂。

Development of a Convergent Large-Scale Synthesis for Venetoclax, a First-in-Class BCL-2 Selective Inhibitor.

出版信息

J Org Chem. 2019 Apr 19;84(8):4814-4829. doi: 10.1021/acs.joc.8b02750. Epub 2019 Jan 25.

Abstract

The process development of a new synthetic route leading to an efficient and robust synthetic process for venetoclax (1: the active pharmaceutical ingredient (API) in Venclexta) is described. The redesigned synthesis features a Buchwald-Hartwig amination to construct the core ester 23c in a convergent fashion by connecting two key building blocks (4c and 26), which is then followed by a uniquely effective saponification reaction of 23c using anhydrous hydroxide generated in situ to obtain 2. Finally, the coupling of the penultimate core acid 2 with sulfonamide 3 furnishes drug substance 1 with consistently high quality. The challenges and solutions for the key Pd-catalyzed C-N cross-coupling will also be discussed in detail. The improved synthesis overcomes many of the initial scale-up challenges and was accomplished in 46% overall yield from 3,3-dimethyldicyclohexanone (6), more than doubling the overall yield of the first generation route. The new process was successfully implemented for producing large quantities of 1 with >99% area purity.

摘要

本文描述了一种新的合成路线的开发过程,该路线可用于 venetoclax(Venclexta 中的活性药物成分 (API))的高效、稳健的合成工艺。重新设计的合成方法采用 Buchwald-Hartwig 胺化反应,通过连接两个关键构建块(4c 和 26)以收敛方式构建核心酯 23c,然后通过使用原位生成的无水氢氧化物对 23c 进行独特有效的皂化反应,得到 2。最后,将前体核心酸 2 与磺酰胺 3 偶联,可得到始终具有高质量的药物物质 1。还将详细讨论关键 Pd 催化 C-N 交叉偶联的挑战和解决方案。改进的合成方法克服了许多初始放大挑战,并且从 3,3-二甲基二环己酮(6)以 46%的总收率得到 1,比第一代路线的总收率提高了一倍以上。新工艺成功地用于大量生产 1,其面积纯度>99%。

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