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[1.1.1]丙烷的自由基多组分碳酰胺化反应。

Radical Multicomponent Carboamination of [1.1.1]Propellane.

机构信息

Central Pharmaceutical Research Institute, Japan Tobacco Inc. , 1-1 Murasaki-cho, Takatsuki, Osaka 569-1125, Japan.

Elements Chemistry Laboratory, RIKEN , 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.

出版信息

J Am Chem Soc. 2017 Dec 13;139(49):17791-17794. doi: 10.1021/jacs.7b11865. Epub 2017 Nov 28.

Abstract

Three-dimensional, small-ring scaffolds are very important in modern drug discovery to expand the available drug-like chemical space and to optimize drug candidates. Among them, bicyclo[1.1.1]pentane (BCP) is regarded as a high-value bioisostere for a phenyl ring or tert-butyl group; it provides an option to generate drug-like molecules with good passive permeability, high aqueous solubility, and improved metabolic stability, though the lack of methodology to functionalize BCP remains a significant challenge. Here we present an efficient method, developed with the aid of density functional theory calculations, for the synthesis of multifunctionalized BCP derivatives by means of a radical multicomponent carboamination of [1.1.1]propellane. This reaction features mild conditions, one-pot operation, and gram-scale synthetic capability, and opens up a unique and highly efficient route for the synthesis of multifunctionalized BCP derivatives, including synthetically useful 3-substituted BCP-amines.

摘要

三维小环支架在现代药物发现中非常重要,可扩展可用的类药化学空间并优化候选药物。其中,双环[1.1.1]戊烷(BCP)被视为苯环或叔丁基的高价值生物等排体;它为生成具有良好被动渗透性、高水溶性和改善的代谢稳定性的类药分子提供了一种选择,尽管缺乏官能化 BCP 的方法仍是一个重大挑战。在这里,我们提出了一种高效的方法,借助密度泛函理论计算开发,通过[1.1.1]丙烷的自由基多组分碳氨化反应来合成多功能化的 BCP 衍生物。该反应具有条件温和、一锅操作和克级合成能力的特点,为多功能化 BCP 衍生物的合成开辟了一条独特且高效的途径,包括合成有用的 3-取代 BCP-胺。

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