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α-氘代伯胺的合成 通过 DO 作为氘源还原肟的氘代

Synthesis of α-Deuterated Primary Amines Reductive Deuteration of Oximes Using DO as a Deuterium Source.

机构信息

Department of Chemistry and Innovation Center of Pesticide Research, China Agricultural University, Beijing 100193, China.

Department of Chemistry, Rutgers University, 73 Warren Street, Newark, New Jersey 07102, United States.

出版信息

J Org Chem. 2021 Feb 5;86(3):2907-2916. doi: 10.1021/acs.joc.0c02829. Epub 2021 Jan 25.

Abstract

Selective introduction of the deuterium atom into the α-position of amines is important for the development of all types of novel deuterated drugs and agrochemicals due to the pervasive presence of amines. In this study, we report the first general single-electron-transfer reductive deuteration of both ketoximes and aldoximes using SmI as an electron donor and DO as a deuterium source for the synthesis of α-deuterated primary amines with excellent levels of deuterium incorporations (>95% [D]). This protocol exhibits excellent chemoselectivity and tolerates a variety of functional groups. The potential application of this new method was showcased in the synthesis of deuterated drugs, such as rimantadine-, the tebufenpyrad analogue, derivatives of nabumetone and pregnenolone, and a series of building blocks for the rapid and general assembly of deuterated drugs and pesticides.

摘要

由于胺类普遍存在,因此选择性地将氘原子引入胺的α-位对于开发各种新型氘代药物和农用化学品非常重要。在这项研究中,我们首次报道了使用 SmI 作为电子供体,DO 作为氘源,对酮肟和醛肟进行单电子转移还原氘代,以合成具有优异氘掺入水平(>95%[D])的α-氘代伯胺。该方案表现出优异的化学选择性,并能耐受各种官能团。该新方法的潜在应用在氘代药物的合成中得到了展示,例如金刚烷胺、噻菌灵类似物、萘普生和孕烯醇酮的衍生物,以及一系列用于快速和通用组装氘代药物和农药的构建块。

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