环烯烃的高选择性催化转移加氢重氢反应

IF 0.9 4区 医学 Q4 BIOCHEMICAL RESEARCH METHODS
Samuel J. Hintzsche, Zoua Pa Vang, Emanuel Rivera Torres, Mykaela Podoski, Joseph R. Clark
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引用次数: 1

摘要

氘选择性安装到小分子中变得越来越令人满意,这不仅是为了阐明机制途径和研究生物过程,而且是因为氘能够有利地调节生物活性分子的药代动力学参数。稠合双环部分,特别是那些含有杂原子的双环部分,在药物发现和制药中很普遍。在此,我们报道了铜催化的环状和杂环烯烃的转移加氢脱氧,这使得能够合成在苄基位置精确氘化的色满、喹啉酮和四氢萘。我们还证明了通过将转移试剂交换为同位素类似物,将一个氘原子以高区域选择性放置在这些支架的同苄基位点的能力。此外,公开了化学选择性转移氢化和转移氘的实例,允许将两个相邻的氢或氘原子同时结合到双键中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Highly selective catalytic transfer hydrodeuteration of cyclic alkenes

Highly selective catalytic transfer hydrodeuteration of cyclic alkenes

Selective deuterium installation into small molecules is becoming increasingly desirable not only for the elucidation of mechanistic pathways and studying biological processes but also because of deuterium's ability to favorably adjust the pharmacokinetic parameters of bioactive molecules. Fused bicyclic moieties, especially those containing heteroatoms, are prevalent in drug discovery and pharmaceuticals. Herein, we report a copper-catalyzed transfer hydrodeuteration of cyclic and heterocyclic alkenes, which enables the synthesis of chromans, quinolinones, and tetrahydronaphthalenes that are precisely deuterated at the benzylic position. We also demonstrate the ability to place one deuterium atom at the homobenzylic site of these scaffolds with high regioselectivity by swapping transfer reagents for their isotopic analogs. Furthermore, examples of chemoselective transfer hydrogenation and transfer deuteration are disclosed, allowing for the simultaneous incorporation of two vicinal hydrogen or deuterium atoms into a double bond.

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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
57
审稿时长
1 months
期刊介绍: The Journal of Labelled Compounds and Radiopharmaceuticals publishes all aspects of research dealing with labeled compound preparation and applications of these compounds. This includes tracer methods used in medical, pharmacological, biological, biochemical and chemical research in vitro and in vivo. The Journal of Labelled Compounds and Radiopharmaceuticals devotes particular attention to biomedical research, diagnostic and therapeutic applications of radiopharmaceuticals, covering all stages of development from basic metabolic research and technological development to preclinical and clinical studies based on physically and chemically well characterized molecular structures, coordination compounds and nano-particles.
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