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设计用于药物砌块精准氘代的化学体系。

Designing chemical systems for precision deuteration of medicinal building blocks.

机构信息

Department of Chemistry, University of Virginia, Charlottesville, VA, USA.

出版信息

Nat Commun. 2024 Oct 1;15(1):8473. doi: 10.1038/s41467-024-52127-6.

Abstract

Methods are lacking that can prepare deuterium-enriched building blocks, in the full range of deuterium substitution patterns at the isotopic purity levels demanded by pharmaceutical use. To that end, this work explores the regio- and stereoselective deuteration of tetrahydropyridine (THP), which is an attractive target for study due to the wide prevalence of piperidines in drugs. A series of d-d tetrahydropyridine isotopomers were synthesized by the stepwise treatment of a tungsten-complexed pyridinium salt with H/D and H/D. The resulting decomplexed THP isotopomers and isotopologues were analyzed via molecular rotational resonance (MRR) spectroscopy, a highly sensitive technique that distinguishes isotopomers and isotopologues by their unique moments of inertia. In order to demonstrate the medicinal relevance of this approach, eight unique deuterated isotopologues of erythro-methylphenidate were also prepared.

摘要

方法的缺乏能够准备氘富集砌块,在全范围的氘取代模式的同位素纯度水平所要求的药用。为此,这项工作探讨了区域和立体选择性氘化四氢吡啶(THP),这是一个有吸引力的研究目标,由于哌啶类药物在药物中的广泛存在。一系列的 d-d 四氢吡啶同位素异构体通过逐步处理一个钨配合吡啶盐与 H/D 和 H/D 合成。所得去络合 THP 同位素异构体和同位素通过分子旋转共振(MRR)光谱分析,一种高度敏感的技术,通过它们独特的转动惯量来区分同位素异构体和同位素。为了证明这种方法的医学相关性,也制备了 8 个独特的去氘手性 - 哌甲酯的同位素异构体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5efd/11442640/cefc3cf0efd7/41467_2024_52127_Fig1_HTML.jpg

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