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“魔力氯”:氯原子在药物研发中的深远影响。

"Magic Chloro": Profound Effects of the Chlorine Atom in Drug Discovery.

机构信息

Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.

Department of Chemistry, Vividion Therapeutics, 5820 Nancy Ridge Drive, San Diego, California 92121, United States.

出版信息

J Med Chem. 2023 Apr 27;66(8):5305-5331. doi: 10.1021/acs.jmedchem.2c02015. Epub 2023 Apr 4.

Abstract

Chlorine is one of the most common atoms present in small-molecule drugs beyond carbon, hydrogen, nitrogen, and oxygen. There are currently more than 250 FDA-approved chlorine-containing drugs, yet the beneficial effect of the chloro substituent has not yet been reviewed. The seemingly simple substitution of a hydrogen atom (R = H) with a chlorine atom (R = Cl) can result in remarkable improvements in potency of up to 100,000-fold and can lead to profound effects on pharmacokinetic parameters including clearance, half-life, and drug exposure in vivo. Following the literature terminology of the "magic methyl effect" in drugs, the term "magic chloro effect" has been coined herein. Although reports of 500-fold or 1000-fold potency improvements are often serendipitous discoveries that can be considered "magical" rather than planned, hypotheses made to explain the magic chloro effect can lead to lessons that accelerate the cycle of drug discovery.

摘要

氯是小分子药物中除碳、氢、氮和氧之外最常见的原子之一。目前有超过 250 种获得美国食品和药物管理局批准的含氯药物,但氯取代基的有益效果尚未得到审查。看似简单地将氢原子(R = H)替换为氯原子(R = Cl),就可以使药物的效力提高多达 100,000 倍,并对包括清除率、半衰期和体内药物暴露在内的药代动力学参数产生深远影响。受药物中“神奇甲基效应”文献术语的启发,本文创造了“神奇氯效应”一词。虽然报道的 500 倍或 1000 倍的效力提高通常是偶然发现的,可以被认为是“神奇”的,而不是有计划的,但为解释神奇氯效应而提出的假设可以为加速药物发现周期提供经验教训。

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