氟和氟化基序在药物设计中生物同位体的设计和应用

IF 6.8 1区 医学 Q1 CHEMISTRY, MEDICINAL
Nicholas A. Meanwell*
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引用次数: 1005

摘要

氟的电子特性和相对较小的尺寸使其作为生物等异构体具有相当大的多功能性,它已被应用于替代孤对电子、氢原子和甲基,同时也作为羰基、甲醇和腈部分的功能模拟物。在这种情况下,氟取代可以影响分子的效价、构象、代谢、膜通透性和P-gp识别,以及碱性胺对hERG通道的抑制作用。然而,由于氟的独特性质,它在高阶结构隐喻的设计中占有突出地位,这些隐喻在概念上更深奥,反映了更复杂的分子结构,扩大了生物模拟。本文综述了氟在构建生物等构元件方面的应用,以增强分子的体内和体外性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fluorine and Fluorinated Motifs in the Design and Application of Bioisosteres for Drug Design

Fluorine and Fluorinated Motifs in the Design and Application of Bioisosteres for Drug Design

The electronic properties and relatively small size of fluorine endow it with considerable versatility as a bioisostere and it has found application as a substitute for lone pairs of electrons, the hydrogen atom, and the methyl group while also acting as a functional mimetic of the carbonyl, carbinol, and nitrile moieties. In this context, fluorine substitution can influence the potency, conformation, metabolism, membrane permeability, and P-gp recognition of a molecule and temper inhibition of the hERG channel by basic amines. However, as a consequence of the unique properties of fluorine, it features prominently in the design of higher order structural metaphors that are more esoteric in their conception and which reflect a more sophisticated molecular construction that broadens biological mimesis. In this Perspective, applications of fluorine in the construction of bioisosteric elements designed to enhance the in vitro and in vivo properties of a molecule are summarized.

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来源期刊
Journal of Medicinal Chemistry
Journal of Medicinal Chemistry 医学-医药化学
CiteScore
4.00
自引率
11.00%
发文量
804
审稿时长
1.9 months
期刊介绍: The Journal of Medicinal Chemistry is a prestigious biweekly peer-reviewed publication that focuses on the multifaceted field of medicinal chemistry. Since its inception in 1959 as the Journal of Medicinal and Pharmaceutical Chemistry, it has evolved to become a cornerstone in the dissemination of research findings related to the design, synthesis, and development of therapeutic agents. The Journal of Medicinal Chemistry is recognized for its significant impact in the scientific community, as evidenced by its 2022 impact factor of 7.3. This metric reflects the journal's influence and the importance of its content in shaping the future of drug discovery and development. The journal serves as a vital resource for chemists, pharmacologists, and other researchers interested in the molecular mechanisms of drug action and the optimization of therapeutic compounds.
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