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哌嗪类同系物在生物活性化合物设计中的应用:第 1 部分。

Applications of Isosteres of Piperazine in the Design of Biologically Active Compounds: Part 1.

机构信息

Small Molecule Drug Discovery, Bristol Myers Squibb Research and Early Development, PO Box 4000, Princeton, New Jersey 08543, United States.

Syngenta Crop Protection Research, Schaffhauserstrasse, Stein CH-4332, Switzerland.

出版信息

J Agric Food Chem. 2022 Sep 14;70(36):10942-10971. doi: 10.1021/acs.jafc.2c00726. Epub 2022 Jun 8.

Abstract

Piperazine and homopiperazine are well-studied heterocycles in drug design that have found gainful application as scaffolds and terminal elements and for enhancing the aqueous solubility of a molecule. The optimization of drug candidates that incorporate these heterocycles in an effort to refine potency, selectivity, and developability properties has stimulated the design and evaluation of a wide range of bioisosteres that can offer advantage. In this review, we summarize the design and application of bioisosteres of piperazine and homopiperazine that have almost exclusively been in the drug design arena. While there are ∼100 approved drugs that incorporate a piperazine ring, only a single marketed agricultural product is built on this heterocycle. As part of the review, we discuss some of the potential reasons underlying the relatively low level of importance of this heterocycle to the design of agrochemicals and highlight the potential opportunities for their use in contemporary research programs.

摘要

哌嗪和高哌嗪是药物设计中研究得很好的杂环,它们已被用作支架和末端基团,并用于提高分子的水溶解度。为了提高药物候选物的效力、选择性和可开发性,对这些杂环进行了优化,这激发了对广泛的生物等排体的设计和评估,这些生物等排体可以提供优势。在这篇综述中,我们总结了哌嗪和高哌嗪的生物等排体的设计和应用,这些等排体几乎完全局限于药物设计领域。虽然有大约 100 种批准的药物含有哌嗪环,但只有一种上市的农业产品是基于这个杂环的。作为综述的一部分,我们讨论了导致这个杂环在农药设计中相对不重要的一些潜在原因,并强调了它们在当代研究计划中的潜在应用机会。

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