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通过骨架跃迁进行农用化学品的先导优化。

Agrochemical lead optimization by scaffold hopping.

机构信息

Syngenta Crop Protection AG, Chemical Research, Stein, Switzerland.

出版信息

Pest Manag Sci. 2018 Feb;74(2):282-292. doi: 10.1002/ps.4755. Epub 2017 Dec 1.

Abstract

Scaffold hopping, the exchange of a specific portion of a potential active ingredient with another substructure with the aim of finding isofunctional molecular structures with significantly different molecular backbones, often offers the chance in lead discovery or optimization to mitigate problems related to toxicity, intellectual property, and insufficient potency or stability. Scaffold hopping tools such as isosteric ring replacement including 1,3 nitrogen shift and cyclic imine-amide isosterism, but also ring opening and ring closure approaches, functional group isosterism, reversion of functional groups, chain shortening, chain lengthening, and scaffolds delivered by natural products, have become a permanent fixture of the innovation and optimization process in crop protection research. Their appropriate use will be explained through examples of success stories in the field of agrochemistry. Analogies to, but also differences from, the main categories of scaffold hopping in medicinal drug discovery are discussed. © 2017 Society of Chemical Industry.

摘要

骨架跃迁,即将潜在活性成分的特定部分与另一个亚结构交换,目的是找到具有显著不同分子骨架的同功能分子结构,通常在发现或优化先导化合物时提供机会,可以减轻与毒性、知识产权以及效力或稳定性不足相关的问题。骨架跃迁工具,如等排环替换,包括 1,3 氮原子转移和环状亚胺酰胺等排,以及开环和闭环方法、官能团等排、官能团反转、链缩短、链延长以及天然产物提供的骨架,已成为植保研究创新和优化过程中的永久组成部分。将通过农业化学领域的成功案例来解释它们的正确使用。本文讨论了与药用药物发现的主要骨架跃迁类别类似但也存在差异的情况。 © 2017 英国化学工业学会

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