Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, People's Republic of China.
CreInSol MCB, CH-4118 Rodersdorf, Switzerland.
J Agric Food Chem. 2022 Sep 14;70(36):11063-11074. doi: 10.1021/acs.jafc.2c00804. Epub 2022 May 16.
Bioisosteric replacement has been proven to be a powerful strategy in life science research. In this review, general aspects of carbon-silicon bioisosteric substitution and its applications in pharmaceutical and crop protection research are described. Carbon and their silicon analogues possess similar intrinsic properties. Replacing carbon with silicon in pharmaceuticals and pesticides has shown to result in positive effects on efficacy and selectivity, physicochemical properties, and bioavailability and also to eliminate or improve human or environmental safety properties as well as to provide novelty and new intellectual property in many cases. Furthermore, the application of carbon-silicon substitution in the search for new complex II acaricides is highlighted. This research led to the discovery of sila-cyflumetofen and other silicon-containing analogues of cyflumetofen that match or exceed the acaricidal activity of cyflumetofen. The molecular design strategy, synthetic aspects, biological activity, computational modeling work, and structure-activity relationships will be discussed.
生物等排替换已被证明是生命科学研究中的一种强有力策略。在这篇综述中,描述了碳-硅生物等排取代的一般方面及其在药物和作物保护研究中的应用。碳及其硅类似物具有相似的固有性质。在药物和农药中用硅取代碳已被证明对疗效和选择性、物理化学性质、生物利用度有积极影响,并且在许多情况下消除或改善了人类或环境安全性,以及提供了新颖性和新的知识产权。此外,还强调了在寻找新的复合物 II 杀螨剂中的碳-硅取代的应用。这项研究导致了发现了硅代 cyflumetofen 和其他 cyflumetofen 的含硅类似物,其杀虫活性与 cyflumetofen 相匹配或超过 cyflumetofen。将讨论分子设计策略、合成方面、生物活性、计算建模工作和构效关系。