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Importance of Physicochemical Properties for the Design of New Pesticides

机译:理化特性对新型农药设计的重要性

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The physicochemical properties of candidate compounds play important roles in the design of new pesticides. Pesticides must be absorbed by pests, be transported to the target site, and then interact with proteins. Hydrophobicity is very important for these processes. Log P, where P is the partition coefficient in the 1-octanol/water system, is commonly used as a hydrophobic descriptor and correlates with membrane permeation and transport. It was recently reported that permeability by the parallel artificial membrane permeation assay (PAMPA) could be used to predict human oral absorption of passively transported compounds. PAMPA, which is a rapid high-throughput screening system, may be useful to predict pesticide absorption because PAMPA permeability can be calculated using log P and other parameters. Electronic and structural properties as well as hydrophobicity are important factors for protein-ligand interaction. To show the importance of physicochemical properties, the classic QSAR and CoMFA of neonicotinoids and prediction of bioavailability of pesticides in terms of membrane permeability in comparison with drugs are described.
机译:候选化合物的理化性质在新农药的设计中起着重要作用。农药必须被害虫吸收,运输到目标部位,然后与蛋白质相互作用。疏水性对于这些过程非常重要。 Log P,其中P是1-辛醇/水系统中的分配系数,通常用作疏水描述符,并与膜的渗透和转运相关。最近有报道说,平行人工膜渗透试验(PAMPA)的渗透率可用于预测人类口服被动转运化合物的吸收。 PAMPA是一种快速的高通量筛选系统,可用于预测农药吸收,因为可以使用log P和其他参数计算PAMPA的渗透性。电子和结构性质以及疏水性是蛋白质-配体相互作用的重要因素。为了显示理化性质的重要性,描述了新烟碱类药物的经典QSAR和CoMFA以及与药物相比在膜渗透性方面预测农药的生物利用度。

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