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Mechanisms of toxic action and structure-activity relationships for organochlorine and synthetic pyrethroid insecticides.

机译:有机氯和合成拟除虫菊酯类杀虫剂的毒性作用机理与构效关系。

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摘要

The mechanisms and sites of action of organochlorine (DDT-types and chlorinated alicyclics) and synthetic pyrethroid insecticides are presented with discussion of symptoms, physiological effects, and selectivity. The structural requirements for toxicity are assessed, and structure-activity relationships are considered for each subclass. Lipophilicity is important for all the groups because it facilitates delivery of these neurotoxicants to the site of action in the nerve. Steric factors including molecular volume, shape, and isomeric configuration greatly influence toxicity. Electronic parameters also have been demonstrated to affect biological activity in some of the groups of insecticides, e.g., Hammett's sigma and Taft's sigma * as indicators of electronegativity. New synthetic pyrethroids continue to be developed, with varied structures and different physicochemical and biological properties.
机译:介绍了有机氯(DDT型和氯化脂环族)和合成拟除虫菊酯类杀虫剂的作用机理和作用部位,并讨论了症状,生理效应和选择性。评估毒性的结构要求,并考虑每个亚类的构效关系。亲脂性对所有组都很重要,因为它有助于将这些神经毒物传递至神经的作用部位。包括分子体积,形状和异构体构型在内的立体因素极大地影响了毒性。还已经证明,电子参数会影响某些杀虫剂组的生物活性,例如,作为电负性指标的哈米特σ和塔夫脱σ*。新的合成拟除虫菊酯正在不断发展,具有不同的结构以及不同的理化和生物学特性。

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