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通过化学和生物化学方法开发杀虫环状磷酰化合物。

Development of insecticidal cyclic phosphoryl compounds through chemical and biochemical approaches.

作者信息

Eto M

出版信息

J Environ Sci Health B. 1983;18(1):119-45. doi: 10.1080/03601238309372360.

Abstract

Chemical and biochemical studies on three types of cyclic phosphoryl compounds are discussed in connection with the development of insecticides. They are five-membered cyclic phosphoramidates (I), six-membered cyclic phosphates (II) and bridged bicyclic phosphates (III). Development of I has started from the finding of L-leucine as a neuroactive substance in silkworm blood, followed by its combination with chemically active five-membered cyclic phosphates. Studies on the metabolism of neurotoxic tri-o-tolyl phosphate caused the invention of the insecticide salithion in the series of II. Salithion was chemically converted into its thiolo isomers, which is a convenient phosphorylating agent useful to synthesize biologically interesting phosphate esters. III does not inhibit acetylcholin-esterase but acts as an anti-GABA agent.

摘要

结合杀虫剂的研发,讨论了三种环状磷酰化合物的化学和生化研究。它们是五元环状磷酰胺酯(I)、六元环状磷酸酯(II)和桥连双环磷酸酯(III)。I的研发始于在蚕血中发现L-亮氨酸作为一种神经活性物质,随后将其与具有化学活性的五元环状磷酰化合物结合。对神经毒性磷酸三邻甲苯酯代谢的研究促成了II系列杀虫剂杀螟硫磷的发明。杀螟硫磷经化学转化为其硫醇异构体,这是一种方便的磷酰化剂,可用于合成具有生物学意义的磷酸酯。III不抑制乙酰胆碱酯酶,但作为一种抗GABA剂起作用。

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