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用于病媒控制和传粉媒介保护的吡虫啉晶体多晶型物。

Imidacloprid Crystal Polymorphs for Disease Vector Control and Pollinator Protection.

机构信息

Department of Chemistry and Molecular Design Institute, New York University, New York, New York 10003 United States.

Department of Chemistry, New York University, New York, New York 10003 United States.

出版信息

J Am Chem Soc. 2021 Oct 20;143(41):17144-17152. doi: 10.1021/jacs.1c07610. Epub 2021 Oct 12.

Abstract

Imidacloprid, the world's leading insecticide, has been approved recently for controlling infectious disease vectors; yet, in agricultural settings, it has been implicated in the frightening decline of pollinators. This argues for strategies that sharply reduce the environmental impact of imidacloprid. When used as a contact insecticide, the effectiveness of imidacloprid relies on physical contact between its crystal surfaces and insect tarsi. Herein, seven new imidacloprid crystal polymorphs are reported, adding to two known forms. Anticipating that insect uptake of imidacloprid molecules would depend on the respective free energies of crystal polymorph surfaces, measurements of insect knockdown times for the metastable crystal forms were as much as nine times faster acting than the commercial form against , and mosquitoes as well as (fruit flies). These results suggest that replacement of commercially available imidacloprid crystals (a.k.a. Form I) in space-spraying with any one of three new polymorphs, Forms IV, VI, IX, would suppress vector-borne disease transmission while reducing environmental exposure and harm to nontarget organisms.

摘要

吡虫啉是世界领先的杀虫剂,最近已被批准用于控制传染病媒介;然而,在农业环境中,它已被牵连到授粉媒介的惊人减少中。这就需要采取策略,大幅降低吡虫啉对环境的影响。当用作接触杀虫剂时,吡虫啉的有效性依赖于其晶体表面与昆虫跗节之间的物理接触。在此,报道了七种新的吡虫啉晶体多晶型物,加上两种已知形式。预计昆虫对吡虫啉分子的摄取将取决于晶体多晶型物表面各自的自由能,对亚稳晶体形式的击倒时间的测量表明,对 、 和 (果蝇)的作用速度比商业形式快多达九倍。这些结果表明,用三种新的多晶型物(形式 IV、VI、IX)中的任何一种替代商用吡虫啉晶体(即形式 I)进行空间喷雾,将抑制媒介传播疾病的传播,同时减少对非目标生物的环境暴露和危害。

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