处理固体形式的接触杀虫剂以预防传染病
Xiaolong Zhu1, Chunhua T Hu1, Jingxiang Yang1
1Department of Chemistry and Molecular Design Institute , New York University , 100 Washington Square East , New York , New York 10003 United States.
Journal of the American Chemical Society
|October 12, 2019
概括
新的固体形式的DFDT和MFDT杀虫剂比DDT更快地杀死传染虫. 它们的速度与热力学稳定性有关,为抗击杀虫剂耐药性和减少环境影响提供了策略.
科学领域:
- 固态化学
- 昆虫毒理学
- 载体控制
背景情况:
- 昆虫杀虫网中的载体耐药性威胁着疟疾控制.
- 尽管DDT的臭名昭著, 但它正在被重新考虑.
- 虽然DFDT是DDT的二同源,
研究的目的:
- 探索DFDT和MFDT的无形和晶体形式,一种化同源.
- 为了评估它们对病媒的有效性,
- 确定固体特性与杀虫活性之间的联系.
主要方法:
- 无形和晶体DFDT和MFDT的合成和表征.
- 对 *Drosophila*, *Anopheles* 和 *Aedes* 的杀虫活性评价
- 测量倒闭时间和热力学稳定性的相关性.
主要成果:
- 无形和晶体的DFDT和MFDT显示出比DDT更快的击倒时间.
- 形态的形式表现出更快的行动.
- 撞击速度与热力学稳定性有反向关系.
- 一个MFDT的反体显示出更快的敲击,表明了性歧视.
结论:
- 接触杀虫剂的固态化学操纵是一种可行的疾病载体控制策略.
- DFDT和MFDT提供了改进行动速度的潜在替代方案.
- 降低热力学稳定性与更快的冲击相关,有助于阻力管理.
- 在MFDT中,奇拉的区别表明了分子层面的特定相互作用.
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