粉虱
杀虫剂
农药
昆虫
纳米技术
红粉甲虫
生物技术
人类健康
毒理
生物
化学
材料科学
农业
幼虫
生态学
医学
环境卫生
作者
Roberto María‐Hormigos,Carmen C. Mayorga‐Martinez,Martin Pumera
出处
期刊:Small
[Wiley]
日期:2022-12-30
卷期号:19 (51)
被引量:16
标识
DOI:10.1002/smll.202204887
摘要
Abstract The cost of insect pests to human society exceeds USD70 billion per year worldwide in goods, livestock, and healthcare services. Therefore, pesticides are needed to prevent insect damage despite the secondary effects of these chemical agents on non‐target organisms. Chemicals encapsulation into carriers is a promising strategy to improve their specificity. Hydrogel‐based microrobots show enormous potential as chemical carriers. Herein, hydrogel chitosan magnetic microrobots encapsulating ethyl parathion (EP)‐CHI@Fe 3 O 4 are used to efficiently kill mealworm larvae ( Tenebrio molitor ). The mechanism takes advantage of pH‐responsive chitosan degradation at Tenebrio molitor midgut pH to efficiently deliver pesticide into the mealworm intestinal tract in just 2 h. It is observed that under a transversal rotating magnetic field, mealworm populations show higher mortality after 30 min compared to free pesticide. This example of active pesticide carriers based on soft microrobots opens new avenues for microrobots applications in the agrochemical field as active chemical carriers.
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