Institute of Plant Protection and Agro-Product Safety, Anhui Academy of Agricultural Sciences, Hefei, Anhui 230001, PR China; College of Plant Protection, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.
College of Plant Protection, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.
Sci Total Environ. 2023 Dec 15;904:166587. doi: 10.1016/j.scitotenv.2023.166587. Epub 2023 Sep 1.
Developing microcapsules (MCs) delivery systems can effectively mitigate toxicological risk of highly active/toxic pesticides; whereas the controlled release functions also limiting their practical effectiveness. Therefore, designing a precise regulating strategy to balance the toxicity and bioactivity of MCs is urgently needed. Here, we prepared a series of pyraclostrobin-loaded MCs with different wall materials, particle sizes, core density and shell compactness using interfacial polymerization. The results showed that the MCs released more slowly in water with increasing particle sizes and capsule compactness, and they sunk more quickly with the increasing particle sizes and core density. Additionally, MCs with slower release speed was always accompanied with lower acute toxicity levels to zebrafish. When the release dynamics slowed down to the threshold dose on demand for disease control, facilitating settlement of MCs can further reduce toxicity within spatial and temporal dimensions. The poor accumulation of MCs with larger particle sizes or dense shell in gills was closely related to their efficient detoxification. Importantly, seven of the MCs samples possessed superior selectivity between bio-performance in controlling rice blast and toxicological hazard to fish compared to commercial formulations. The results provide a comprehensive guidance for developing an efficient and safe pesticide delivery system.
制备载吡唑醚菌酯的微胶囊(MCs)控释体系可以有效降低高毒农药的毒性风险,同时控制其释放性能也限制了其实际应用效果。因此,设计一种精确的调控策略来平衡 MCs 的毒性和生物活性至关重要。本研究采用界面聚合法制备了一系列不同壁材、粒径、芯密度和壳致密性的载吡唑醚菌酯 MCs。结果表明,随着粒径和胶囊致密性的增加,MCs 在水中的释放速度越慢,粒径和芯密度的增加会导致 MCs 下沉更快。此外,释放速度较慢的 MCs 对斑马鱼的急性毒性水平也较低。当释放动力学减慢到按需控制疾病所需的阈值剂量时,促进 MCs 的沉降可以进一步降低其在时空维度上的毒性。粒径较大或壳致密的 MCs 在鳃中积累较差,这与其高效解毒密切相关。重要的是,与商业制剂相比,7 种 MCs 样品在控制稻瘟病的生物性能和对鱼类的毒性危害方面具有更好的选择性。该研究结果为开发高效、安全的农药控释系统提供了全面的指导。