首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Synthesis and Characterization of Stimuli-Responsive Poly(2-dimethylamino-ethylmethacrylate)-Grafted Chitosan Microcapsule for Controlled Pyraclostrobin Release
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Synthesis and Characterization of Stimuli-Responsive Poly(2-dimethylamino-ethylmethacrylate)-Grafted Chitosan Microcapsule for Controlled Pyraclostrobin Release

机译:刺激性响应的聚(2-二甲基氨基-甲基丙烯酸乙基酯)接枝的壳聚糖微胶囊的合成和表征以控制吡咯菌酯的释放

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摘要

Controllable pesticide release in response to environmental stimuli is highly desirable for better efficacy and fewer adverse effects. Combining the merits of natural and synthetic polymers, pH and temperature dual-responsive chitosan copolymer (CS-g-PDMAEMA) was facilely prepared through free radical graft copolymerization with 2-(dimethylamino) ethyl 2-methacrylate (DMAEMA) as the vinyl monomer. An emulsion chemical cross-linking method was used to expediently fabricate pyraclostrobin microcapsules in situ entrapping the pesticide. The loading content and encapsulation efficiency were 18.79% and 64.51%, respectively. The pyraclostrobin-loaded microcapsules showed pH-and thermo responsive release. Microcapsulation can address the inherent limitation of pyraclostrobin that is photo unstable and highly toxic on aquatic organisms. Compared to free pyraclostrobin, microcapsulation could dramatically improve its photostability under ultraviolet light irradiation. Lower acute toxicity against zebra fish on the first day and gradually similar toxicity over time with that of pyraclostrobin technical concentrate were in accordance with the release profiles of pyraclostrobin microcapsules. This stimuli-responsive pesticide delivery system may find promising application potential in sustainable plant protection.
机译:为了获得更好的功效和更少的副作用,迫切需要响应环境刺激而控制农药的释放。结合天然和合成聚合物的优点,通过以2-甲基丙烯酸2-(二甲氨基)乙酯(DMAEMA)为乙烯基单体的自由基接枝共聚反应,轻松制备了pH和温度双反应型壳聚糖共聚物(CS-g-PDMAEMA)。使用乳液化学交联方法方便地原位包埋农药制备吡咯菌酯微囊。负载量和包封效率分别为18.79%和64.51%。载有吡菌酯的微胶囊显示出pH值和热响应释放。微囊化可以解决吡咯菌酯的固有局限性,该局限性是光不稳定的,并且对水生生物具有剧毒。与游离吡咯菌酯相比,微囊化可以显着提高其在紫外线照射下的光稳定性。在第一天,对斑马鱼的急性毒性较低,并且随着时间的推移,与吡菌胺酯工业浓缩物的毒性逐渐相似,这与吡唑醚菌酯微胶囊的释放曲线一致。该刺激响应性农药输送系统可能在可持续植物保护中发现有希望的应用潜力。

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