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首页> 外文期刊>Journal of nanoscience and nanotechnology >Ecotoxicological Evaluation of Poly(ε-Caprolactone) Nanocapsules Containing Triazine Herbicides
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Ecotoxicological Evaluation of Poly(ε-Caprolactone) Nanocapsules Containing Triazine Herbicides

机译:含三嗪除草剂的聚ε-己内酯纳米胶囊的生态毒理学评价

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The triazine class of herbicides includes the compounds ametryn, atrazine, and simazine, which are used to control weeds in plantations of crops such as maize, sorghum, and sugar cane. Despite their acceptance in agriculture, these herbicides can be dangerous to the environment, depending on their toxicity, the degree of contamination, and the duration of exposure. Controlled release systems are increasingly used to mitigate problems of toxicity and minimize environmental impacts, and can also increase herbicide efficiency. The objective of this work was to prepare poly(ε-caprolactone) nanocapsules containing ametryn and atrazine, and evaluate their toxicity to aquatic organisms as well as in cytogenetic tests employing human lymphocyte cultures. The PCL nanocapsules were prepared according to the interfacial deposition of pre-formed polymer method. Ecotoxicological assays were performed with the alga Pseudokirchneriella subcapitata and the microcrustacean Daphnia similis. The cytogenetic tests consisted of observing mitotic index alterations after exposing lymphocyte cell cultures to different formulations. Encapsulation of the herbicides in the nanocapsules resulted in lower toxicity to the alga and higher toxicity to the microcrustacean, compared to the herbicides alone. The cytogenetic tests showed that formulations of nanocapsules containing the herbicides were less toxic than the herbicides alone. The findings indicate the potential of the nanocapsule formulations in agricultural applications, where they could help to reduce the quantities of herbicides used as well as impacts on the environment and human health.
机译:三嗪类除草剂包括化合物ametryn,阿特拉津和simazine,它们可用于控制作物如玉米,高粱和甘蔗种植园中的杂草。尽管这些除草剂已在农业上得到接受,但取决于它们的毒性,污染程度和暴露时间,它们仍可能对环境构成威胁。控释系统越来越多地用于缓解毒性问题并最大程度地减少对环境的影响,还可以提高除草剂的效率。这项工作的目的是制备含有六氢大麻酚和at去津的聚(ε-己内酯)纳米胶囊,并评估其对水生生物的毒性以及在使用人类淋巴细胞培养的细胞遗传学测试中的作用。根据预先形成的聚合物的界面沉积方法制备了PCL纳米胶囊。用亚藻类假单胞藻和小甲壳类水蚤(Daphnia similis)进行了生态毒理学测定。细胞遗传学测试包括在将淋巴细胞培养物暴露于不同制剂后观察有丝分裂指数的变化。与单独的除草剂相比,将除草剂封装在纳米胶囊中导致对藻类的毒性较低,对微甲壳动物的毒性较高。细胞遗传学测试表明,含有除草剂的纳米胶囊制剂的毒性低于单独使用的除草剂。研究结果表明纳米胶囊制剂在农业应用中的潜力,可以帮助减少所用除草剂的数量以及对环境和人类健康的影响。

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