Chaud Marco, Souto Eliana B, Zielinska Aleksandra, Severino Patricia, Batain Fernando, Oliveira-Junior Jose, Alves Thais
Laboratory of Biomaterials and Nanotechnology-LaBNUS, University of Sorocaba, Sorocaba 18078-005, Brazil.
Technological and Environmental Processes, University of Sorocaba, Sorocaba 18023-000, Brazil.
Toxics. 2021 Jun 4;9(6):131. doi: 10.3390/toxics9060131.
Nanopesticides are nanostructures with two to three dimensions between 1 to 200 nm, used to carry agrochemical ingredients (AcI). Because of their unique properties, the loading of AcI into nanoparticles offers benefits when compared to free pesticides. However, with the fast development of new engineered nanoparticles for pests' control, a new type of environmental waste is being produced. This paper describes the nanopesticides sources, the harmful environmental and health effects arising from pesticide exposure. The potential ameliorative impact of nanoparticles on agricultural productivity and ecosystem challenges are extensively discussed. Strategies for controlled release and stimuli-responsive systems for slow, sustained, and targeted AcI and genetic material delivery are reported. Special attention to different nanoparticles source, the environmental behavior of nanopesticides in the crop setting, and the most recent advancements and nanopesticides representative research from experimental results are revised. This review also addresses some issues and concerns in developing, formulating and toxicity pesticide products for environmentally friendly and sustainable agriculture.
纳米农药是二维或三维尺寸在1至200纳米之间的纳米结构,用于承载农用化学物质成分(AcI)。由于其独特的性质,与游离农药相比,将农用化学物质成分负载到纳米颗粒中具有诸多优势。然而,随着用于害虫防治的新型工程纳米颗粒的快速发展,一种新型的环境废弃物正在产生。本文描述了纳米农药的来源、农药暴露所产生的有害环境和健康影响。广泛讨论了纳米颗粒对农业生产力和生态系统挑战的潜在改善作用。报告了用于缓慢、持续和靶向递送农用化学物质成分及遗传物质的控释和刺激响应系统的策略。特别关注了不同的纳米颗粒来源、纳米农药在作物环境中的环境行为,以及对最新进展和来自实验结果的纳米农药代表性研究进行了综述。本综述还探讨了在开发、配制和毒性方面对环境友好且可持续农业的农药产品时的一些问题和关注点。