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首页> 外文期刊>The Science of the Total Environment >Environmental benignity of a pesticide in soft colloidal hydrodispersive nanometric form with improved toxic precision towards the target organisms than non-target organisms
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Environmental benignity of a pesticide in soft colloidal hydrodispersive nanometric form with improved toxic precision towards the target organisms than non-target organisms

机译:柔软胶体水分散性纳米形式农药的环境友好性,其对目标生物的毒性精确度高于非目标生物

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Mosquito-borne diseases are of major concern as they cause devastating health effects, morbidity, and mortality in the human population. Conventional pesticides have failed to curb the mosquito population due to the development of insensitivity in mosquitoes. Hence, higher dosages of pesticides along with their toxic solubilizers have been employed, which have led to raise in pesticide pollution load, environmental toxicity, and human health concerns. As a realisation for the requirement of alternative pesticides, the present study has involved in the formulation of a hydrodispersive nanometric colloidal form of deltamethrin (NDM), a type-Ⅱ pyrethroid pesticide, from its hydroimmisicible parental form (PDM). The mean hydrodynamic diameter of the droplets was found to be 30.6 ± 4.6 nm by dynamic light scattering study (DLS). High-resolution transmission electron micrographs have revealed the spherical structure of the droplets with a size range of 35-40 nm. The NDM was found to possess sedimentation resistance, intrinsic and hydrodispersive stability. The toxicity of NDM and PDM was comparatively investigated on target organisms (Culex tritaeniorhynchus and Culex quinquefasciatus mosquitoes) and non-target organisms (Allium cepa - Bioindicator of toxicants and Rhizobium sp. - Soil bacteria). As comparative to PDM, NDM has exerted higher efficacy on adult mosquito and larval population, even at low-level concentrations. However, in the case of non-target organisms, the NDM toxicity was lower than PDM. Comprehensively, the study has concluded the potential advantage of formulating conventional pesticides into nanometric soft colloidal form for the improved toxic precision on target organisms (mosquitoes). This ensures the ability of NDM to combat against the mosquito population even at lower concentrations, thereby reducing the pesticide exposure load towards the environment and human population.
机译:蚊媒疾病是引起人们极大破坏的健康影响,发病率和死亡率的主要问题。由于对蚊子不敏感,常规农药未能遏制蚊子的数量。因此,已经使用了更高剂量的农药以及它们的有毒增溶剂,这导致了农药污染负荷,环境毒性和对人类健康的关注增加。为了满足对替代农药的需求,本研究涉及从其不可与水混溶的亲本形式(PDM)中制备Ⅱ型拟除虫菊酯农药溴氰菊酯(NDM)的水分散性纳米胶体形式。通过动态光散射研究(DLS)发现,液滴的平均流体动力学直径为30.6±4.6 nm。高分辨率透射电子显微照片显示了大小范围为35-40 nm的液滴的球形结构。发现NDM具有抗沉降性,固有和水分散稳定性。比较研究了NDM和PDM对目标生物(库蚊和库克斯蚊)和非目标生物(葱属-毒物和根瘤菌的生物指示剂-土壤细菌)的毒性。与PDM相比,NDM对成年蚊子和幼虫种群具有更高的功效,即使在低浓度下也是如此。但是,在非目标生物的情况下,NDM毒性低于PDM。综上所述,该研究得出结论,将常规农药制成纳米软胶体形式具有潜在的优势,可以提高对目标生物(蚊子)的毒性精确度。这确保了即使在较低浓度下,NDM仍能抵抗蚊子种群的能力,从而减少了农药对环境和人口的暴露负荷。

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