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Cu-Zn and Ag-Cu bimetallic nanoparticles as larvicide to control malaria parasite vector: A comparative analysis

机译:铜锌和银铜双金属纳米颗粒作为杀幼虫剂控制疟原虫载体的比较分析

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A single mosquito can often threaten public health and well-being. With emerging mosquito-borne zoonotic diseases and emerging insecticide resistance, demand for new insecticidal formulations has been increased. Studies on the use of monometallic nanoparticle formulation like nanosilver, nanocopper and nanozinc, synthesized with biological components to kill mosquito larvae are efficient. Our hypothesis is that the bimetallic combination of nanoparticles can kill mosquito larvae more efficiently at lower concentrations than their respective monometallic form. To carry out experimentation on the above hypothesis, extracellular synthesis of monometallic Copper-, Zinc-, and Silver-nanoparticles, and bimetallic Copper-Zinc and Silver-Copper nanoparticles is done with the help of aqueous leaf extract of Ocimum sanctum (Linn.). The characterization study was done through U.V.-Vis spectroscopy and XRD which indicated the presence of nanoparticles in the solution. Efficacy on 3rd instar larvae of Anopheles mosquito was performed by following WHO's guidelines. Lethal concentration values (LC) for each nanoparticles were obtained. Results of efficacy showed bimetallic Silver-Copper nanoparticles followed by Copper-Zinc nanoparticles, can potentially kill mosquito larvae in lower concentrations as compare to their respective monometallic forms.
机译:单一的蚊子通常可以威胁公共健康和福祉。随着新兴的蚊子源性的疾病和新兴杀虫剂抗性,对新的杀虫制剂的需求增加了。用生物成分合成的纳米玻璃,纳米电泵和纳米锌等单金属纳米粒子制剂的使用研究,以杀死蚊子幼虫是有效的。我们的假设是纳米颗粒的双金属组合可以比其相应的单金属形式更高浓度地杀死蚊虫幼虫。为了进行上述假设,细胞外合成的单金属金属铜 - ,锌 - 和银 - 纳米颗粒,以及二氧化硅铜 - 锌和银 - 铜纳米粒子是在声叶提取物(Linn.)的含水叶提取物的帮助下进行的。表征研究通过U.V.-Vis光谱和XRD进行,所述XRD表示溶液中存在纳米颗粒。通过遵循谁的准则进行蚊子的第3次幼虫幼虫的疗效。得到每种纳米颗粒的致死浓度值(LC)。功效的结果显示双金属银 - 铜纳米粒子,然后是铜 - 锌纳米颗粒,可能会在较低浓度下杀死蚊子幼虫,与各自的单金属形式相比。

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