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A Facile One-Pot Synthesis of Eco-Friendly Nanoparticles Using Carissacarandas: Ovicidal and Larvicidal Potential on Malaria, Dengue and Filariasis Mosquito Vectors

机译:利用Car螨(Carissacarandas)轻松进行一锅生态友好型纳米颗粒的合成:疟疾,登革热和丝虫病蚊媒的杀卵和杀卵潜力

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摘要

Mosquito-borne diseases represent a major human and animal health problem in all tropical and subtropical countries worldwide. In this study, we investigated the one-pot synthesis of silver nanoparticles (AgNPs) using a cheap leaf extract of Carissacarandas (Apocynaceae). Bio-reduced AgNPs were characterized by UV–visible spectrophotometry, Fourier transform infrared spectroscopy, X-ray diffraction analysis, atomic force microscopy, scanning electron microscopy and transmission electron microscopy. The acute toxicity of C. carandas extract and green-synthesized AgNPs was evaluated on eggs and larvae of Anophelesstephensi, Aedesaegypti and Culexquinquefasciatus. AgNPs showed high toxicity against A. stephensi, A. aegypti, and C. quinquefasciatus larvae with LC50 values of 14.33, 15.69 and 16.95 μg/mL, respectively. A single treatment with AgNPs tested at 60 μg/mL led to no egg hatchability. The egg rafts of C. quinquefasciatus were more resistant to the toxic action of AgNPs if compared to A. aegypti and A. stephensi. C. carandas-fabricated AgNPs were found safer to non-target organisms Anisopsbouvieri, Diplonychusindicus and Gambusiaaffinis, with LC50 ranging from 1097.87 to 17249.89 µg/ml. Overall, this research shed light on the mosquitocidal potential of C. carandas, a potential bio-resource for rapid, cheap and effective synthesis of poly-disperse and stable silver nanocrystals.
机译:蚊媒疾病是全世界所有热带和亚热带国家的主要人类和动物健康问题。在这项研究中,我们研究了使用便宜的Carissacarandas(Apocynaceae)叶提取物一锅合成银纳米颗粒(AgNPs)。通过紫外可见分光光度法,傅立叶变换红外光谱,X射线衍射分析,原子力显微镜,扫描电子显微镜和透射电子显微镜对生物还原的AgNP进行了表征。评估了car鱼提取物和绿色合成的AgNPs对按蚊,埃及伊蚊和库蚊的卵和幼虫的急性毒性。 AgNPs对A.stephensi,A.aegypti和C.quinquefasciatus幼虫显示高毒性,LC50分别为14.33、15.69和16.95μg/ mL。用浓度为60μg/ mL的AgNP进行的单次处理不会导致卵孵化。与埃及伊蚊和Stephensi相比,西洋参的蛋筏对AgNPs的毒性作用更具抵抗力。发现car鱼假单胞菌制备的AgNP比非目标生物Anisopsbouvieri,Diplonychusindicus和Gambusiaaffinis更安全,LC50为1097.87至17249.89 µg / ml。总的来说,这项研究揭示了C. carandas的灭蚊潜力,C。carandas具有潜在的生物资源,可以快速,廉价和有效地合成多分散和稳定的银纳米晶体。

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