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首页> 外文期刊>Acta tropica: Journal of Biomedical Sciences >Mosquito larvicidal and antimicrobial activity of synthesized nano-crystalline silver particles using leaves and green berry extract of Solanum nigrum L. (Solanaceae: Solanales)
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Mosquito larvicidal and antimicrobial activity of synthesized nano-crystalline silver particles using leaves and green berry extract of Solanum nigrum L. (Solanaceae: Solanales)

机译:用茄茄的叶子和绿色浆果提取物合成的纳米晶体银颗粒的蚊虫杀幼虫和抗菌活性(茄科:茄属植物)

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摘要

Silver nanoparticles (AgNPs) that are synthesized by using aqueous extracts of Solanum nigrum L., is a simple, non-toxic and ecofriendly green material. The present study is based on assessments of the larvicidal and antimicrobial activities of the synthesized AgNPs from fresh leaves, dry leaves and green berries of S. nigrum against larvae of Culex quinquefasciatus and Anopheles stephensi and four human pathogenic and five fish pathogenic bacteria respectively. The synthesized nanoparticles are characterized with UV-vis spectroscopy, X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR) and transmission electron microscope (TEM) analysis. The nanoparticles are spherical to polyhedral in shape with size of 50-100nm (average size of 56.6nm). In larvicidal bioassay with synthesized AgNPs, highest mortality are observed at 10ppm against An. stephensi with LC50 values of 1.33, 1.59, 1.56ppm and LC90 values of 3.97, 7.31, 4.76ppm for dry leaves, fresh leaves and berries respectively. Antibacterial activity test reveals better results against fish pathogenic bacteria than human pathogenic bacteria. Non target organism like Toxorhynchites larvae (mosquito predator), Diplonychus annulatum (predatory water-bug) and Chironomus circumdatus larvae (chironomid) are also exposed to respective lethal concentrations (to mosquito larvae) of dry nanoparticles and no abnormality in the non target organisms are recorded. These results suggest that the synthesized AgNPs of S. nigrum have the potential to be used as an ideal eco-friendly compound for the control of the mosquito larvae and harmful bacteria.
机译:通过使用龙葵(Solanum nigrum L.)的水提取物合成的银纳米颗粒(AgNPs)是一种简单,无毒且环保的绿色材料。本研究的基础是评估合成的AgNPs的杀幼虫和抗菌活性,这些AgNPs分别来自黑链霉菌的新鲜叶片,干燥叶片和绿色浆果,对库蚊昆蚊和斯蒂芬按蚊和四个人类致病菌和五个鱼类致病菌的幼虫具有杀灭作用。通过紫外可见光谱,X射线衍射(XRD),傅立叶变换红外光谱(FTIR)和透射电子显微镜(TEM)分析对合成的纳米颗粒进行表征。纳米颗粒的形状为球形到多面体,尺寸为50-100nm(平均尺寸为56.6nm)。在合成AgNPs的幼虫生物测定中,相对于An,观察到最高死亡率为10ppm。 Stephensi的干叶,鲜叶和浆果的LC50值分别为1.33、1.59、1.56ppm和LC90值分别为3.97、7.31和4.76ppm。抗菌活性测试显示出比人类致病细菌更好的针对鱼类致病细菌的结果。非靶标生物,如Toxorhynchites幼虫(蚊食天敌),Diplonychus annulatum(捕食性水虫)和Chironomus circumdatus幼虫(chironomid)也分别暴露于干燥纳米颗粒的致死浓度(对蚊子幼虫),并且非目标生物没有异常记录下来。这些结果表明,合成的黑链霉菌的AgNP具有被用作控制蚊子幼虫和有害细菌的理想的生态友好化合物的潜力。

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