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利用茉莉叶片提取物合成银纳米粒子和金纳米粒子及其对丝虫和虫媒病毒病传播媒介埃及伊蚊(双翅目:蚊科)的杀幼虫活性。

Synthesis of silver and gold nanoparticles using Jasminum nervosum leaf extract and its larvicidal activity against filarial and arboviral vector Culex quinquefasciatus Say (Diptera: Culicidae).

机构信息

Department of Biotechnology, Mizoram University, Aizawl, 796 004, Mizoram, India.

Department of Biotechnology and Genetic Engineering, Bharathidasan University, Tiruchirappalli, 620 024, India.

出版信息

Environ Sci Pollut Res Int. 2015 Nov;22(22):17753-68. doi: 10.1007/s11356-015-5001-x. Epub 2015 Jul 9.

Abstract

Silver and gold nanoparticles of Jasminum nervosum L. had unique optical properties such as broad absorbance band in the visible region of the electromagnetic spectrum. Characterization of the nanoparticles using UV spectrophotometer, Fourier transform infrared spectroscopy, X-ray diffraction, and transmission electron microscopy confirmed that the particles were silver (AgNPs) and gold (AuNPs) ranging between 4-22 and 2-20 nm with an average particles size of 9.4 and 10 nm, respectively. AgNPs and AuNPs of J. nervosum had high larvicidal activity on the filarial and arboviral vector, Culex quinquefasciatus, than the leaf aqueous extract. Observed lethal concentrations (LC50 and LC95) against the third instar larvae were 57.40 and 144.36 μg/ml for AgNPs and 82.62 and 254.68 μg/ml for AuNPs after 24 h treatment, respectively. The lethal time to kill 50% of C. quinquefasciatus larvae were 2.24 and 4.51 h at 150 μg/ml of AgNPs and AuNPs, respectively, while in the case of aqueous leaf extract of J. nervosum it was 9.44 h at 500 μg/ml (F 2,14 = 397.51, P < 0.0001). The principal component analysis plot presented differential clustering of the aqueous leaf extract, AgNP and AuNPs in relation to lethal dose and lethal time. It is concluded from the present findings that the biosynthesised AgNPs and AuNPs using leaf aqueous extract of J. nervosum could be an environmentally safer nanobiopesticide, and provided potential larvicidal effect on C. quinquefasciatus larvae which could be used for prevention of several dreadful diseases.

摘要

茉莉银纳米粒子和金纳米粒子具有独特的光学性质,如在电磁光谱的可见区域有较宽的吸收带。使用紫外分光光度计、傅里叶变换红外光谱、X 射线衍射和透射电子显微镜对纳米粒子进行表征,证实这些粒子是银(AgNPs)和金(AuNPs),粒径在 4-22nm 和 2-20nm 之间,平均粒径分别为 9.4nm 和 10nm。茉莉叶水提物的银纳米粒子和金纳米粒子对丝虫和虫媒病毒载体致倦库蚊的幼虫具有较高的杀幼虫活性。AgNPs 和 AuNPs 对三龄幼虫的致死浓度(LC50 和 LC95)分别为 57.40μg/ml 和 144.36μg/ml,24h 后为 82.62μg/ml 和 254.68μg/ml。在 150μg/ml 的 AgNPs 和 AuNPs 处理下,致倦库蚊幼虫半数致死时间分别为 2.24h 和 4.51h,而在茉莉叶水提物 500μg/ml 处理下,半数致死时间为 9.44h(F 2,14=397.51,P<0.0001)。主成分分析图显示,水提叶、AgNP 和 AuNPs 在致死剂量和致死时间上存在差异聚类。从本研究结果得出结论,使用茉莉叶水提物生物合成的 AgNPs 和 AuNPs 可能是一种环境更安全的纳米生物农药,对致倦库蚊幼虫具有潜在的杀幼虫作用,可用于预防几种可怕的疾病。

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