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首页> 外文期刊>Parasitology Research >Novel synthesis of silver nanoparticles using Bauhinia variegata: a recent eco-friendly approach for mosquito control
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Novel synthesis of silver nanoparticles using Bauhinia variegata: a recent eco-friendly approach for mosquito control

机译:使用紫荆花(Bauhinia variegata)新型合成银纳米颗粒:一种最新的环保灭蚊方法

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Mosquito vectors are responsible for transmitting diseases such as malaria, dengue, chikungunya, Japanese encephalitis, dengue, and lymphatic filariasis. The use of synthetic insecticides to control mosquito vectors has caused physiological resistance and adverse environmental effects, in addition to high operational cost. Biosynthesis of silver nanoparticles has been proposed as an alternative to traditional control tools. In the present study, green synthesis of silver nanoparticles (AgNPs) using aqueous leaf extract of Bauhinia variegata by reduction of Ag+ ions from silver nitrate solution has been investigated. The bioreduced silver nanoparticles were characterized by UV-visible spectrophotometry, Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy-dispersive X-ray analysis (EDX), and Xray diffraction analysis (XRD). Leaf extract and synthesized AgNPs were evaluated against the larvae of Anopheles subpictus, Aedes albopictus, and Culex tritaeniorhynchus. Compared to aqueous extract, synthesized AgNPs showed higher toxicity against An. subpictus, Ae. albopictus, and Cx. tritaeniorhynchus with LC50 and LC90 values of 41.96, 46.16, and 51.92 mu g/mL and 82.93, 89.42, and 97.12 mu g/mL, respectively. Overall, this study proves that B. variegata is a potential bioresource for stable, reproducible nanoparticle synthesis and may be proposed as an efficient mosquito control agent.
机译:蚊媒负责传播疾病,例如疟疾,登革热,基孔肯雅热,日本脑炎,登革热和淋巴丝虫病。除了高昂的运行成本外,使用合成杀虫剂控制蚊媒还引起了生理抗性和不利的环境影响。已经提出银纳米颗粒的生物合成作为传统控制工具的替代方法。在本研究中,已经研究了使用紫荆花的水性叶提取物通过还原硝酸银溶液中的Ag +离子来绿色合成银纳米颗粒(AgNPs)。通过紫外可见分光光度法,傅立叶变换红外光谱(FTIR),扫描电子显微镜(SEM),透射电子显微镜(TEM),能量色散X射线分析(EDX)和X射线衍射分析( XRD)。评估了叶提取物和合成的AgNPs的抗幼虫按蚊,白纹伊蚊和库蚊的幼虫。与水提取物相比,合成的AgNPs对An具有更高的毒性。亚庇,Ae。 albopictus和Cx。百草枯的LC50和LC90值分别为41.96、46.16和51.92微克/毫升,以及82.93、89.42和97.12微克/毫升。总的来说,这项研究证明了杂色芽孢杆菌是稳定,可再生的纳米颗粒合成的潜在生物资源,并可能被提议作为一种有效的灭蚊剂。

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