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首页> 外文期刊>Parasitology Research >Synthesis of pediculocidal and larvicidal silver nanoparticles by leaf extract from heartleaf moonseed plant, Tinospora cordifolia Miers
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Synthesis of pediculocidal and larvicidal silver nanoparticles by leaf extract from heartleaf moonseed plant, Tinospora cordifolia Miers

机译:叶心月种子小叶紫穗槐叶提取物合成杀螨和杀幼虫银纳米颗粒

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Insecticide resistance and inadequate attention to the application instructions of topical pediculicides are common reasons for treatment failure. Essential oils or plant extracts are good and safe alternatives due to their low toxicity to mammals and easy biodegradability. The present study was carried out to establish the pediculocidal and larvicidal activity of synthesized silver nanoparticles (AgNPs) using leaf aqueous extract of Tinospora cordifolia Miers (Menispermaceae) against the head louse Pediculus humanus capitis De Geer (Phthiraptera: Pediculidae) and fourth instar larvae of malaria vector, Anopheles subpictus Grassi and filariasis vector, Culex quinquefasciatus Say (Diptera: Culicidae). We reported the aqueous plant extract and synthesized AgNPs against head lice and vectors. Direct contact method was conducted to determine the potential of pediculocidal activity. The synthesized AgNPs characterized by UV–vis spectrum, scanning electron microscopy, Fourier transform infrared, and X-ray diffraction. Head lice and mosquito larvae were exposed to varying concentrations of aqueous extracts and synthesized AgNPs for 24 h. The results suggest that the optimal times for measuring mortality effects of synthesized AgNPs were 33% at 5 min, 67% at 15 min, and 100% after 1 h. The maximum activity was observed in the synthesized AgNPs against lice, A. subpictus and C. quinquefasciatus (LC50 = 12.46, 6.43 and 6.96 mg/L; r 2 = 0.978, 0.773 and 0.828), respectively. The findings revealed that synthesized AgNPs possess excellent anti-lice and mosquito larvicidal activity. These results suggest that the green synthesis of AgNPs have the potential to be used as an ideal ecofriendly approach for the control of head lice and vectors.
机译:杀虫剂的抗药性和对局部除草剂的使用说明的注意不足是治疗失败的常见原因。精油或植物提取物由于对哺乳动物的毒性低且易于生物降解,因此是良好且安全的替代品。本研究的目的是建立一种利用银叶藜提取物对头虱Pediculus humanus capitis De Geer(Phthiraptera:Pediculidae)和四龄幼虫的杀虫活性和杀幼虫活性。疟疾媒介,格拉斯按蚊和丝虫病媒介,库蚊(Qulex quinquefasciatus)说(双翅目:Cu科)。我们报道了水生植物提取物和针对头虱和载体的合成AgNPs。进行直接接触法以确定杀虫活性的潜力。合成的AgNPs具有紫外可见光谱,扫描电子显微镜,傅立叶变换红外光谱和X射线衍射等特征。将头虱和蚊虫幼虫暴露于不同浓度的水提取物和合成的AgNP中24小时。结果表明,测量合成AgNPs死亡率影响的最佳时间是5分钟时33%,15分钟时67%,1小时后100%。在合成的AgNP中观察到最大的抗虱子,亚种曲霉和西洋参线虫的活性(LC 50 = 12.46、6.43和6.96 mg / L; r 2 = 0.978 ,0.773和0.828)。该发现表明合成的AgNP具有优异的抗虱子和蚊幼虫活性。这些结果表明,AgNPs的绿色合成有潜力用作控制头虱和媒介的理想环保方法。

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