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首页> 外文期刊>Parasitology Research >Tackling the growing threat of dengue: Phyllanthus niruri-mediated synthesis of silver nanoparticles and their mosquitocidal properties against the dengue vector Aedes aegypti (Diptera: Culicidae)
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Tackling the growing threat of dengue: Phyllanthus niruri-mediated synthesis of silver nanoparticles and their mosquitocidal properties against the dengue vector Aedes aegypti (Diptera: Culicidae)

机译:应对日益增长的登革热威胁:疫霉菌介导的银纳米颗粒的合成及其对登革热媒介埃及伊蚊的灭蚊特性(双翅目:葫芦科)

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摘要

Mosquitoes are vectors of devastating pathogens and parasites, causing millions of deaths every year. Dengue is a mosquito-borne viral infection found in tropical and subtropical regions around the world. Recently, transmission has strongly increased in urban and semiurban areas, becoming a major international public health concern. Aedes aegypti (Diptera: Culicidae) is the primary vector of dengue. The use of synthetic insecticides to control Aedes mosquitoes lead to high operational costs and adverse nontarget effects. In this scenario, eco-friendly control tools are a priority. We proposed a novel method to synthesize silver nanoparticles using the aqueous leaf extract of Phyllanthus niruri, a cheap and nontoxic material. The UV-vis spectrum of the aqueous medium containing silver nanostructures showed a peak at 420 nm corresponding to the surface plasmon resonance band of nanoparticles. SEM analyses of the synthesized nanoparticles showed a mean size of 30-60 nm. EDX spectrum showed the chemical composition of the synthesized nanoparticles. XRD highlighted that the nanoparticles are crystalline in nature with face-centered cubic geometry. Fourier transform infrared spectroscopy (FTIR) of nanoparticles exhibited prominent peaks 3,327.63, 2,125.87, 1,637.89, 644.35, 597.41, and 554.63 cm(-1). In laboratory assays, the aqueous extract of P. niruri was toxic against larval instars (I-IV) and pupae of A. aegypti. LC50 was 158.24 ppm (I), 183.20 ppm (II), 210.53 ppm (III), 210.53 ppm (IV), and 358.08 ppm (pupae). P. niruri-synthesized nanoparticles were highly effective against A. aegypti, with LC50 of 3.90 ppm (I), 5.01 ppm (II), 6.2 ppm (III), 8.9 ppm (IV), and 13.04 ppm (pupae). In the field, the application of silver nanoparticles (10xLC(50)) lead to A. aegypti larval reduction of 47.6 %, 76.7% and 100 %, after 24, 48, and 72 h, while the P. niruri extract lead to 39.9 %, 69.2 % and 100 % of reduction, respectively. In adulticidal experiments, P. niruri extract and nanoparticles showed LC50 and LC90 of 174.14 and 6.68 ppm and 422.29 and 23.58 ppm, respectively. Overall, this study highlights that the possibility to employ P. niruri leaf extract and green-synthesized silver nanoparticles in mosquito control programs is concrete, since both are effective at lower doses if compared to synthetic products currently marketed, thus they could be an advantageous alternative to build newer and safer tools against dengue vectors.
机译:蚊子是破坏性病原体和寄生虫的媒介,每年造成数百万人死亡。登革热是一种由蚊子传播的病毒感染,在世界各地的热带和亚热带地区都有发现。最近,在城市和半城市地区的传播大大增加,成为国际上主要的公共卫生问题。埃及伊蚊(Diptera:Culicidae)是登革热的主要媒介。使用合成杀虫剂控制伊蚊的做法导致高昂的运营成本和不利的非目标影响。在这种情况下,环保控制工具是当务之急。我们提出了一种新方法,该方法使用廉价且无毒的Phyllanthus niruri的水性叶提取物来合成银纳米颗粒。含有银纳米结构的水性介质的紫外-可见光谱显示出在420nm处的峰,其对应于纳米颗粒的表面等离子体共振带。合成的纳米颗粒的SEM分析显示平均尺寸为30-60nm。 EDX光谱显示了合成的纳米颗粒的化学组成。 XRD强调纳米粒子本质上是具有面心立方几何形状的晶体。纳米粒子的傅里叶变换红外光谱(FTIR)表现出突出的峰3,327.63、2,125.87、1,637.89、644.35、597.41和554.63 cm(-1)。在实验室分析中,P。niruri的水提物对埃及夜蛾的幼虫(I-IV)和p有毒性。 LC50为158.24ppm(I),183.20ppm(II),210.53ppm(III),210.53ppm(IV)和358.08ppm(p)。合成的体育假单胞菌纳米颗粒对埃及伊蚊非常有效,LC50为3.90 ppm(I),5.01 ppm(II),6.2 ppm(III),8.9 ppm(IV)和13.04 ppm(p)。在野外,施用银纳米颗粒(10xLC(50))在24、48和72小时后导致埃及埃及按蚊幼虫减少47.6%,76.7%和100%,而体育黑粉虫提取物导致39.9%减少量分别为%,69.2%和100%。在杀人实验中,体育假单胞菌提取物和纳米颗粒的LC50和LC90分别为174.14和6.68 ppm,以及422.29和23.58 ppm。总的来说,这项研究强调了在蚊子控制计划中使用体育假单胞菌叶提取物和绿色合成的银纳米颗粒的可能性是具体的,因为与目前市场上出售的合成产品相比,它们在较低剂量下均有效,因此它们可能是一种有利的替代品。建立针对登革热媒介的更新,更安全的工具。

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