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Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity

机译:阳光驱动的胃纳米粒子的快速和容易合成使用促进抗氧化和抗真菌活性

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摘要

Green nanotechnology has acquired immense demand due to its cost-effective, eco-friendly and benevolent approach for the synthesis of nanoparticles. Among the biological methods, plants aid as a significant green resource for synthesizing nanoparticles that are safe and non-toxic for human use. In the present investigation, Silver nanoparticles (AgNPs) were synthesized using bulbs extract of Allium ampeloprasum under the influence of sunlight irradiation and characterized using different techniques. Distinct in-vitro assays were performed to test the antioxidant and anticandida potential of the synthesized AgNPs. Results suggested the efficient and rapid sunlight-driven synthesis of AgNPs using A. ampeloprasum extract. UV–Vis spectrum showed absorption peak at 446 nm which confirmed the formation of AgNPs. FTIR analysis suggested the presence of functional groups associated with flavonoids and sulfur compounds in A. ampeloprasum extract. The synthesized AgNPs showed Face Centred Cubic (FCC) structure with an average size of 35 nm. Spherical, quasi spherical, triangular and ellipsoidal morphology of the NPs were observed from the TEM micrograph. The synthesized AgNPs showed pronounced free radical scavenging potential for DPPH, ABTS∙+ and H2O2 radicals. The anticandida potency of the synthesized AgNPs was observed as follows: C. albicans ≥ C. tropicalis ≥ C. glabrata ≥ C. parapsilosis ≥ C. krusei. Results showed that sunlight driven nanoparticle synthesis of AgNPs is rapid, facile and exhibit enhanced antioxidant and antifungal activity.
机译:由于其具有成本效益,环保的合成的纳米颗粒的成本效益,生态友好和仁慈的方法,绿色纳米技术获得了巨大的需求。在生物学方法中,植物有助于合成纳米颗粒的重要绿色资源,所述纳米粒子是安全和无毒的人类使用。在本研究中,在阳光照射的影响下,在阳光照射的影响下使用葱草胨提取物合成银纳米颗粒(AgNP),并使用不同的技术。进行不同的体外测定以测试合成的AgNP的抗氧化剂和抗癌剂电位。结果表明,使用A.氨培养物提取物的高效和快速的阳光驱动的AgNP合成。 UV-Vis光谱显示在446nm处的吸收峰,证实了agnps的形成。 FTIR分析表明在Ampeloprasum提取物中存在与黄酮类化合物和硫化合物相关的官能团的存在。合成的AgNPS显示面为中心的立方(FCC)结构,平均尺寸为35nm。从TEM显微照片观察到NPS的球形,准球形,三角形和椭圆形形态。合成的AgNPS显示出DPPH,ABTS +和H2O2基团的发明自由基清除电位。合成的AgNP的抗癌性效力如下:C.albicans≥C.Tropicalis≥C.Glabrata≥C.Parapsilosis≥C.Krusei。结果表明,阳光驱动纳米粒子合成AgNPS是快速的,容易的,表现出增强的抗氧化剂和抗真菌活性。

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