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Green Synthesis Characterization Enzyme Inhibition Antimicrobial Potential and Cytotoxic Activity of Plant Mediated Silver Nanoparticle Using

机译:绿色合成表征酶抑制抗微生物潜力和植物介导银纳米粒子的细胞毒性活性

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摘要

The need of non-toxic synthesis protocols for nanoparticles arises developing interest in biogenic approaches. The present project was focused on cost effective, environment congenial synthesis of Ag nanoparticles and their biological applications. Leaf and root extracts of Ricinus communis were used as a reducing and stabilizing agent in synthesis process. A Proposed mechanism in published literature suggested that Indole-3-acetic acid, l-valine, triethyl citrate, and quercetin-3-0-p-d-glucopyranoside phytoconstituents of Ricinus communis act as reducing and capping agents. The synthesized Ag NPs were characterized with a help X-ray diffractometer, Transmission electron microscopy, UV-Vis spectrophotometry and Fourier Transform Infrared Spectroscopy (FTIR). The XRD results inveterate the synthesis of pure nano size crystalline silver particles. The FTIR data revealed the possible functional groups of biomolecules involved in bio reduction and capping for efficient stabilization of silver nanoparticles. TEM analysis confirmed the almost spherical morphology of synthesized particles with mean size 29 and 38 nm for R-Ag-NPs (root) and L-Ag-NPs (leaf), respectively. The stability of synthesized nanoparticles was examined against heat and pH. It was observed that synthesized nanoparticles were stable up to 100 °C temperature and also showed stability in neutral, basic and slightly acidic medium (pH 05–06) for several months while below pH 5 were unstable. The synthesized silver nanoparticles had promising inhibition efficiency in multiple applications, including as bactericidal/fungicidal agents and Urease/Xanthine oxidase enzymes inhibitors. The cytotoxicity of synthesized nanoparticles shows that the concentration under 20 μg/mL were biologically compatible.
机译:对于纳米颗粒的无毒合成方案的需要产生对生物方法的兴趣。本项目的重点是成本效益,环境对Ag纳米颗粒及其生物学应用的共同合成。 Ricinus Communis的叶子和根提取物用作合成过程中的还原和稳定剂。发表文献中的提出机制表明,吲哚-3-乙酸,L-缬氨酸,柠檬酸盐,三乙酯和槲皮素-3-0-p-D-吡喃葡萄嘧啶植物植物植物植物植物植物植物植物植物植物是Ricinus Communis的起还是还原剂。合成的Ag NPS具有帮助X射线衍射仪,透射电子显微镜,UV-Vis分光光度法和傅里叶变换红外光谱(FTIR)的特征。 XRD结果对纯纳米尺寸结晶银颗粒的合成不计。 FTIR数据揭示了生物纳米颗粒的生物还原和封盖的生物分子可能的官能团,以便有效稳定银纳米颗粒。 TEM分析确认了用于R-Ag-NPS(根)和L-AG-NPS(叶)的平均尺寸29和38nm的合成颗粒的几乎球形形态。检查合成纳米颗粒的稳定性,反对热和pH。观察到,合成的纳米颗粒稳定至100℃温度,并且还显示出中性,碱性和微酸性介质(pH 05-06)的稳定性,同时低于pH5不稳定。合成的银纳米颗粒在多种应用中具有希望的抑制效率,包括杀菌/杀真菌剂和脲酶/黄嘌呤氧化酶酶抑制剂。合成纳米颗粒的细胞毒性表明,20μg/ ml以下的浓度是生物学相容的。

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