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首页> 外文期刊>RSC Advances >One pot green preparation of Seabuckthorn silver nanoparticles (SBT@AgNPs) featuring high stability and longevity, antibacterial, antioxidant potential: a nano disinfectant future perspective
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One pot green preparation of Seabuckthorn silver nanoparticles (SBT@AgNPs) featuring high stability and longevity, antibacterial, antioxidant potential: a nano disinfectant future perspective

机译:一个盆栽绿色制剂的沙棘银纳米粒子(SBT @ AGNP)具有高稳定性和寿命,抗菌,抗氧化潜力:纳米消毒剂未来的观点

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In recent years antimicrobial resistance (AMR) threatens the effective prevention and treatment of an ever-increasing range of infections caused by bacteria, parasites, viruses, fungi and development of effective therapeutics is a major challenge to the scientific community. Silver Nanoparticles (AgNPs) well know antimicrobials, but limited information available on the effect of 'Phytosynthesis' and there clinical applications. Phytochemicals occluded in Seabuckthorn (SBT) have been extensively used as dietary supplements and as natural pharmaceuticals in the treatment of various diseases including human cancer. In this context, we present a kind of eco-friendly, economically viable, possible to commercialization, free from chemical agents and rapid preparation of SBT@AgNPs employing the leaves extracts of Seabuckthorn (SBT). The SBT leaf extracts the rich source of organic acids and inorganic compounds may be envisaged for the formation of the SBT@AgNPs at room temperature (25 degrees C +/- 1.5 for 60 minutes). Physicochemical properties of synthesized nanoparticles were characterized using various spectroscopic techniques. The results depicted that SBT leaf mediated SBT@AgNPs are spherical with an average particles size of similar to 10-40 nm. The present SBT@AgNPs has shown long time stability (one year), indicated by their unchanged SPR band, TEM image, and zeta-potential value. The evaluation of antimicrobial properties of SBT@AgNPs indicated significant inhibition of Gram-positive and Gram-negative bacterial strains even at much lower than the minimum inhibitory concentration (2 mu g mL(-1)). Live and dead bacterial assay with confocal microscopy image demonstrated that the SBT@AgNPs disrupt the bacterial cell membrane which subsequently results in cellular material leakage and cell death. Antioxidant assay results suggest that DPPH radical scavengers increased more than 10 fold efficacy as compared to SBT leaves extract. Interestingly, this study also demonstrated that SBT@AgNPs impregnated paper preparation and there antibacterial activity against bacterial cocktail, the results shown that higher than the commercially available medicated dressing materials and deterioration and longevity of SBT@AgNPs impregnated paper also studied. Overall, the present study has disclosed a sustainable and green preparation of SBT@AgNPs and depicted their antibacterial, antioxidant agents and routine infectioncontrol in day to day life. We strongly believe that SBT@AgNPs has great potential as an effective antibacterial tool for controlling and prevention of currently emerging bacterial infections in everyday life.
机译:近年来,抗菌性抗性(AMR)威胁有效预防和治疗细菌,寄生虫,病毒,真菌和有效治疗的发展导致的不断增加的感染是对科学界的主要挑战。银纳米颗粒(AgNPS)良好认识抗微生物,但有限的信息可用于“植物合成”和临床应用的效果。在沙棘(SBT)中封闭的植物化学物质已被广泛地用作膳食补充剂,并作为治疗各种疾病,包括人类癌症的天然药品。在这种情况下,我们展示了一种生态友好,经济上可行的,可以商业化,没有化学试剂和使用海岸叶子提取物(SBT)的SBT @ Agnps的快速制剂。 SBT叶提取物可以设想在室温(25摄氏度+/- 1.5持续60分钟)中形成SBT @ AgNP的富有原有机酸和无机化合物的富源。使用各种光谱技术表征合成纳米颗粒的物理化学性质。所描绘的结果,SBT叶介导的SBT @ AgNP是球形的,其平均粒子尺寸与10-40nm相似。目前的SBT @ AGNPS显示了长时间的稳定性(一年),由其不变的SPR频段,TEM图像和Zeta-潜在值表示。 SBT @ AgNP的抗微生物性质的评价表明甚至低于最小抑制浓度(2μgml(-1))的显着抑制革兰氏阳性和革兰氏阴性细菌菌株。随着共聚焦显微镜图像的活和死细菌测定证明SBT @ AgNP破坏了细菌细胞膜,随后导致细胞材料泄漏和细胞死亡。抗氧化试验结果表明,与SBT叶提取物相比,DPPH激进的清除剂增加了超过10倍的效率。有趣的是,本研究还证明了SBT @ Agnps浸渍的纸制剂和对细菌鸡尾酒的抗菌活性,结果表明,高于市售的药物敷料材料和SBT @ Agnps浸渍纸的劣化和寿命。总体而言,本研究公开了SBT @ AgNP的可持续和绿色制备,并在日常生活中描述了它们的抗菌,抗氧化剂和常规感染Control。我们强烈认为,SBT @ AgNPS具有巨大的潜力作为控制和预防日常生活中目前出现的细菌感染的有效抗菌工具。

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