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A review on the biosynthesis of metal and metal salt nanoparticles by microbes

机译:微生物对金属和金属盐纳米粒子的生物合成研究进展

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Metal nanoparticles have received great attention from researchers across the world because of a plethora of applications in agriculture and the biomedical field as antioxidants and antimicrobial compounds. Over the past few years, green nanotechnology has emerged as a significant approach for the synthesis and fabrication of metal nanoparticles. This green route employs various reducing and stabilizing agents from biological resources for the synthesis of nanoparticles. The present article aims to review the progress made in recent years on nanoparticle biosynthesis by microbes. These microbial resources include bacteria, fungi, yeast, algae and viruses. This review mainly focuses on the biosynthesis of the most commonly studied metal and metal salt nanoparticles such as silver, gold, platinum, palladium, copper, cadmium, titanium oxide, zinc oxide and cadmium sulphide. These nanoparticles can be used in pharmaceutical products as antimicrobial and anti-biofilm agents, targeted delivery of anticancer drugs, water electrolysis, waste water treatment, biosensors, biocatalysis, crop protection against pathogens, degradation of dyes etc. This review will discuss in detail various microbial modes of nanoparticles synthesis and the mechanism of their synthesis by various bioreducing agents such as enzymes, peptides, proteins, electron shuttle quinones and exopolysaccharides. A thorough understanding of the molecular mechanism of biosynthesis is the need of the hour to develop a technology for large scale production of bio-mediated nanoparticles. The present review also discusses the advantages of various microbial approaches in nanoparticles synthesis and lacuna involved in such processes. This review also highlights the recent milestones achieved on large scale production and future perspectives of nanoparticles.
机译:金属纳米颗粒由于在农业和生物医学领域作为抗氧化剂和抗菌化合物的大量应用而受到世界各地研究人员的高度关注。在过去的几年中,绿色纳米技术已经成为金属纳米颗粒合成和制造的重要方法。这条绿色路线采用了来自生物资源的各种还原剂和稳定剂来合成纳米颗粒。本文旨在回顾近年来微生物在纳米颗粒生物合成方面取得的进展。这些微生物资源包括细菌,真菌,酵母,藻类和病毒。这项审查主要侧重于最常研究的金属和金属盐纳米粒子的生物合成,例如银,金,铂,钯,铜,镉,氧化钛,氧化锌和硫化镉。这些纳米颗粒可作为抗微生物剂和抗生物膜剂用于药物产品,抗癌药物的靶向递送,水电解,废水处理,生物传感器,生物催化,针对病原体的农作物保护,染料降解等。此评论将详细讨论各种纳米颗粒合成的微生物模式及其通过各种生物还原剂(例如酶,肽,蛋白质,电子穿梭醌和胞外多糖)合成的机理。对生物合成的分子机制的透彻了解是需要一个小时来开发大规模生产生物介导的纳米粒子的技术。本综述还讨论了各种微生物方法在纳米粒子合成和此类过程中涉及的缺陷方面的优势。这篇综述还重点介绍了大规模生产的近期里程碑以及纳米颗粒的未来前景。

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