Department of Botany, College of Basic Science and Humanities, Odisha University of Agriculture and Technology, Bhubaneswar, Odisha, India.
School of Agriculture, GIET University, Gunupur, Odisha, India.
J Basic Microbiol. 2024 Oct;64(10):e2400256. doi: 10.1002/jobm.202400256. Epub 2024 Aug 7.
The current situation involves an increase in interest in nanotechnology, in particular the ways in which it can be applied in the commercial and medical fields. However, traditional methods of synthesizing nanoparticles have some drawbacks, including the generation of harmful byproducts, high energy consumption, and cost. As a result, researchers have shifted their focus to "green" nanoparticle synthesis to circumvent these drawbacks. Because of their exceptional physiochemical properties, silver nanoparticles (Ag Nps) are the noble metal nanoparticles that are used most frequently. The green approach to Ag NP synthesis is environmentally friendly, non-toxic, and cost-effective, and it makes use of a variety of biological entities. Cyanobacteria, in particular, have garnered the most attention because of the abundance of bioactive substances that they contain, which serve both as reducing agents and as stabilizing agents during the process of biosynthesis. This review article discusses the current state of cyanobacteria-mediated Ag NP synthesis, the potential mechanisms that are involved, nanoparticle characterization, the various applications of Ag NP in different fields, and their prospects.
目前,人们对纳米技术越来越感兴趣,特别是纳米技术在商业和医疗领域的应用方式。然而,传统的合成纳米粒子的方法存在一些缺点,包括产生有害副产品、高能耗和成本高。因此,研究人员将注意力转向“绿色”纳米粒子合成,以避免这些缺点。由于其出色的物理化学性质,银纳米粒子(AgNps)是最常用的贵金属纳米粒子。AgNP 合成的绿色方法具有环保、无毒和经济高效的特点,并且利用了多种生物实体。特别是蓝藻,由于其含有丰富的生物活性物质,作为还原剂和生物合成过程中的稳定剂而备受关注。本文综述了蓝藻介导的 AgNP 合成的现状、涉及的潜在机制、纳米粒子的表征、AgNP 在不同领域的各种应用及其前景。