植物和微生物介导的铜纳米颗粒合成的最新进展及其在医疗保健、环境、农业和食品工业中的新兴应用。

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Drashti Tank, Anjali Bishnoi, Savita Goswami, Nikita J Ambegaonkar, Pratik Patel, Mamta Chahar, Sarita Khaturia, Virendra Kumar Yadav
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引用次数: 0

摘要

在过去的几十年里,研究控制无机和有机材料尺寸和形态的新方法一直是当前研究的重点。近年来,绿色合成纳米粒子的方法因其使用了环保和无毒的物质而引起了人们的极大关注。这些方法简单,成本效益高,有助于合成热稳定性和化学稳定性的纳米颗粒。本文综述了生物模板在植物部分(如叶片、种子等)、细菌、病毒、真菌、藻类等方面的应用研究进展。这些生物系统作为还原和稳定剂,有助于形成具有控制形态和大小的铜纳米颗粒(CuNPs)。选择铜金属是因为它的实用性强、生物相容性好、副作用小。本文综述了细菌、藻类、真菌、植物等多种生物合成碳纳米管的机理以及碳纳米管的特性。进一步强调了绿色聚苯乙烯在医疗保健(抗菌、抗癌等)、传感、环境修复(染料去除和污染物去除)和农业等方面的多方面应用。本综述还确定了当前的挑战,并概述了未来在各个新兴领域的cnps范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in phyto- and microorganisms-mediated synthesis of copper nanoparticles and their emerging applications in healthcare, environment, agriculture and food industry.

Over the past few decades, the study of novel methods to control the size and morphology of inorganic and organic materials has been the focus of current research. Recently, green synthesis approaches for the synthesis of nanoparticles have garnered significant attention due to their use of eco-friendly and non-toxic substances. These methods are simple, cost-effective, and help in synthesizing thermally and chemically stable nanoparticles. This review article illustrates the detailed study of the utilization of bio-templates, such as parts of plants (e.g., leaves, seeds, etc.), bacteria, viruses, fungi, algae, etc. These biological systems act as reducing and stabilizing agents, which help in the formation of copper nanoparticles (CuNPs) with controlled morphology and size. Copper metal was selected due to its great utility, high biocompatibility, and lower side effects. Here, the authors have reviewed the mechanism of formation of CuNPs by bacteria, algae, fungi, and plants, in addition to the characterization of CuNPs. Further emphasis has been given on the multifaceted application of green CuNPs in healthcare (antibacterial, anticancer, etc.), sensing, environmental remediation (dye removal and pollutant removal), and agriculture. This review also identifies current challenges and outlines the future scope of CuNPs in various emerging fields.

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来源期刊
Bioprocess and Biosystems Engineering
Bioprocess and Biosystems Engineering 工程技术-工程:化工
CiteScore
7.90
自引率
2.60%
发文量
147
审稿时长
2.6 months
期刊介绍: Bioprocess and Biosystems Engineering provides an international peer-reviewed forum to facilitate the discussion between engineering and biological science to find efficient solutions in the development and improvement of bioprocesses. The aim of the journal is to focus more attention on the multidisciplinary approaches for integrative bioprocess design. Of special interest are the rational manipulation of biosystems through metabolic engineering techniques to provide new biocatalysts as well as the model based design of bioprocesses (up-stream processing, bioreactor operation and downstream processing) that will lead to new and sustainable production processes. Contributions are targeted at new approaches for rational and evolutive design of cellular systems by taking into account the environment and constraints of technical production processes, integration of recombinant technology and process design, as well as new hybrid intersections such as bioinformatics and process systems engineering. Manuscripts concerning the design, simulation, experimental validation, control, and economic as well as ecological evaluation of novel processes using biosystems or parts thereof (e.g., enzymes, microorganisms, mammalian cells, plant cells, or tissue), their related products, or technical devices are also encouraged. The Editors will consider papers for publication based on novelty, their impact on biotechnological production and their contribution to the advancement of bioprocess and biosystems engineering science. Submission of papers dealing with routine aspects of bioprocess engineering (e.g., routine application of established methodologies, and description of established equipment) are discouraged.
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