Unraveling the mysteries of silver nanoparticles: synthesis, characterization, antimicrobial effects and uptake translocation in plant-a review.

IF 3.6 3区 生物学 Q1 PLANT SCIENCES Planta Pub Date : 2024-05-24 DOI:10.1007/s00425-024-04439-6
Ahmed Fares, Abdou Mahdy, Gamal Ahmed
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Abstract

Main conclusion: The study thoroughly investigates nanosilver production, properties, and interactions, shedding light on its multifaceted applications. It underscores the importance of characterizing nanosilver for predicting its behavior in complex environments. Particularly, it highlights the agricultural and environmental ramifications of nanosilver uptake by plants. Nowadays, silver nanoparticles (AgNPs) are a very adaptable nanomaterial with many uses, particularly in antibacterial treatments and agricultural operations. Clarification of key elements of nanosilver, such as its synthesis and characterization procedures, antibacterial activity, and intricate interactions with plants, particularly those pertaining to uptake and translocation mechanisms, is the aim of this in-depth investigation. Nanosilver synthesis is a multifaceted process that includes a range of methodologies, including chemical, biological, and sustainable approaches that are also environmentally benign. This section provides a critical evaluation of these methods, considering their impacts on repeatability, scalability, and environmental impact. The physicochemical properties of nanosilver were determined by means of characterization procedures. This review highlights the significance of analytical approaches such as spectroscopy, microscopy, and other state-of the-art methods for fully characterizing nanosilver particles. Although grasp of these properties is necessary in order to predict the behavior and potential impacts of nanosilver in complex biological and environmental systems. The second half of this article delves into the intricate interactions that plants have with nanosilver, emphasizing the mechanisms of absorption and translocation. There are significant ramifications for agricultural and environmental problems from the uptake of nanosilver by plants and its subsequent passage through their tissues. In summary, by summarizing the state-of-the-art information in this field, this study offers a comprehensive overview of the production, characterization, antibacterial capabilities, and interactions of nanosilver with plants. This paper contributes to the ongoing conversation in nanotechnology.

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揭开银纳米粒子的神秘面纱:合成、表征、抗菌效果和在植物中的吸收转化--综述。
主要结论:本研究深入探讨了纳米银的生产、特性和相互作用,揭示了其多方面的应用。它强调了描述纳米银的特性以预测其在复杂环境中的行为的重要性。特别是,它强调了植物吸收纳米银对农业和环境的影响。如今,纳米银粒子(AgNPs)是一种适应性很强的纳米材料,有很多用途,特别是在抗菌治疗和农业生产中。澄清纳米银的关键要素,如其合成和表征程序、抗菌活性以及与植物的复杂相互作用,特别是与吸收和转移机制有关的相互作用,是本次深入研究的目的。纳米银的合成是一个多方面的过程,包括一系列方法,其中有化学方法、生物方法和对环境无害的可持续方法。本节将对这些方法进行批判性评估,考虑它们对可重复性、可扩展性和环境影响的影响。纳米银的物理化学特性是通过表征程序确定的。本综述强调了光谱学、显微镜等分析方法和其他最先进方法对全面表征纳米银颗粒的重要性。要预测纳米银在复杂的生物和环境系统中的行为和潜在影响,就必须掌握这些特性。本文的后半部分深入探讨了植物与纳米银之间错综复杂的相互作用,强调了纳米银的吸收和转移机制。植物对纳米银的吸收及其随后通过植物组织的过程会对农业和环境问题产生重大影响。总之,本研究通过总结该领域的最新信息,全面概述了纳米银的生产、特性、抗菌能力以及与植物的相互作用。本文为纳米技术领域的持续对话做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Planta
Planta 生物-植物科学
CiteScore
7.20
自引率
2.30%
发文量
217
审稿时长
2.3 months
期刊介绍: Planta publishes timely and substantial articles on all aspects of plant biology. We welcome original research papers on any plant species. Areas of interest include biochemistry, bioenergy, biotechnology, cell biology, development, ecological and environmental physiology, growth, metabolism, morphogenesis, molecular biology, new methods, physiology, plant-microbe interactions, structural biology, and systems biology.
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