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Organic-coated silver nanoparticles in biological and environmental conditions: Fate, stability and toxicity

机译:在生物和环境条件下有机涂覆的银纳米颗粒:命运,稳定性和毒性

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摘要

This review paper presents the overview of processes involved in transformation of organic-coated silver nanoparticles(AgNPs) in biological systems and in the aquatic environment. The coating on AgNPs greatly influences the fate, stability, and toxicity of AgNPs in aqueous solutions, biological systems, and the environment. Several organic-coated AgNP systems are discussed to understand their stability and toxicity in biological media and natural water. Examples are presented to demonstrate how a transformation of organic-coated AgNPs in an aqueous solution is affected by the type of coating, pH, kind of electrolyte (mono- or divalent), ionic strength, organic ligands (inorganic and organic), organic matter (fulvic and humic acids), redox conditions (oxic and anoxic), and light. Results of cytotoxicity, genotoxicity, and ecotoxicity of coated AgNPs to food chain members(plants, bacteria, and aquatic and terrestrial organisms) are reviewed. Key factors contributing to toxicity are the size, shape, surface coating, surface charge, and conditions of silver ion release. AgNPs may directly damage the cell membranes, disrupt ATP production and DNA replication, alternate gene expressions, release toxic Ag~+ ion, and produce reactive oxygen species to oxidize biological components of the cell. A progress made on understanding themechanismof organic-coated AgNP toxicity using different analytical techniques is presented.
机译:这篇综述文章概述了生物系统和水生环境中有机涂层银纳米颗粒(AgNPs)转化过程的过程。 AgNPs上的涂层极大地影响了AgNPs在水溶液,生物系统和环境中的命运,稳定性和毒性。讨论了几种有机涂层的AgNP系统,以了解它们在生物介质和天然水中的稳定性和毒性。举例说明了水溶液中有机涂层AgNP的转化如何受到涂层类型,pH,电解质种类(一价或二价),离子强度,有机配体(无机和有机),有机物的影响。 (富里酸和腐殖酸),氧化还原条件(有氧和无氧)和光照。综述了包被的AgNPs对食物链成员(植物,细菌,水生和陆地生物)的细胞毒性,遗传毒性和生态毒性的结果。引起毒性的关键因素是银离子的大小,形状,表面涂层,表面电荷和释放条件。 AgNPs可能直接破坏细胞膜,破坏ATP的产生和DNA复制,改变基因表达,释放有毒的Ag〜+离子,并产生活性氧来氧化细胞的生物成分。提出了使用不同的分析技术了解有机包覆的AgNP毒性机理的研究进展。

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