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Bioavailability of silver nanoparticles and ions: from a chemical and biochemical perspective

机译:银纳米颗粒和离子的生物利用度:从化学和生物化学的角度

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摘要

Owing to their antimicrobial properties, silver nanoparticles (NPs) are the most commonly used engineered nanomaterial for use in a wide array of consumer and medical applications. Many discussions are currently ongoing as to whether or not exposure of silver NPs to the ecosystem (i.e. plants and animals) may be conceived as harmful or not. Metallic silver, if released into the environment, can undergo chemical and biochemical conversion which strongly influence its availability towards any biological system. During this process, in the presence of moisture, silver can be oxidized resulting in the release of silver ions. To date, it is still debatable as to whether any biological impact of nanosized silver is relative to either its size, or to its ionic constitution. The aim of this review therefore is to provide a comprehensive, interdisciplinary overview--for biologists, chemists, toxicologists as well as physicists--regarding the production of silver NPs, its (as well as in their ionic form) chemical and biochemical behaviours towards/within a multitude of relative and realistic biological environments and also how such interactions may be correlated across a plethora of different biological organisms.
机译:由于其抗菌性能,银纳米颗粒(NPs)是最广泛使用的工程纳米材料,可用于各种消费和医疗应用。关于银纳米颗粒暴露于生态系统(即动植物)是否可能被认为有害,目前正在进行许多讨论。金属银如果释放到环境中,则会发生化学和生化转化,这严重影响了其对任何生物系统的可用性。在此过程中,在湿气存在下,银可被氧化,从而释放出银离子。迄今为止,关于纳米级银的任何生物影响是相对于其尺寸还是其离子组成仍是有争议的。因此,本综述的目的是为生物学家,化学家,毒理学家以及物理学家提供一个综合的,跨学科的概述,涉及银纳米颗粒的产生,其银离子(及其离子形式)的化学和生化行为。在许多相对和现实的生物环境中,以及这些相互作用如何在众多不同的生物有机体之间建立关联。

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