Department of Physiology, College of Medicine and Health Sciences, United Arab Emirates University, P.O. Box 17666 Al Ain, UAE.
Zayed Center for Health Sciences, United Arab Emirates University, P.O. Box 17666 Al Ain, UAE.
Int J Mol Sci. 2020 Mar 30;21(7):2375. doi: 10.3390/ijms21072375.
Engineered nanomaterials (ENMs) have gained huge importance in technological advancements over the past few years. Among the various ENMs, silver nanoparticles (AgNPs) have become one of the most explored nanotechnology-derived nanostructures and have been intensively investigated for their unique physicochemical properties. The widespread commercial and biomedical application of nanosilver include its use as a catalyst and an optical receptor in cosmetics, electronics and textile engineering, as a bactericidal agent, and in wound dressings, surgical instruments, and disinfectants. This, in turn, has increased the potential for interactions of AgNPs with terrestrial and aquatic environments, as well as potential exposure and toxicity to human health. In the present review, after giving an overview of ENMs, we discuss the current advances on the physiochemical properties of AgNPs with specific emphasis on biodistribution and both in vitro and in vivo toxicity following various routes of exposure. Most in vitro studies have demonstrated the size-, dose- and coating-dependent cellular uptake of AgNPs. Following NPs exposure, in vivo biodistribution studies have reported Ag accumulation and toxicity to local as well as distant organs. Though there has been an increase in the number of studies in this area, more investigations are required to understand the mechanisms of toxicity following various modes of exposure to AgNPs.
在过去的几年中,工程纳米材料(ENMs)在技术进步中变得非常重要。在各种 ENMs 中,银纳米颗粒(AgNPs)已成为最受关注的纳米技术衍生纳米结构之一,并因其独特的物理化学性质而受到广泛研究。纳米银的广泛商业和生物医学应用包括将其用作化妆品、电子和纺织工程中的催化剂和光学受体、杀菌剂以及在伤口敷料、手术器械和消毒剂中的应用。这反过来又增加了 AgNPs 与陆地和水生环境相互作用的可能性,以及对人类健康的潜在暴露和毒性。在本综述中,在概述 ENMs 之后,我们讨论了 AgNPs 的物理化学性质的最新进展,特别强调了生物分布以及各种暴露途径后的体外和体内毒性。大多数体外研究表明,AgNPs 的细胞摄取与尺寸、剂量和涂层有关。在 NPs 暴露后,体内生物分布研究报告了 Ag 的积累以及对局部和远处器官的毒性。尽管该领域的研究数量有所增加,但仍需要进一步研究来了解 AgNPs 各种暴露模式下的毒性机制。