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银纳米粒子的物理化学性质决定了它们与生物介质的相互作用和杀菌作用吗?一篇综述。

Do physico-chemical properties of silver nanoparticles decide their interaction with biological media and bactericidal action? A review.

机构信息

Department of Biological Sciences, Birla Institute of Technology & Science, Pilani 333031, India.

Department of Biological Sciences, Birla Institute of Technology & Science, Pilani 333031, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2018 Sep 1;90:739-749. doi: 10.1016/j.msec.2018.04.093. Epub 2018 May 1.

Abstract

The unprecedented increase in antibiotic resistance in this era has resuscitated the attention of scientific community to exploit silver and its various species as antimicrobial agents. Plenty of studies have been done to measure the antimicrobial potential of silver species (cationic silver, metallic Ag or silver nanoparticles, silver oxide particulates etc.) and indicated that membrane damage, oxidative stress, protein dysfunction and DNA damage to be the possible cause of injury to the microbial cell. However, the precise molecular mechanism of their mode of action has remained unclear, which makes an obstacle towards the generation of potential antibacterial agent against various pathogenic and multidrug resistant (MDR) bacteria. In order to endeavor this issue, one should first have the complete understanding about the resistance mechanisms present in bacteria that can be a therapeutic target for the silver-based drug formulations. Apart from this, in-depth understanding of the interactions of various silver species (with the biological media) is a probable deciding factor for the synthesis of silver-based drug formulations because the particular form and physico-chemical properties of silver can ultimately decide their antimicrobial action. In context to above mentioned serious concerns, the present article aims to discuss the mechanisms behind the confrontation of bacteria against various drugs and the effect of physico-chemical properties of silver species on their bactericidal action as well as critically evaluates the available reports on bacterial transcriptomic and proteomic profiles upon the exposure of various silver species. Further, this review state the mechanism of action that needs to be followed for the complete understanding of toxic potential of silver nanoparticles, which will open a possibility to synthesize new silver nanoparticle based antimicrobial systems with desired properties to ensure their safe use, exposure over extended period and fate in human body and environment.

摘要

在这个抗生素耐药性空前增长的时代,科学界重新开始关注利用银及其各种化合物作为抗菌剂。已经有大量研究致力于测量银的各种形态(阳离子银、金属银或银纳米粒子、氧化银颗粒等)的抗菌潜力,并表明细胞膜损伤、氧化应激、蛋白质功能障碍和 DNA 损伤可能是微生物细胞损伤的原因。然而,它们作用模式的确切分子机制仍不清楚,这成为针对各种致病和多药耐药(MDR)细菌开发潜在抗菌剂的障碍。为了解决这个问题,首先应该全面了解细菌中存在的耐药机制,这些机制可以成为银基药物制剂的治疗靶点。除此之外,深入了解各种银形态(与生物介质的相互作用)是合成银基药物制剂的一个重要决定因素,因为银的特定形态和物理化学性质最终决定了它们的抗菌作用。鉴于上述严重问题,本文旨在讨论细菌对抗各种药物的机制,以及银形态的物理化学性质对其杀菌作用的影响,并批判性地评估在暴露于各种银形态后细菌转录组和蛋白质组图谱的现有报道。此外,本文还阐述了为了全面了解纳米银毒性潜力需要遵循的作用机制,这将为合成具有所需特性的新型基于银纳米粒子的抗菌系统提供可能性,以确保其安全使用、长期暴露和在人体和环境中的归宿。

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