作者
Zhe Wang, Sijin Liu, Juan Ma, Guangbo Qu, Xiaoyan Wang, Sujuan Yu, Jiuyang He, Jingfu Liu, Tian Xia, Gui-Bin Jiang
发表日期
2013/5/28
期刊
ACS nano
卷号
7
期号
5
页码范围
4171-4186
出版商
American Chemical Society
简介
Due to its antimicrobial activity, nanosilver (nAg) has become the most widely used nanomaterial. Thus far, the mechanisms responsible for nAg-induced antimicrobial properties and nAg-mediated toxicity to organisms have not been clearly recognized. Silver (Ag) ions certainly play a crucial role, and the form of nanoparticles can change the dissolution rate, bioavailability, biodistribution, and cellular uptake of Ag. However, whether nAg exerts direct “particle-specific” effects has been under debate. Here we demonstrated that nAg exhibited a robust inhibition on RNA polymerase activity and overall RNA transcription through direct Ag binding to RNA polymerase, which is separated from the cytotoxicity pathway induced by Ag ions. nAg treatment in vitro resulted in reduced hemoglobin concentration in erythroid cells; in vivo administration of nAg in mice caused profound reduction of hemoglobin content in embryonic …
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