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DOI | 10.1016/j.tiv.2013.07.005 |
Investigating oxidative stress and inflammatory responses elicited by silver nanoparticles using high-throughput reporter genes in HepG2 cells: Effect of size, surface coating, and intracellular uptake | |
Prasad, Raju Y.1; McGee, John K.2; Killius, Micaela G.1; Suarez, Danielle A.3; Blackman, Carl F.3; DeMarini, David M.3; Simmons, Steven O.3 | |
发表日期 | 2013-09-01 |
ISSN | 0887-2333 |
卷号 | 27期号:6页码:2013-2021 |
英文摘要 | Silver nanoparticles (Ag NP) have been shown to generate reactive oxygen species; however, the association between physicochemical characteristics of nanoparticles and cellular stress responses elicited by exposure has not been elucidated. Here, we examined three key stress-responsive pathways activated by Nrf-2/ARE, NP kappa B, and API during exposure to Ag NP of two distinct sizes (10 and 75 nm) and coatings (citrate and polyvinylpyrrolidone), as well as silver nitrate (AgNO3), and CeO2 nanoparticles. The in vitro assays assessed the cellular response in a battery of stable luciferase-reporter HepG2 cell lines. We further assessed the impact of Ag NP and AgNO3 exposure on cellular redox status by measuring glutathione depletion. Lastly, we determined intracellular Ag concentration by inductively coupled plasma mass spectroscopy (ICP-MS) and re-analyzed reporter-gene data using these values to estimate the relative potencies of the Ag NPs and AgNO3. Our results show activation of all three stress response pathways, with Nrf-2/ARE displaying the strongest response elicited by each Ag NP and AgNO3 evaluated here. The smaller (10-nm) Ag NPs were more potent than the larger (75-nm) Ag NPs in each stress-rsponse pathway, and citrate-coated Ag NPs had higher intracellular silver concentrations compared with both PVP-coated Ag NP and AgNO3. The cellular stress response profiles after Ag NP exposure were similar to that of AgNO3, suggesting that the oxidative stress and inflammatory effects of Ag NP are likely due to the cytotoxicity of silver ions. Published by Elsevier Ltd. |
英文关键词 | Silver;Nanoparticles;Reporter genes;Stress response;NRF2;Oxidative stress |
语种 | 英语 |
WOS记录号 | WOS:000324847800048 |
来源期刊 | TOXICOLOGY IN VITRO
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来源机构 | 美国环保署 |
文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/62519 |
作者单位 | 1.US EPA, Student Serv Contractor, Integrated Syst Toxicol Div, Res Triangle Pk, NC 27711 USA; 2.US EPA, Environm Publ Hlth Div, Res Triangle Pk, NC 27711 USA; 3.US EPA, Integrated Syst Toxicol Div, Res Triangle Pk, NC 27711 USA |
推荐引用方式 GB/T 7714 | Prasad, Raju Y.,McGee, John K.,Killius, Micaela G.,et al. Investigating oxidative stress and inflammatory responses elicited by silver nanoparticles using high-throughput reporter genes in HepG2 cells: Effect of size, surface coating, and intracellular uptake[J]. 美国环保署,2013,27(6):2013-2021. |
APA | Prasad, Raju Y..,McGee, John K..,Killius, Micaela G..,Suarez, Danielle A..,Blackman, Carl F..,...&Simmons, Steven O..(2013).Investigating oxidative stress and inflammatory responses elicited by silver nanoparticles using high-throughput reporter genes in HepG2 cells: Effect of size, surface coating, and intracellular uptake.TOXICOLOGY IN VITRO,27(6),2013-2021. |
MLA | Prasad, Raju Y.,et al."Investigating oxidative stress and inflammatory responses elicited by silver nanoparticles using high-throughput reporter genes in HepG2 cells: Effect of size, surface coating, and intracellular uptake".TOXICOLOGY IN VITRO 27.6(2013):2013-2021. |
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