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Intracellular accumulation of indium ions released from nanoparticles induces oxidative stress, proinflammatory response and DNA damage.

Authors :
Tabei Y
Sonoda A
Nakajima Y
Biju V
Makita Y
Yoshida Y
Horie M
Source :
Journal of biochemistry [J Biochem] 2016 Feb; Vol. 159 (2), pp. 225-37. Date of Electronic Publication: 2015 Sep 15.
Publication Year :
2016

Abstract

Due to the widespread use of indium tin oxide (ITO), it is important to investigate its effect on human health. In this study, we evaluated the cellular effects of ITO nanoparticles (NPs), indium chloride (InCl3) and tin chloride (SnCl3) using human lung epithelial A549 cells. Transmission electron microscopy and inductively coupled plasma mass spectrometry were employed to study cellular ITO NP uptake. Interestingly, greater uptake of ITO NPs was observed, as compared with soluble salts. ITO NP species released could be divided into two types: 'indium release ITO' or 'tin release ITO'. We incubated A549 cells with indium release ITO, tin release ITO, InCl3 or SnCl2 and investigated oxidative stress, proinflammatory response, cytotoxicity and DNA damage. We found that intracellular reactive oxygen species were increased in cells incubated with indium release ITO, but not tin release ITO, InCl3 or SnCl2. Messenger RNA and protein levels of the inflammatory marker, interleukin-8, also increased following exposure to indium release ITO. Furthermore, the alkaline comet assay revealed that intracellular accumulation of indium ions induced DNA damage. Our results demonstrate that the accumulation of ionic indium, but not ionic tin, from ITO NPs in the intracellular matrix has extensive cellular effects.<br /> (© The Authors 2015. Published by Oxford University Press on behalf of the Japanese Biochemical Society. All rights reserved.)

Details

Language :
English
ISSN :
1756-2651
Volume :
159
Issue :
2
Database :
MEDLINE
Journal :
Journal of biochemistry
Publication Type :
Academic Journal
Accession number :
26378248
Full Text :
https://doi.org/10.1093/jb/mvv098