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  4. Defect-induced electronic states amplify the cellular toxicity of ZnO nanoparticles
 
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Defect-induced electronic states amplify the cellular toxicity of ZnO nanoparticles

Source
Nanotoxicology
ISSN
17435390
Date Issued
2020-02-07
Author(s)
Persaud, Indushekhar
Raghavendra, Achyut J.
Paruthi, Archini
Alsaleh, Nasser B.
Minarchick, Valerie C.
Roede, James R.
Podila, Ramakrishna
Brown, Jared M.
DOI
10.1080/17435390.2019.1668067
Volume
14
Issue
2
Abstract
Zinc oxide nanoparticles (ZnO NPs) are used in numerous applications, including sunscreens, cosmetics, textiles, and electrical devices. Increased consumer and occupational exposure to ZnO NPs potentially poses a risk for toxicity. While many studies have examined the toxicity of ZnO NPs, little is known regarding the toxicological impact of inherent defects arising from batch-to-batch variations. It was hypothesized that the presence of varying chemical defects in ZnO NPs will contribute to cellular toxicity in rat aortic endothelial cells (RAECs). Pristine and defected ZnO NPs (oxidized, reduced, and annealed) were prepared and assessed three major cellular outcomes; cytotoxicity/apoptosis, reactive oxygen species production and oxidative stress, and endoplasmic reticulum (ER) stress. ZnO NPs chemical defects were confirmed by X-ray photoelectron spectroscopy and photoluminescence. Increased toxicity was observed in defected ZnO NPs compared to the pristine NPs as measured by cell viability, ER stress, and glutathione redox potential. It was determined that ZnO NPs induced ER stress through the PERK pathway. Taken together, these results demonstrate a previously unrecognized contribution of chemical defects to the toxicity of ZnO NPs, which should be considered in the risk assessment of engineered nanomaterials.
Publication link
https://www.ncbi.nlm.nih.gov/pmc/articles/7036006
URI
https://d8.irins.org/handle/IITG2025/23085
Subjects
defects | electronic states | endothelial cell | Nanotoxicity | zinc oxide
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