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Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells

BACKGROUND: Cobalt oxide nanoparticles (Co(3)O(4)NPs) are increasingly recognized for their utility in biological applications, magnetic resonance imaging, and drug delivery. However, little is known about the toxicity of Co(3)O(4)NPs in human cells. METHODS: We investigated the possible mechanisms...

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Autores principales: Alarifi, Saud, Ali, Daoud, Y, Al Omar Suliman, Ahamed, Maqusood, Siddiqui, Maqsood A, Al-Khedhairy, Abdulaziz A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544340/
https://www.ncbi.nlm.nih.gov/pubmed/23326189
http://dx.doi.org/10.2147/IJN.S37924
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author Alarifi, Saud
Ali, Daoud
Y, Al Omar Suliman
Ahamed, Maqusood
Siddiqui, Maqsood A
Al-Khedhairy, Abdulaziz A
author_facet Alarifi, Saud
Ali, Daoud
Y, Al Omar Suliman
Ahamed, Maqusood
Siddiqui, Maqsood A
Al-Khedhairy, Abdulaziz A
author_sort Alarifi, Saud
collection PubMed
description BACKGROUND: Cobalt oxide nanoparticles (Co(3)O(4)NPs) are increasingly recognized for their utility in biological applications, magnetic resonance imaging, and drug delivery. However, little is known about the toxicity of Co(3)O(4)NPs in human cells. METHODS: We investigated the possible mechanisms of genotoxicity induced by Co(3)O(4)NPs in human hepatocarcinoma (HepG2) cells. Cell viability, reactive oxygen species (ROS), glutathione, thiobarbituric acid reactive substance, apoptosis, and DNA damage were assessed in HepG2 cells after Co(3)O(4)NPs and Co(2+) exposure. RESULTS: Co(3)O(4)NPs elicited a significant (P < 0.01) reduction in glutathione with a concomitant increase in lipid hydroperoxide, ROS generation, superoxide dismutase, and catalase activity after 24- and 48-hour exposure. Co(3)O(4)NPs had a mild cytotoxic effect in HepG2 cells; however, it induced ROS and oxidative stress, leading to DNA damage, a probable mechanism of genotoxicity. The comet assay showed a statistically significant (P < 0.01) dose- and time-related increase in DNA damage for Co(3)O(4)NPs, whereas Co(2+) induced less change than Co(3)O(4)NPs but significantly more than control. CONCLUSION: Our results demonstrated that Co(3)O(4)NPs induced cytotoxicity and genotoxicity in HepG2 cells through ROS and oxidative stress.
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spelling pubmed-35443402013-01-16 Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells Alarifi, Saud Ali, Daoud Y, Al Omar Suliman Ahamed, Maqusood Siddiqui, Maqsood A Al-Khedhairy, Abdulaziz A Int J Nanomedicine Original Research BACKGROUND: Cobalt oxide nanoparticles (Co(3)O(4)NPs) are increasingly recognized for their utility in biological applications, magnetic resonance imaging, and drug delivery. However, little is known about the toxicity of Co(3)O(4)NPs in human cells. METHODS: We investigated the possible mechanisms of genotoxicity induced by Co(3)O(4)NPs in human hepatocarcinoma (HepG2) cells. Cell viability, reactive oxygen species (ROS), glutathione, thiobarbituric acid reactive substance, apoptosis, and DNA damage were assessed in HepG2 cells after Co(3)O(4)NPs and Co(2+) exposure. RESULTS: Co(3)O(4)NPs elicited a significant (P < 0.01) reduction in glutathione with a concomitant increase in lipid hydroperoxide, ROS generation, superoxide dismutase, and catalase activity after 24- and 48-hour exposure. Co(3)O(4)NPs had a mild cytotoxic effect in HepG2 cells; however, it induced ROS and oxidative stress, leading to DNA damage, a probable mechanism of genotoxicity. The comet assay showed a statistically significant (P < 0.01) dose- and time-related increase in DNA damage for Co(3)O(4)NPs, whereas Co(2+) induced less change than Co(3)O(4)NPs but significantly more than control. CONCLUSION: Our results demonstrated that Co(3)O(4)NPs induced cytotoxicity and genotoxicity in HepG2 cells through ROS and oxidative stress. Dove Medical Press 2013 2013-01-08 /pmc/articles/PMC3544340/ /pubmed/23326189 http://dx.doi.org/10.2147/IJN.S37924 Text en © 2013 Alarifi et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Alarifi, Saud
Ali, Daoud
Y, Al Omar Suliman
Ahamed, Maqusood
Siddiqui, Maqsood A
Al-Khedhairy, Abdulaziz A
Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells
title Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells
title_full Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells
title_fullStr Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells
title_full_unstemmed Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells
title_short Oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and DNA damage in human hepatocarcinoma cells
title_sort oxidative stress contributes to cobalt oxide nanoparticles-induced cytotoxicity and dna damage in human hepatocarcinoma cells
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544340/
https://www.ncbi.nlm.nih.gov/pubmed/23326189
http://dx.doi.org/10.2147/IJN.S37924
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