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Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation

Dental resin monomers such as 2-hydroxyethyl methacrylate (HEMA) disturb vital cell functions and induce mitochondrial intrinsic apoptosis via generation of oxidative stress. Nuclear factor erythroid 2-related factor 2 (Nrf2) regulates the gene expression of antioxidative enzymes and plays a crucial...

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Autores principales: Jiao, Yang, Niu, Tao, Liu, Huan, Tay, Franklin R., Chen, Ji-hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6476051/
https://www.ncbi.nlm.nih.gov/pubmed/31089407
http://dx.doi.org/10.1155/2019/3501059
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author Jiao, Yang
Niu, Tao
Liu, Huan
Tay, Franklin R.
Chen, Ji-hua
author_facet Jiao, Yang
Niu, Tao
Liu, Huan
Tay, Franklin R.
Chen, Ji-hua
author_sort Jiao, Yang
collection PubMed
description Dental resin monomers such as 2-hydroxyethyl methacrylate (HEMA) disturb vital cell functions and induce mitochondrial intrinsic apoptosis via generation of oxidative stress. Nuclear factor erythroid 2-related factor 2 (Nrf2) regulates the gene expression of antioxidative enzymes and plays a crucial role in the maintenance of cellular redox equilibrium and mitochondrial homeostasis. The present study investigated the functional significance of Nrf2 in cellular response toward HEMA. It was found that HEMA stimulation promoted nuclear translocation of Nrf2 and increased Nrf2 and heme oxygenase-1 (HO-1) expression, which was further enhanced by Nrf2 activator tert-butylhydroquinone (tBHQ), but suppressed by Nrf2 inhibitor ML385. Pretreatment of primary human dental pulp cells (hDPCs) with tBHQ protected the cells from HEMA-induced oxidative injury (increased reactive oxygen species production and apoptosis) and mitochondrial impairment (morphological alterations, decreased ATP production, suppressed oxidative phosphorylation activity, depolarization of mitochondrial membrane potential, and disrupted electron transport chain). In contrast, pretreatment with ML385 increased cell sensitivity to these injurious processes. This protective effect on mitochondria could be related to peroxisome proliferator-activated receptor γ coactivator 1α (PGC1α)/nuclear respiratory factor 1 (NRF1) pathway. These results contribute to the understanding of the function of Nrf2 and the development of novel therapies to counteract the adverse effects of dental resin monomers.
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spelling pubmed-64760512019-05-14 Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation Jiao, Yang Niu, Tao Liu, Huan Tay, Franklin R. Chen, Ji-hua Oxid Med Cell Longev Research Article Dental resin monomers such as 2-hydroxyethyl methacrylate (HEMA) disturb vital cell functions and induce mitochondrial intrinsic apoptosis via generation of oxidative stress. Nuclear factor erythroid 2-related factor 2 (Nrf2) regulates the gene expression of antioxidative enzymes and plays a crucial role in the maintenance of cellular redox equilibrium and mitochondrial homeostasis. The present study investigated the functional significance of Nrf2 in cellular response toward HEMA. It was found that HEMA stimulation promoted nuclear translocation of Nrf2 and increased Nrf2 and heme oxygenase-1 (HO-1) expression, which was further enhanced by Nrf2 activator tert-butylhydroquinone (tBHQ), but suppressed by Nrf2 inhibitor ML385. Pretreatment of primary human dental pulp cells (hDPCs) with tBHQ protected the cells from HEMA-induced oxidative injury (increased reactive oxygen species production and apoptosis) and mitochondrial impairment (morphological alterations, decreased ATP production, suppressed oxidative phosphorylation activity, depolarization of mitochondrial membrane potential, and disrupted electron transport chain). In contrast, pretreatment with ML385 increased cell sensitivity to these injurious processes. This protective effect on mitochondria could be related to peroxisome proliferator-activated receptor γ coactivator 1α (PGC1α)/nuclear respiratory factor 1 (NRF1) pathway. These results contribute to the understanding of the function of Nrf2 and the development of novel therapies to counteract the adverse effects of dental resin monomers. Hindawi 2019-04-07 /pmc/articles/PMC6476051/ /pubmed/31089407 http://dx.doi.org/10.1155/2019/3501059 Text en Copyright © 2019 Yang Jiao et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jiao, Yang
Niu, Tao
Liu, Huan
Tay, Franklin R.
Chen, Ji-hua
Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation
title Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation
title_full Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation
title_fullStr Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation
title_full_unstemmed Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation
title_short Protection against HEMA-Induced Mitochondrial Injury In Vitro by Nrf2 Activation
title_sort protection against hema-induced mitochondrial injury in vitro by nrf2 activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6476051/
https://www.ncbi.nlm.nih.gov/pubmed/31089407
http://dx.doi.org/10.1155/2019/3501059
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