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Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation

Despite a plethora of literature has documented that osteoarthritis (OA) is veritably associated with oxidative stress-mediated chondrocyte death and matrix degradation, yet the possible involvement of synoviocyte abnormality as causative factor of OA has not been thoroughly investigated. For this r...

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Autores principales: Hsu, Hung-Chih, Chang, Wen-Ming, Wu, Jin-Yi, Huang, Chin-Chin, Lu, Fung-Jou, Chuang, Yi-Wen, Chang, Pey-Jium, Chen, Kai-Hua, Hong, Chang-Zern, Yeh, Rang-Hui, Liu, Tsan-Zon, Chen, Ching-Hsein
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4714898/
https://www.ncbi.nlm.nih.gov/pubmed/26771387
http://dx.doi.org/10.1371/journal.pone.0146440
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author Hsu, Hung-Chih
Chang, Wen-Ming
Wu, Jin-Yi
Huang, Chin-Chin
Lu, Fung-Jou
Chuang, Yi-Wen
Chang, Pey-Jium
Chen, Kai-Hua
Hong, Chang-Zern
Yeh, Rang-Hui
Liu, Tsan-Zon
Chen, Ching-Hsein
author_facet Hsu, Hung-Chih
Chang, Wen-Ming
Wu, Jin-Yi
Huang, Chin-Chin
Lu, Fung-Jou
Chuang, Yi-Wen
Chang, Pey-Jium
Chen, Kai-Hua
Hong, Chang-Zern
Yeh, Rang-Hui
Liu, Tsan-Zon
Chen, Ching-Hsein
author_sort Hsu, Hung-Chih
collection PubMed
description Despite a plethora of literature has documented that osteoarthritis (OA) is veritably associated with oxidative stress-mediated chondrocyte death and matrix degradation, yet the possible involvement of synoviocyte abnormality as causative factor of OA has not been thoroughly investigated. For this reason, we conduct the current studies to insight into how synoviocytes could respond to an episode of folate-deprived (FD) condition. First, when HIG-82 synoviocytes were cultivated under FD condition, a time-dependent growth impediment was observed and the demise of these cells was demonstrated to be apoptotic in nature mediated through FD-evoked overproduction of reactive oxygen species (ROS) and drastically released of cytosolic calcium (Ca(2+)) concentrations. Next, we uncovered that FD-evoked ROS overproduction could only be strongly suppressed by either mitochondrial complex II inhibitors (TTFA and carboxin) or NADPH oxidase (NOX) inhibitors (AEBSF and apocynin), but not by mitochondrial complex I inhibitor (rotenone) and mitochondrial complex III inhibitor (antimycin A). Interestingly, this selective inhibition of FD-evoked ROS by mitochondrial complex II and NOX inhibitors was found to correlate excellently with the suppression of cytosolic Ca(2+) release and reduced the magnitude of the apoptotic TUNEL-positive cells. Taken together, we present the first evidence here that FD-triggered ROS overproduction in synoviocytes is originated from mitochondrial complex II and NOX. Both elevated ROS in tandem with cytosolic Ca(2+) overload serve as final arbitrators for apoptotic lethality of synoviocytes cultivated under FD condition. Thus, folate supplementation may be beneficial to patients with OA.
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spelling pubmed-47148982016-01-30 Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation Hsu, Hung-Chih Chang, Wen-Ming Wu, Jin-Yi Huang, Chin-Chin Lu, Fung-Jou Chuang, Yi-Wen Chang, Pey-Jium Chen, Kai-Hua Hong, Chang-Zern Yeh, Rang-Hui Liu, Tsan-Zon Chen, Ching-Hsein PLoS One Research Article Despite a plethora of literature has documented that osteoarthritis (OA) is veritably associated with oxidative stress-mediated chondrocyte death and matrix degradation, yet the possible involvement of synoviocyte abnormality as causative factor of OA has not been thoroughly investigated. For this reason, we conduct the current studies to insight into how synoviocytes could respond to an episode of folate-deprived (FD) condition. First, when HIG-82 synoviocytes were cultivated under FD condition, a time-dependent growth impediment was observed and the demise of these cells was demonstrated to be apoptotic in nature mediated through FD-evoked overproduction of reactive oxygen species (ROS) and drastically released of cytosolic calcium (Ca(2+)) concentrations. Next, we uncovered that FD-evoked ROS overproduction could only be strongly suppressed by either mitochondrial complex II inhibitors (TTFA and carboxin) or NADPH oxidase (NOX) inhibitors (AEBSF and apocynin), but not by mitochondrial complex I inhibitor (rotenone) and mitochondrial complex III inhibitor (antimycin A). Interestingly, this selective inhibition of FD-evoked ROS by mitochondrial complex II and NOX inhibitors was found to correlate excellently with the suppression of cytosolic Ca(2+) release and reduced the magnitude of the apoptotic TUNEL-positive cells. Taken together, we present the first evidence here that FD-triggered ROS overproduction in synoviocytes is originated from mitochondrial complex II and NOX. Both elevated ROS in tandem with cytosolic Ca(2+) overload serve as final arbitrators for apoptotic lethality of synoviocytes cultivated under FD condition. Thus, folate supplementation may be beneficial to patients with OA. Public Library of Science 2016-01-15 /pmc/articles/PMC4714898/ /pubmed/26771387 http://dx.doi.org/10.1371/journal.pone.0146440 Text en © 2016 Hsu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hsu, Hung-Chih
Chang, Wen-Ming
Wu, Jin-Yi
Huang, Chin-Chin
Lu, Fung-Jou
Chuang, Yi-Wen
Chang, Pey-Jium
Chen, Kai-Hua
Hong, Chang-Zern
Yeh, Rang-Hui
Liu, Tsan-Zon
Chen, Ching-Hsein
Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation
title Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation
title_full Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation
title_fullStr Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation
title_full_unstemmed Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation
title_short Folate Deficiency Triggered Apoptosis of Synoviocytes: Role of Overproduction of Reactive Oxygen Species Generated via NADPH Oxidase/Mitochondrial Complex II and Calcium Perturbation
title_sort folate deficiency triggered apoptosis of synoviocytes: role of overproduction of reactive oxygen species generated via nadph oxidase/mitochondrial complex ii and calcium perturbation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4714898/
https://www.ncbi.nlm.nih.gov/pubmed/26771387
http://dx.doi.org/10.1371/journal.pone.0146440
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