Cargando…

Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy

Compromised autophagy and mitochondrial dysfunction downregulate chondrocytic activity, accelerating the development of osteoarthritis (OA). Irisin, a cleaved form of fibronectin type III domain containing 5 (FNDC5), regulates bone turnover and muscle homeostasis. Little is known about the effect of...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Feng-Sheng, Kuo, Chung-Wen, Ko, Jih-Yang, Chen, Yu-Shan, Wang, Shao-Yu, Ke, Huei-Jing, Kuo, Pei-Chen, Lee, Chin-Huei, Wu, Jian-Ching, Lu, Wen-Bin, Tai, Ming-Hong, Jahr, Holger, Lian, Wei-Shiung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7555738/
https://www.ncbi.nlm.nih.gov/pubmed/32882839
http://dx.doi.org/10.3390/antiox9090810
_version_ 1783594077384605696
author Wang, Feng-Sheng
Kuo, Chung-Wen
Ko, Jih-Yang
Chen, Yu-Shan
Wang, Shao-Yu
Ke, Huei-Jing
Kuo, Pei-Chen
Lee, Chin-Huei
Wu, Jian-Ching
Lu, Wen-Bin
Tai, Ming-Hong
Jahr, Holger
Lian, Wei-Shiung
author_facet Wang, Feng-Sheng
Kuo, Chung-Wen
Ko, Jih-Yang
Chen, Yu-Shan
Wang, Shao-Yu
Ke, Huei-Jing
Kuo, Pei-Chen
Lee, Chin-Huei
Wu, Jian-Ching
Lu, Wen-Bin
Tai, Ming-Hong
Jahr, Holger
Lian, Wei-Shiung
author_sort Wang, Feng-Sheng
collection PubMed
description Compromised autophagy and mitochondrial dysfunction downregulate chondrocytic activity, accelerating the development of osteoarthritis (OA). Irisin, a cleaved form of fibronectin type III domain containing 5 (FNDC5), regulates bone turnover and muscle homeostasis. Little is known about the effect of Irisin on chondrocytes and the development of osteoarthritis. This study revealed that human osteoarthritic articular chondrocytes express decreased level of FNDC5 and autophagosome marker LC3-II but upregulated levels of oxidative DNA damage marker 8-hydroxydeoxyguanosine (8-OHdG) and apoptosis. Intra-articular administration of Irisin further alleviated symptoms of medial meniscus destabilization, like cartilage erosion and synovitis, while improved the gait profiles of the injured legs. Irisin treatment upregulated autophagy, 8-OHdG and apoptosis in chondrocytes of the injured cartilage. In vitro, Irisin improved IL-1β-mediated growth inhibition, loss of specific cartilage markers and glycosaminoglycan production by chondrocytes. Irisin also reversed Sirt3 and UCP-1 pathways, thereby improving mitochondrial membrane potential, ATP production, and catalase to attenuated IL-1β-mediated reactive oxygen radical production, mitochondrial fusion, mitophagy, and autophagosome formation. Taken together, FNDC5 loss in chondrocytes is correlated with human knee OA. Irisin repressed inflammation-mediated oxidative stress and extracellular matrix underproduction through retaining mitochondrial biogenesis, dynamics and autophagic program. Our analyses shed new light on the chondroprotective actions of this myokine, and highlight the remedial effects of Irisin on OA development.
format Online
Article
Text
id pubmed-7555738
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75557382020-10-19 Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy Wang, Feng-Sheng Kuo, Chung-Wen Ko, Jih-Yang Chen, Yu-Shan Wang, Shao-Yu Ke, Huei-Jing Kuo, Pei-Chen Lee, Chin-Huei Wu, Jian-Ching Lu, Wen-Bin Tai, Ming-Hong Jahr, Holger Lian, Wei-Shiung Antioxidants (Basel) Article Compromised autophagy and mitochondrial dysfunction downregulate chondrocytic activity, accelerating the development of osteoarthritis (OA). Irisin, a cleaved form of fibronectin type III domain containing 5 (FNDC5), regulates bone turnover and muscle homeostasis. Little is known about the effect of Irisin on chondrocytes and the development of osteoarthritis. This study revealed that human osteoarthritic articular chondrocytes express decreased level of FNDC5 and autophagosome marker LC3-II but upregulated levels of oxidative DNA damage marker 8-hydroxydeoxyguanosine (8-OHdG) and apoptosis. Intra-articular administration of Irisin further alleviated symptoms of medial meniscus destabilization, like cartilage erosion and synovitis, while improved the gait profiles of the injured legs. Irisin treatment upregulated autophagy, 8-OHdG and apoptosis in chondrocytes of the injured cartilage. In vitro, Irisin improved IL-1β-mediated growth inhibition, loss of specific cartilage markers and glycosaminoglycan production by chondrocytes. Irisin also reversed Sirt3 and UCP-1 pathways, thereby improving mitochondrial membrane potential, ATP production, and catalase to attenuated IL-1β-mediated reactive oxygen radical production, mitochondrial fusion, mitophagy, and autophagosome formation. Taken together, FNDC5 loss in chondrocytes is correlated with human knee OA. Irisin repressed inflammation-mediated oxidative stress and extracellular matrix underproduction through retaining mitochondrial biogenesis, dynamics and autophagic program. Our analyses shed new light on the chondroprotective actions of this myokine, and highlight the remedial effects of Irisin on OA development. MDPI 2020-09-01 /pmc/articles/PMC7555738/ /pubmed/32882839 http://dx.doi.org/10.3390/antiox9090810 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Feng-Sheng
Kuo, Chung-Wen
Ko, Jih-Yang
Chen, Yu-Shan
Wang, Shao-Yu
Ke, Huei-Jing
Kuo, Pei-Chen
Lee, Chin-Huei
Wu, Jian-Ching
Lu, Wen-Bin
Tai, Ming-Hong
Jahr, Holger
Lian, Wei-Shiung
Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy
title Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy
title_full Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy
title_fullStr Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy
title_full_unstemmed Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy
title_short Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy
title_sort irisin mitigates oxidative stress, chondrocyte dysfunction and osteoarthritis development through regulating mitochondrial integrity and autophagy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7555738/
https://www.ncbi.nlm.nih.gov/pubmed/32882839
http://dx.doi.org/10.3390/antiox9090810
work_keys_str_mv AT wangfengsheng irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT kuochungwen irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT kojihyang irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT chenyushan irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT wangshaoyu irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT kehueijing irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT kuopeichen irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT leechinhuei irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT wujianching irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT luwenbin irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT taiminghong irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT jahrholger irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy
AT lianweishiung irisinmitigatesoxidativestresschondrocytedysfunctionandosteoarthritisdevelopmentthroughregulatingmitochondrialintegrityandautophagy