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Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells

Tendinopathy, which is characterized by the ectopic ossification of tendon, is a common disease occurring in certain population, such as athletes that suffer from repetitive tendon strains. However, the molecular mechanism underlying the pathogenesis of tendinopathy caused by the overuse of tendon i...

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Autores principales: Geng, Yiyun, Zhao, Xiaoying, Xu, Jiajia, Zhang, Xudong, Hu, Guoli, Fu, Sai-Chuen, Dai, Kerong, Chen, Xiaodong, Patrick, Yung shu-huang, Zhang, Xiaoling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7232128/
https://www.ncbi.nlm.nih.gov/pubmed/31065679
http://dx.doi.org/10.1093/jmcb/mjz030
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author Geng, Yiyun
Zhao, Xiaoying
Xu, Jiajia
Zhang, Xudong
Hu, Guoli
Fu, Sai-Chuen
Dai, Kerong
Chen, Xiaodong
Patrick, Yung shu-huang
Zhang, Xiaoling
author_facet Geng, Yiyun
Zhao, Xiaoying
Xu, Jiajia
Zhang, Xudong
Hu, Guoli
Fu, Sai-Chuen
Dai, Kerong
Chen, Xiaodong
Patrick, Yung shu-huang
Zhang, Xiaoling
author_sort Geng, Yiyun
collection PubMed
description Tendinopathy, which is characterized by the ectopic ossification of tendon, is a common disease occurring in certain population, such as athletes that suffer from repetitive tendon strains. However, the molecular mechanism underlying the pathogenesis of tendinopathy caused by the overuse of tendon is still lacking. Here, we found that the mechanosensitive miRNA, miR-337-3p, had lower expression under uniaxial cyclical mechanical loading in tendon-derived stem cells (TDSCs) and negatively controlled chondro-osteogenic differentiation of TDSCs. Importantly, downregulation of miR-337-3p expression was also observed in both rat and human calcified tendons, and overexpressing miR-337-3p in patellar tendons of rat tendinopathy model displayed a robust therapeutic efficiency. Mechanistically, we found that the proinflammatory cytokine interleukin-1β was the upstream factor of miR-337-3p that bridges the mechanical loading with its downregulation. Furthermore, the target genes of miR-337-3p, NADPH oxidase 4, and insulin receptor substrate 1, activated chondro-osteogenic differentiation of TDSCs through JNK and ERK signaling, respectively. Thus, these findings not only provide novel insight into the molecular mechanisms underlying ectopic ossification in tendinopathy but also highlight the significance of miR-337-3p as a putative therapeutic target for clinic treatment of tendinopathy.
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spelling pubmed-72321282020-05-21 Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells Geng, Yiyun Zhao, Xiaoying Xu, Jiajia Zhang, Xudong Hu, Guoli Fu, Sai-Chuen Dai, Kerong Chen, Xiaodong Patrick, Yung shu-huang Zhang, Xiaoling J Mol Cell Biol Article Tendinopathy, which is characterized by the ectopic ossification of tendon, is a common disease occurring in certain population, such as athletes that suffer from repetitive tendon strains. However, the molecular mechanism underlying the pathogenesis of tendinopathy caused by the overuse of tendon is still lacking. Here, we found that the mechanosensitive miRNA, miR-337-3p, had lower expression under uniaxial cyclical mechanical loading in tendon-derived stem cells (TDSCs) and negatively controlled chondro-osteogenic differentiation of TDSCs. Importantly, downregulation of miR-337-3p expression was also observed in both rat and human calcified tendons, and overexpressing miR-337-3p in patellar tendons of rat tendinopathy model displayed a robust therapeutic efficiency. Mechanistically, we found that the proinflammatory cytokine interleukin-1β was the upstream factor of miR-337-3p that bridges the mechanical loading with its downregulation. Furthermore, the target genes of miR-337-3p, NADPH oxidase 4, and insulin receptor substrate 1, activated chondro-osteogenic differentiation of TDSCs through JNK and ERK signaling, respectively. Thus, these findings not only provide novel insight into the molecular mechanisms underlying ectopic ossification in tendinopathy but also highlight the significance of miR-337-3p as a putative therapeutic target for clinic treatment of tendinopathy. Oxford University Press 2019-05-08 /pmc/articles/PMC7232128/ /pubmed/31065679 http://dx.doi.org/10.1093/jmcb/mjz030 Text en © The Author(s) (2019). Published by Oxford University Press on behalf of Journal of Molecular Cell Biology, IBCB, SIBS, CAS. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Geng, Yiyun
Zhao, Xiaoying
Xu, Jiajia
Zhang, Xudong
Hu, Guoli
Fu, Sai-Chuen
Dai, Kerong
Chen, Xiaodong
Patrick, Yung shu-huang
Zhang, Xiaoling
Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
title Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
title_full Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
title_fullStr Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
title_full_unstemmed Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
title_short Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
title_sort overexpression of mechanical sensitive mir-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting irs1 and nox4 of tendon-derived stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7232128/
https://www.ncbi.nlm.nih.gov/pubmed/31065679
http://dx.doi.org/10.1093/jmcb/mjz030
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