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CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition
Tendinopathy, the most common disorder affecting tendons, is characterized by chronic disorganization of the tendon matrix, which leads to tendon tear and rupture. The goal was to identify a rational molecular target whose blockade can serve as a potential therapeutic intervention for tendinopathy....
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Association for the Advancement of Science
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8604415/ https://www.ncbi.nlm.nih.gov/pubmed/34797714 http://dx.doi.org/10.1126/sciadv.abg6069 |
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author | Cho, Yongsik Kim, Hyeon-Seop Kang, Donghyun Kim, Hyeonkyeong Lee, Narae Yun, Jihye Kim, Yi-Jun Lee, Kyoung Min Kim, Jin-Hee Kim, Hang-Rae Hwang, Young-il Jo, Chris Hyunchul Kim, Jin-Hong |
author_facet | Cho, Yongsik Kim, Hyeon-Seop Kang, Donghyun Kim, Hyeonkyeong Lee, Narae Yun, Jihye Kim, Yi-Jun Lee, Kyoung Min Kim, Jin-Hee Kim, Hang-Rae Hwang, Young-il Jo, Chris Hyunchul Kim, Jin-Hong |
author_sort | Cho, Yongsik |
collection | PubMed |
description | Tendinopathy, the most common disorder affecting tendons, is characterized by chronic disorganization of the tendon matrix, which leads to tendon tear and rupture. The goal was to identify a rational molecular target whose blockade can serve as a potential therapeutic intervention for tendinopathy. We identified C1q/TNF-related protein-3 (CTRP3) as a markedly up-regulated cytokine in human and rodent tendinopathy. Overexpression of CTRP3 enhanced the progression of tendinopathy by accumulating cartilaginous proteoglycans and degenerating collagenous fibers in the mouse tendon, whereas CTRP3 knockdown suppressed the tendinopathy pathogenesis. Functional blockade of CTRP3 using a neutralizing antibody ameliorated overuse-induced tendinopathy of the Achilles and rotator cuff tendons. Mechanistically, CTRP3 elicited a transcriptomic pattern that stimulates abnormal differentiation of tendon stem/progenitor cells and ectopic chondrification as an effect linked to activation of Akt signaling. Collectively, we reveal an essential role for CTRP3 in tendinopathy and propose a potential therapeutic strategy for the treatment of tendinopathy. |
format | Online Article Text |
id | pubmed-8604415 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | American Association for the Advancement of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-86044152021-12-01 CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition Cho, Yongsik Kim, Hyeon-Seop Kang, Donghyun Kim, Hyeonkyeong Lee, Narae Yun, Jihye Kim, Yi-Jun Lee, Kyoung Min Kim, Jin-Hee Kim, Hang-Rae Hwang, Young-il Jo, Chris Hyunchul Kim, Jin-Hong Sci Adv Biomedicine and Life Sciences Tendinopathy, the most common disorder affecting tendons, is characterized by chronic disorganization of the tendon matrix, which leads to tendon tear and rupture. The goal was to identify a rational molecular target whose blockade can serve as a potential therapeutic intervention for tendinopathy. We identified C1q/TNF-related protein-3 (CTRP3) as a markedly up-regulated cytokine in human and rodent tendinopathy. Overexpression of CTRP3 enhanced the progression of tendinopathy by accumulating cartilaginous proteoglycans and degenerating collagenous fibers in the mouse tendon, whereas CTRP3 knockdown suppressed the tendinopathy pathogenesis. Functional blockade of CTRP3 using a neutralizing antibody ameliorated overuse-induced tendinopathy of the Achilles and rotator cuff tendons. Mechanistically, CTRP3 elicited a transcriptomic pattern that stimulates abnormal differentiation of tendon stem/progenitor cells and ectopic chondrification as an effect linked to activation of Akt signaling. Collectively, we reveal an essential role for CTRP3 in tendinopathy and propose a potential therapeutic strategy for the treatment of tendinopathy. American Association for the Advancement of Science 2021-11-19 /pmc/articles/PMC8604415/ /pubmed/34797714 http://dx.doi.org/10.1126/sciadv.abg6069 Text en Copyright © 2021 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited. |
spellingShingle | Biomedicine and Life Sciences Cho, Yongsik Kim, Hyeon-Seop Kang, Donghyun Kim, Hyeonkyeong Lee, Narae Yun, Jihye Kim, Yi-Jun Lee, Kyoung Min Kim, Jin-Hee Kim, Hang-Rae Hwang, Young-il Jo, Chris Hyunchul Kim, Jin-Hong CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
title | CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
title_full | CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
title_fullStr | CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
title_full_unstemmed | CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
title_short | CTRP3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
title_sort | ctrp3 exacerbates tendinopathy by dysregulating tendon stem cell differentiation and altering extracellular matrix composition |
topic | Biomedicine and Life Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8604415/ https://www.ncbi.nlm.nih.gov/pubmed/34797714 http://dx.doi.org/10.1126/sciadv.abg6069 |
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