Cargando…

Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy

We recently reported that the chondrocyte-specific knockout of discoidin domain receptors 1 (Ddr1) delayed endochondral ossification (EO) in the growth plate by reducing the chondrocyte hypertrophic terminal differentiation, and apoptosis. The biologic and phenotypic changes in chondrocytes in the a...

Descripción completa

Detalles Bibliográficos
Autores principales: Chou, Hsin-Chaio, Chen, Chung-Hwan, Chou, Liang-Yin, Cheng, Tsung-Lin, Kang, Lin, Chuang, Shu-Chun, Lin, Yi-Shan, Ho, Mei-Ling, Wang, Yan-Hsiung, Lin, Sung-Yen, Wang, Chau-Zen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7583926/
https://www.ncbi.nlm.nih.gov/pubmed/32977456
http://dx.doi.org/10.3390/ijms21196991
_version_ 1783599490915106816
author Chou, Hsin-Chaio
Chen, Chung-Hwan
Chou, Liang-Yin
Cheng, Tsung-Lin
Kang, Lin
Chuang, Shu-Chun
Lin, Yi-Shan
Ho, Mei-Ling
Wang, Yan-Hsiung
Lin, Sung-Yen
Wang, Chau-Zen
author_facet Chou, Hsin-Chaio
Chen, Chung-Hwan
Chou, Liang-Yin
Cheng, Tsung-Lin
Kang, Lin
Chuang, Shu-Chun
Lin, Yi-Shan
Ho, Mei-Ling
Wang, Yan-Hsiung
Lin, Sung-Yen
Wang, Chau-Zen
author_sort Chou, Hsin-Chaio
collection PubMed
description We recently reported that the chondrocyte-specific knockout of discoidin domain receptors 1 (Ddr1) delayed endochondral ossification (EO) in the growth plate by reducing the chondrocyte hypertrophic terminal differentiation, and apoptosis. The biologic and phenotypic changes in chondrocytes in the articular cartilage with osteoarthritis (OA) are similar to the phenomena observed in the process of EO. Additionally, autophagy can promote chondrocyte survival and prevent articular cartilage from degradation in OA. On this basis, we explored the effect of Ddr1 inhibition on OA prevention and further investigated the roles of autophagy in treating OA with a Ddr1 inhibitor (7 rh). The anterior cruciate ligament transection (ACLT)–OA model was used to investigate the role of 7 rh in vivo. Forty 8-week-old mice were randomly assigned to four groups, including the sham group, ACLT group, and two treated groups (ACLT with 7 rh 6.9 nM or 13.8 nM). According to the study design, normal saline or 7 rh were intra-articular (IA) injected into studied knees 3 times per week for 2 weeks and then once per week for 4 weeks. The results showed that 7 rh treatment significantly improved the functional performances (the weight-bearing ability and the running endurance), decreased cartilage degradation, and also reduced the terminal differentiation markers (collagen type X, Indian hedgehog, and matrix metalloproteinase 13). Moreover, 7 rh decreased chondrocyte apoptosis by regulating chondrocyte autophagy through reducing the expression of the mammalian target of rapamycin and enhancing the light chain 3 and beclin-1 expression. These results demonstrated that the IA injection of 7 rh could reduce the chondrocyte apoptosis and promote chondrocyte autophagy, leading to the attenuation of cartilage degradation. Our observations suggested that the IA injection of 7 rh could represent a potential disease-modifying therapy to prevention OA progression.
format Online
Article
Text
id pubmed-7583926
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75839262020-10-29 Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy Chou, Hsin-Chaio Chen, Chung-Hwan Chou, Liang-Yin Cheng, Tsung-Lin Kang, Lin Chuang, Shu-Chun Lin, Yi-Shan Ho, Mei-Ling Wang, Yan-Hsiung Lin, Sung-Yen Wang, Chau-Zen Int J Mol Sci Article We recently reported that the chondrocyte-specific knockout of discoidin domain receptors 1 (Ddr1) delayed endochondral ossification (EO) in the growth plate by reducing the chondrocyte hypertrophic terminal differentiation, and apoptosis. The biologic and phenotypic changes in chondrocytes in the articular cartilage with osteoarthritis (OA) are similar to the phenomena observed in the process of EO. Additionally, autophagy can promote chondrocyte survival and prevent articular cartilage from degradation in OA. On this basis, we explored the effect of Ddr1 inhibition on OA prevention and further investigated the roles of autophagy in treating OA with a Ddr1 inhibitor (7 rh). The anterior cruciate ligament transection (ACLT)–OA model was used to investigate the role of 7 rh in vivo. Forty 8-week-old mice were randomly assigned to four groups, including the sham group, ACLT group, and two treated groups (ACLT with 7 rh 6.9 nM or 13.8 nM). According to the study design, normal saline or 7 rh were intra-articular (IA) injected into studied knees 3 times per week for 2 weeks and then once per week for 4 weeks. The results showed that 7 rh treatment significantly improved the functional performances (the weight-bearing ability and the running endurance), decreased cartilage degradation, and also reduced the terminal differentiation markers (collagen type X, Indian hedgehog, and matrix metalloproteinase 13). Moreover, 7 rh decreased chondrocyte apoptosis by regulating chondrocyte autophagy through reducing the expression of the mammalian target of rapamycin and enhancing the light chain 3 and beclin-1 expression. These results demonstrated that the IA injection of 7 rh could reduce the chondrocyte apoptosis and promote chondrocyte autophagy, leading to the attenuation of cartilage degradation. Our observations suggested that the IA injection of 7 rh could represent a potential disease-modifying therapy to prevention OA progression. MDPI 2020-09-23 /pmc/articles/PMC7583926/ /pubmed/32977456 http://dx.doi.org/10.3390/ijms21196991 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
Chou, Hsin-Chaio
Chen, Chung-Hwan
Chou, Liang-Yin
Cheng, Tsung-Lin
Kang, Lin
Chuang, Shu-Chun
Lin, Yi-Shan
Ho, Mei-Ling
Wang, Yan-Hsiung
Lin, Sung-Yen
Wang, Chau-Zen
Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy
title Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy
title_full Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy
title_fullStr Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy
title_full_unstemmed Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy
title_short Discoidin Domain Receptors 1 Inhibition Alleviates Osteoarthritis via Enhancing Autophagy
title_sort discoidin domain receptors 1 inhibition alleviates osteoarthritis via enhancing autophagy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7583926/
https://www.ncbi.nlm.nih.gov/pubmed/32977456
http://dx.doi.org/10.3390/ijms21196991
work_keys_str_mv AT chouhsinchaio discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT chenchunghwan discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT chouliangyin discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT chengtsunglin discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT kanglin discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT chuangshuchun discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT linyishan discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT homeiling discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT wangyanhsiung discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT linsungyen discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy
AT wangchauzen discoidindomainreceptors1inhibitionalleviatesosteoarthritisviaenhancingautophagy