Cargando…

MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis

Osteoarthritis (OA) is the most common joint disease; thus, understanding the pathological mechanisms of OA initiation and progression is critical for OA treatment. MicroRNAs (miRNAs) have been shown to be involved in the progression of osteoarthritis, one candidate is microRNA-378 (miR-378), which...

Descripción completa

Detalles Bibliográficos
Autores principales: Feng, Lu, Yang, Zhengmeng, Li, Yucong, Pan, Qi, Zhang, Xiaoting, Wu, Xiaomin, Lo, Jessica Hiu Tung, Wang, Haixing, Bai, Shanshan, Lu, Xuan, Wang, Ming, Lin, Sien, Pan, Xiaohua, Li, Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9010521/
https://www.ncbi.nlm.nih.gov/pubmed/35474736
http://dx.doi.org/10.1016/j.omtn.2022.03.016
_version_ 1784687494800867328
author Feng, Lu
Yang, Zhengmeng
Li, Yucong
Pan, Qi
Zhang, Xiaoting
Wu, Xiaomin
Lo, Jessica Hiu Tung
Wang, Haixing
Bai, Shanshan
Lu, Xuan
Wang, Ming
Lin, Sien
Pan, Xiaohua
Li, Gang
author_facet Feng, Lu
Yang, Zhengmeng
Li, Yucong
Pan, Qi
Zhang, Xiaoting
Wu, Xiaomin
Lo, Jessica Hiu Tung
Wang, Haixing
Bai, Shanshan
Lu, Xuan
Wang, Ming
Lin, Sien
Pan, Xiaohua
Li, Gang
author_sort Feng, Lu
collection PubMed
description Osteoarthritis (OA) is the most common joint disease; thus, understanding the pathological mechanisms of OA initiation and progression is critical for OA treatment. MicroRNAs (miRNAs) have been shown to be involved in the progression of osteoarthritis, one candidate is microRNA-378 (miR-378), which is highly expressed in the synovium of OA patients during late-stage disease, but its function and the underlying mechanisms of how it contributes to disease progression remain poorly understood. In this study, miR-378 transgenic (TG) mice were used to study the role of miR-378 in OA development. miR-378 TG mice developed spontaneous OA and also exaggerated surgery-induced disease progression. Upon in vitro OA induction, miR-378 expression was upregulated and correlated with elevated inflammation and chondrocyte hypertrophy. Chondrocytes isolated from articular cartilage from miR-378 TG mice showed impaired chondrogenic differentiation. The bone marrow mesenchymal stem cells (BMSCs) collected from miR-378 TG mice also showed repressed chondrogenesis compared with the control group. The autophagy-related protein Atg2a, as well as chondrogenesis regulator Sox6, were identified as downstream targets of miR-378. Ectopic expression of Atg2a and Sox6 rescued miR-378-repressed chondrocyte autophagy and BMSC chondrogenesis, respectively. Anti-miR-378 lentivirus intra-articular injection in an established OA mouse model was shown to ameliorate OA progression, promote articular regeneration, and repress hypertrophy. Atg2a and Sox6 were again confirmed to be the target of miR-378 in vivo. In conclusion, miR-378 amplified OA development via repressing chondrocyte autophagy and by inhibiting BMSCs chondrogenesis, thus indicating miR-378 may be a potential therapeutic target for OA treatments.
format Online
Article
Text
id pubmed-9010521
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-90105212022-04-25 MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis Feng, Lu Yang, Zhengmeng Li, Yucong Pan, Qi Zhang, Xiaoting Wu, Xiaomin Lo, Jessica Hiu Tung Wang, Haixing Bai, Shanshan Lu, Xuan Wang, Ming Lin, Sien Pan, Xiaohua Li, Gang Mol Ther Nucleic Acids Original Article Osteoarthritis (OA) is the most common joint disease; thus, understanding the pathological mechanisms of OA initiation and progression is critical for OA treatment. MicroRNAs (miRNAs) have been shown to be involved in the progression of osteoarthritis, one candidate is microRNA-378 (miR-378), which is highly expressed in the synovium of OA patients during late-stage disease, but its function and the underlying mechanisms of how it contributes to disease progression remain poorly understood. In this study, miR-378 transgenic (TG) mice were used to study the role of miR-378 in OA development. miR-378 TG mice developed spontaneous OA and also exaggerated surgery-induced disease progression. Upon in vitro OA induction, miR-378 expression was upregulated and correlated with elevated inflammation and chondrocyte hypertrophy. Chondrocytes isolated from articular cartilage from miR-378 TG mice showed impaired chondrogenic differentiation. The bone marrow mesenchymal stem cells (BMSCs) collected from miR-378 TG mice also showed repressed chondrogenesis compared with the control group. The autophagy-related protein Atg2a, as well as chondrogenesis regulator Sox6, were identified as downstream targets of miR-378. Ectopic expression of Atg2a and Sox6 rescued miR-378-repressed chondrocyte autophagy and BMSC chondrogenesis, respectively. Anti-miR-378 lentivirus intra-articular injection in an established OA mouse model was shown to ameliorate OA progression, promote articular regeneration, and repress hypertrophy. Atg2a and Sox6 were again confirmed to be the target of miR-378 in vivo. In conclusion, miR-378 amplified OA development via repressing chondrocyte autophagy and by inhibiting BMSCs chondrogenesis, thus indicating miR-378 may be a potential therapeutic target for OA treatments. American Society of Gene & Cell Therapy 2022-03-23 /pmc/articles/PMC9010521/ /pubmed/35474736 http://dx.doi.org/10.1016/j.omtn.2022.03.016 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Feng, Lu
Yang, Zhengmeng
Li, Yucong
Pan, Qi
Zhang, Xiaoting
Wu, Xiaomin
Lo, Jessica Hiu Tung
Wang, Haixing
Bai, Shanshan
Lu, Xuan
Wang, Ming
Lin, Sien
Pan, Xiaohua
Li, Gang
MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
title MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
title_full MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
title_fullStr MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
title_full_unstemmed MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
title_short MicroRNA-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
title_sort microrna-378 contributes to osteoarthritis by regulating chondrocyte autophagy and bone marrow mesenchymal stem cell chondrogenesis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9010521/
https://www.ncbi.nlm.nih.gov/pubmed/35474736
http://dx.doi.org/10.1016/j.omtn.2022.03.016
work_keys_str_mv AT fenglu microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT yangzhengmeng microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT liyucong microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT panqi microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT zhangxiaoting microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT wuxiaomin microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT lojessicahiutung microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT wanghaixing microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT baishanshan microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT luxuan microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT wangming microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT linsien microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT panxiaohua microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis
AT ligang microrna378contributestoosteoarthritisbyregulatingchondrocyteautophagyandbonemarrowmesenchymalstemcellchondrogenesis