Inhibition of TGF-β signaling in mesenchymal stem cells of subchondral bone attenuates osteoarthritis

骨关节炎 间充质干细胞 医学 转化生长因子 软骨 骨髓 癌症研究 病理 内科学 解剖 替代医学
作者
Gehua Zhen,Chunyi Wen,Xiaofeng Jia,Yu Li,Janet L. Crane,Simon C. Mears,Frederic B. Askin,Frank J. Frassica,Weizhong Chang,Jie Yao,John A. Carrino,Andrew J. Cosgarea,Dmitri Artemov,Qianming Chen,Zhihe Zhao,Xuedong Zhou,Lee H. Riley,Paul D. Sponseller,Mei Wan,William W. Lu
出处
期刊:Nature Medicine [Springer Nature]
卷期号:19 (6): 704-712 被引量:911
标识
DOI:10.1038/nm.3143
摘要

Osteoarthritis has been believed to be caused by improper mechanical function of articular joints. Xu Cao and his colleagues now show that this mechanical process leads to upregulation of transforming growth factor β1 activity in mesenchymal stem cells of subchondral bone, resulting in aberrant bone formation, further destabilization of the joint and ultimately the onset of the disease. Osteoarthritis is a highly prevalent and debilitating joint disorder. There is no effective medical therapy for the condition because of limited understanding of its pathogenesis. We show that transforming growth factor β1 (TGF-β1) is activated in subchondral bone in response to altered mechanical loading in an anterior cruciate ligament transection (ACLT) mouse model of osteoarthritis. TGF-β1 concentrations are also high in subchondral bone from humans with osteoarthritis. High concentrations of TGF-β1 induced formation of nestin-positive mesenchymal stem cell (MSC) clusters, leading to formation of marrow osteoid islets accompanied by high levels of angiogenesis. We found that transgenic expression of active TGF-β1 in osteoblastic cells induced osteoarthritis, whereas inhibition of TGF-β activity in subchondral bone attenuated the degeneration of articular cartilage. In particular, knockout of the TGF-β type II receptor (TβRII) in nestin-positive MSCs led to less development of osteoarthritis relative to wild-type mice after ACLT. Thus, high concentrations of active TGF-β1 in subchondral bone seem to initiate the pathological changes of osteoarthritis, and inhibition of this process could be a potential therapeutic approach to treating this disease.
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