Controlling joint instability after anterior cruciate ligament transection inhibits transforming growth factor-beta-mediated osteophyte formation

软骨 前交叉韧带 医学 转化生长因子 转化生长因子β 滑膜 骨关节炎 滑膜关节 解剖 炎症 病理 内科学 关节软骨 替代医学
作者
Kenji Murata,Takanori Kokubun,Katsuya Onitsuka,Yuichiro Oka,Takuma Kano,Yuri Morishita,Kaichi Ozone,N Kuwabara,Jiro Nishimoto,Takuya Isho,K. Takayanagi,Naohiko Kanemura
出处
期刊:Osteoarthritis and Cartilage [Elsevier BV]
卷期号:27 (8): 1185-1196 被引量:22
标识
DOI:10.1016/j.joca.2019.03.008
摘要

ObjectiveAbnormal joint instability contributes to cartilage damage and osteophyte formation. We investigated whether controlling joint instability inhibited chronic synovial membrane inflammation and delayed osteophyte formation and examined the role of transforming growth factor-beta (TGF-β) signaling in the associated mechanism.DesignRats (n = 94) underwent anterior cruciate ligament (ACL) transection. Anterior tibial instability was either controlled (CAM group) or allowed to continue (SHAM group). At 2, 4, and 8 weeks after surgery, radiologic, histopathologic, immunohistochemical, immunofluorescent, and enzyme-linked immunosorbent assay examinations were performed to evaluate osteophyte formation and TGF-β signaling.ResultsJoint instability increased cartilage degeneration score and osteophyte formation, and cell hyperplasia and proliferation and synovial thickening were observed in the synovial membrane. Major findings were increased TGF-β expression and Smad2/3 following TGF-β phosphorylation in synovial membarene, articular cartilage, and the posterior tibial growth plate (TGF-β expression using ELISA: 4 weeks; P = 0.009, 95% CI [260.1–1340.0]) (p-Smad2/3 expression density: 4 weeks; P = 0.024, 95% CI [1.67–18.27], 8 weeks; P = 0.034, 95% CI [1.25–25.34]). However, bone morphogenetic protein (BMP)-2 and Smad1/5/8 levels were not difference between the SHAM model and the CAM model.ConclusionsThis study showed that the difference between anterior tibial instability caused a change in the expression level of TGF in the posterior tibia and synovial membrane, and the reaction might be consequently involved in osteophyte formation.

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