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抑制REV-ERBα表达可预防机械过载诱导的软骨生物钟紊乱和骨关节炎进展。

Inhibiting the REV-ERBα expression protects against mechanical overloading-induced cartilage clock disruption and osteoarthritis progression.

作者信息

Xu Xiaojie, Wang Dong, Ni Bowei, Xu Hailun, Wu Zixiang, He Ting, Zhang Yuejiao, Hao Xue, Ding Guangyu, Zhang Xinyu, Meng Qing-Jun, Yang Liu

机构信息

College of Life Sciences, Northwest University, Xi'an, 710069, China.

Institute of Orthopedic Surgery, Xijing Hospital, Fourth Military Medical University, Xi'an, 710032, China.

出版信息

J Orthop Translat. 2025 Jun 18;53:112-125. doi: 10.1016/j.jot.2025.06.005. eCollection 2025 Jul.

Abstract

BACKGROUND

The circadian clock maintains homeostasis in peripheral tissues, including articular cartilage. Cartilage as a highly mechanical loaded tissue experiences diurnal rhythmic mechanical loading activity/rest cycle patterns, which gives external time cue on chondrocytes. Given the cartilage clock driven by loading patterns, we hypothesize that abnormal mechanical loading, a major risk factor for osteoarthritis (OA), can disrupt the cartilage clock, further contributing to OA progression.

METHODS

We used both noninvasive mechanical loading system and PER2Luc reporter mice for bioluminescence recording. RNA sequencing was performed in mouse primary chondrocytes treated with 1.0 MPa static compression, and identified core clock molecule REV-ERBα, which was confirmed in human and murine OA cartilage samples. Chondrocytes were treated with small interfering RNA (si-), and adeno-associated virus carrying -specific short hairpin RNA (AAV-sh) was injected intra-articularly in mice to knock down . Relevant signaling pathways regulating REV-ERBα were analyzed by RNA sequencing data. Intraperitoneal injection of SR8278, a specific REV-ERBα antagonist, was performed in mice after mechanical overloading for OA treatment.

RESULTS

Excessive mechanical loading disrupted the circadian rhythm of articular cartilage. The core clock molecule REV-ERBα was increased in OA cartilage and knockdown of alleviated compression-induced chondrocyte dysfunction. Inhibition of MAPK-MYC pathway by U0126 or SB203580 attenuated compression-induced REV-ERBα up-regulation and cartilage clock disruption. Finally, pharmacological inhibition of REV-ERBα expression by SR8278 restored cartilage clock upon abnormal loading and mitigated OA progression.

CONCLUSIONS

REV-ERBα is a key factor in the association between mechanical overloading-induced circadian disruption and OA pathology. This study illustrates the essential mechanism of impaired circadian rhythm under overloading and provides a possibly impactful therapeutic approach for the treatment of OA.

THE TRANSLATIONAL POTENTIAL OF THIS ARTICLE

Inhibition REV-ERBα expression by clock-based therapeutic drug SR8278 or MAPK-MYC pathway inhibitors could ameliorate mechanical overloading-induced circadian disruption of cartilage and OA degeneration, indicating a clinical conversion potential for OA treatment.

摘要

背景

生物钟维持包括关节软骨在内的外周组织的内环境稳定。软骨作为承受高机械负荷的组织,经历昼夜节律性机械负荷活动/休息周期模式,这为软骨细胞提供了外部时间线索。鉴于由负荷模式驱动的软骨生物钟,我们推测异常机械负荷作为骨关节炎(OA)的主要危险因素,可能会扰乱软骨生物钟,进而促进OA进展。

方法

我们使用无创机械负荷系统和PER2Luc报告基因小鼠进行生物发光记录。对用1.0MPa静态压缩处理的小鼠原代软骨细胞进行RNA测序,鉴定出核心生物钟分子REV-ERBα,这在人类和小鼠OA软骨样本中得到证实。用小干扰RNA(si-)处理软骨细胞,并将携带特异性短发夹RNA(AAV-sh)的腺相关病毒关节内注射到小鼠体内以敲低该分子。通过RNA测序数据分析调节REV-ERBα的相关信号通路。在机械过载后,对小鼠进行腹腔注射特异性REV-ERBα拮抗剂SR8278以治疗OA。

结果

过度的机械负荷扰乱了关节软骨的昼夜节律。核心生物钟分子REV-ERBα在OA软骨中增加,敲低该分子可减轻压缩诱导的软骨细胞功能障碍。U0126或SB203580对MAPK-MYC通路的抑制减弱了压缩诱导的REV-ERBα上调和软骨生物钟破坏。最后,SR8278对REV-ERBα表达的药理学抑制在异常负荷时恢复了软骨生物钟,并减轻了OA进展。

结论

REV-ERBα是机械过载诱导的昼夜节律紊乱与OA病理之间关联的关键因素。本研究阐明了过载情况下昼夜节律受损的基本机制,并为OA治疗提供了一种可能有效的治疗方法。

本文的转化潜力

基于生物钟的治疗药物SR8278或MAPK-MYC通路抑制剂抑制REV-ERBα表达可改善机械过载诱导的软骨昼夜节律紊乱和OA退变,表明其在OA治疗方面具有临床转化潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d039/12221230/64f665e5caed/ga1.jpg

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