Lai Zhong-Ming, Li Cheng-Long, Zhang Jun-Xiong, Ao Xiang, Fei Cheng-Shuo, Xiang Xin, Chen Yan-Lin, Chen Ze-Sen, Tan Rui-Qian, Wang Liang, Zhang Zhong-Min
Division of Spine Surgery, Department of Orthopaedics, Nanfang Hospital, Southern Medical University, Guangzhou, China.
J Orthop Translat. 2025 Jan 20;50:235-247. doi: 10.1016/j.jot.2024.11.007. eCollection 2025 Jan.
Low back pain (LBP) is generally caused by lumbar degeneration without effective treatment. Lumbar degeneration is influenced by aberrant axial mechanical stress (MS), with facet joint osteoarthritis (FJOA) representing one of its primary pathological manifestations. MicroRNA (miRNA), functioning as an early intermediate in the transcription process, has frequently been demonstrated to serve as a critical mediator linking mechanical stress perception with cellular processes such as growth, development, aging, and apoptosis. We hypothesized that miR-3085-3p regulates chondrocyte apoptosis under mechanical stress, influencing FJOA and serving as a key regulator.
The severity of cartilage degeneration in bipedal standing models (BSM) was established and validated through micro-CT and histopathology. Cyclic tensile strain experiments (CTS) were conducted on the ATDC5 cell line to simulate MS. In situ hybridization was utilized to assess the expression levels of miR-3085-3p in degraded facet articular cartilage. The role of miR-3085-3p and its interaction with the downstream mRNA target Hspb6 were investigated through a combination of bioinformatic analysis, quantitative real-time polymerase chain reaction, western blotting, immunofluorescence, and luciferase assay. In vivo experiments on BSM, the functional impact of miR-3085-3p was further examined through transfection with adeno-associated virus (AAV).
It was observed that miR-3085-3p induced endoplasmic reticulum (ER) stress and apoptosis in chondrocytes and cartilage tissues under MS. The detrimental impact of miR-3085-3p was associated with the downregulation of Hspb6 expression, resulting in disruption of endoplasmic reticulum folding function. Additionally, intra-articular transfection of AAV miR-3085-3p mimics in mice facet joints led to spontaneous cartilage loss, while AAV miRNA-3085-3p sponge administration mitigated FJOA in the murine BSM model.
Mechanical stress-regulated miR-3085-3p up regulation induced the ER stress and aggravates FJOA development through targeting HSPB6, suggesting miR-3085-3p may be a novel therapeutic target for FJOA.Translational potential of this article: Our study confirmed the elevated expression of miR-3085-3p in lumbar facet joints following mechanical stress loading, suggesting that miR-3085-3p may serve as a biomarker for the clinical management of FJOA. Additionally, we demonstrated that the knockdown of miR-3085-3p in animal facet joints mitigated facet joint degeneration, thereby identifying a potential therapeutic target for FJOA.
下腰痛(LBP)通常由腰椎退变引起,且缺乏有效的治疗方法。腰椎退变受异常轴向机械应力(MS)影响,小关节骨关节炎(FJOA)是其主要病理表现之一。微小RNA(miRNA)作为转录过程中的早期中间体,经常被证明是连接机械应力感知与细胞生长、发育、衰老和凋亡等过程的关键介质。我们假设miR-3085-3p在机械应力下调节软骨细胞凋亡,影响FJOA,并作为关键调节因子。
通过显微CT和组织病理学建立并验证双足站立模型(BSM)中软骨退变的严重程度。对ATDC5细胞系进行循环拉伸应变实验(CTS)以模拟MS。利用原位杂交评估miR-3085-3p在退变小关节软骨中的表达水平。通过生物信息学分析、定量实时聚合酶链反应、蛋白质免疫印迹、免疫荧光和荧光素酶测定相结合的方法,研究miR-3085-3p的作用及其与下游mRNA靶标Hspb6的相互作用。在BSM的体内实验中,通过腺相关病毒(AAV)转染进一步检测miR-3085-3p的功能影响。
观察到miR-3085-3p在MS作用下诱导软骨细胞和软骨组织中的内质网(ER)应激和凋亡。miR-3085-3p的有害影响与Hspb6表达下调有关,导致内质网折叠功能破坏。此外,在小鼠小关节内转染AAV miR-3085-3p模拟物导致自发性软骨丢失,而给予AAV miRNA-3085-3p海绵可减轻小鼠BSM模型中的FJOA。
机械应力调节的miR-3085-3p上调通过靶向HSPB6诱导内质网应激并加重FJOA发展,提示miR-3