Xiang Yaoyu, Hu Xidan, Yang Xianguang, Wang Guoliang, Li Yanlin, Sun Fei, Song En
Department of Sports Medicine, First Affiliated Hospital of Kunming Medical University, Kunming, 650000, Yunnan, China.
Clinical Pharmacy Center, First Affiliated Hospital of Kunming Medical University, Kunming, 650000, Yunnan, China.
J Orthop. 2024 Nov 26;64:108-116. doi: 10.1016/j.jor.2024.11.019. eCollection 2025 Jun.
Pathogenic degeneration of cartilage and the generation of fibrotic cartilage are crucial characteristics linked to the progression of osteoarthritis (OA). The current research aims to explore the potential function of the miR-137/BMP7 pathway in regulating the fibrogenic transition of chondrocytes associated with OA, as well as assess the therapeutic potential of andrographolide.
Samples of cartilage from the knees of patients with OA and individuals without OA were gathered to investigate the expression patterns of miR-137, BMP7, and markers associated with fibrosis. A cell model using primary chondrocytes stimulated with interleukin (IL)-1β was developed to study the involvement of the miR-137/BMP7 axis during the fibrogenic transition of these cells. Additionally, we utilized an animal model of OA in order to assess the beneficial effects of the anti-inflammatory natural compound andrographolide on the fibrogenesis induced by OA .
Elevated levels of fibrogenic and inflammatory factors were linked to decreased miR-137 expression in OA samples. In IL-1β-treated chondrocytes, there was an upregulation of fibrogenic markers alongside a reduction in miR-137 levels. The overexpression of miR-137 inhibited fibrogenesis through the negative regulation of BMP7. Additionally, treatment with andrographolide was effective in attenuating the fibrogenic phenotype in chondrocytes and mitigating OA pathogenesis via modulating the miR-137/BMP7 pathway.
miR-137 downregulation and BMP7 overexpression might contribute to the fibrogenic features in OA-related chondrocytes. Andrographolide attenuates fibrogenic phenotype in chondrocytes and alleviates the severity of OA by modulating the miR-137/BMP7 axis.
软骨的致病性退变和纤维化软骨的形成是与骨关节炎(OA)进展相关的关键特征。当前研究旨在探索miR-137/BMP7通路在调节与OA相关的软骨细胞纤维化转变中的潜在作用,并评估穿心莲内酯的治疗潜力。
收集OA患者和非OA个体膝关节的软骨样本,以研究miR-137、BMP7及纤维化相关标志物的表达模式。建立用白细胞介素(IL)-1β刺激原代软骨细胞的细胞模型,以研究miR-137/BMP7轴在这些细胞纤维化转变过程中的作用。此外,我们利用OA动物模型评估抗炎天然化合物穿心莲内酯对OA诱导的纤维化的有益作用。
纤维化和炎症因子水平升高与OA样本中miR-137表达降低有关。在IL-1β处理的软骨细胞中,纤维化标志物上调,同时miR-137水平降低。miR-137的过表达通过对BMP7的负调控抑制纤维化。此外,穿心莲内酯治疗可有效减轻软骨细胞的纤维化表型,并通过调节miR-137/BMP7通路减轻OA发病机制。
miR-137下调和BMP7过表达可能导致OA相关软骨细胞的纤维化特征。穿心莲内酯通过调节miR-137/BMP7轴减轻软骨细胞的纤维化表型并减轻OA的严重程度。