Intra-articular Delivery of Antago-miR-483-5p Inhibits Osteoarthritis by Modulating Matrilin 3 and Tissue Inhibitor of Metalloproteinase 2.

Hua Wang, Haiyan Zhang, Qiuyi Sun, Yun Wang, Jun Yang, Jincheng Yang, Tao Zhang, Shenqiu Luo, Liping Wang, Yu Jiang, Chun Zeng, Daozhang Cai, Xiaochun Bai
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Abstract

MicroRNAs (miRNAs) are emerging as important regulators in osteoarthritis (OA) pathogenesis. In our study, a real-time PCR assay revealed that miR-483-5p was upregulated in articular cartilage from OA patients and experimental OA mice induced by destabilization of the medial meniscus compared to their controls. Overexpression of miR-483-5p by intra-articular injection of lentivirus LV3-miR-483-5p significantly enhanced the severity of experimental OA. Consequently, we synthesized antago-miR-483-5p to silence the endogenous miR-483-5p and delivered it intra-articularly, which revealed that antago-miR-483-5p delayed the progression of experimental OA. To investigate the functional mechanism of miR-483-5p in OA development, we generated doxycycline-inducible miR-483 transgenic (TG483) mice. TG483 mice exhibited significant acceleration and increased severity of OA, and age-related OA occurred with higher incidence and greater severity in TG483 mice compared with their controls. Furthermore, our results revealed miR-483-5p directly targeted to the cartilage matrix protein matrilin 3 (Matn3) and tissue inhibitor of metalloproteinase 2 (Timp2) to stimulate chondrocyte hypertrophy, extracellular matrix degradation, and cartilage angiogenesis, and it consequently initiated and accelerated the development of OA. In conclusion, our findings reveal an miRNA functional pathway important for OA development. Targeting of miR-483-5p by intra-articular injection of antago-miR-483-5p represents an approach that could prevent the onset of OA and delay its progression.

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Antago-miR-483-5p关节内递送通过调节基质蛋白3和金属蛋白酶2组织抑制剂抑制骨关节炎。
MicroRNAs (miRNAs)正在成为骨关节炎(OA)发病机制中的重要调节因子。在我们的研究中,实时PCR检测显示,与对照组相比,在内侧半月板失稳诱导的OA患者和实验性OA小鼠的关节软骨中miR-483-5p表达上调。关节内注射慢病毒LV3-miR-483-5p过表达miR-483-5p可显著增强实验性OA的严重程度。因此,我们合成了antago-miR-483-5p来沉默内源性miR-483-5p并将其递送到关节内,这表明antago-miR-483-5p延缓了实验性OA的进展。为了研究miR-483-5p在OA发生中的功能机制,我们培育了强力霉素诱导的miR-483转基因(TG483)小鼠。TG483小鼠表现出明显的OA加速和严重程度增加,与对照组相比,TG483小鼠的年龄相关性OA发生率更高,严重程度更大。此外,我们的研究结果显示miR-483-5p直接靶向软骨基质蛋白Matn3 (Matn3)和组织金属蛋白酶2抑制剂Timp2 (Timp2),刺激软骨细胞肥大、细胞外基质降解和软骨血管生成,从而启动和加速OA的发展。总之,我们的研究结果揭示了一个对OA发展重要的miRNA功能途径。通过关节内注射antago-miR-483-5p靶向miR-483-5p是一种可以预防OA发病并延缓其进展的方法。
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