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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >MicroRNA-146a is linked to pain-related pathophysiology of osteoarthritis.
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MicroRNA-146a is linked to pain-related pathophysiology of osteoarthritis.

机译:MicroRNA-146a与骨关节炎的疼痛相关病理生理学有关。

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Because miR-146a is linked to osteoarthritis (OA) and cartilage degeneration is associated with pain, we have characterized the functional role of miR-146a in the regulation of human articular cartilage homeostasis and pain-related factors. Expression of miRNA 146a was analyzed in human articular cartilage and synovium, as well as in dorsal root ganglia (DRG) and spinal cord from a rat model for OA-related pain assessment. The functional effects of miR-146a on human chondrocytic, synovial, and microglia cells were studied in cells transfected with miR-146a. Using real-time PCR, we assessed the expression of chondrocyte metabolism-related genes in chondrocytes, genes for inflammatory factors in synovial cells, as well as pain-related proteins and ion channels in microglial cells. Previous studies showed that miR-146a is significantly upregulated in human peripheral knee OA joint tissues. Transfection of synthetic miR-146a significantly suppresses extracellular matrix-associated proteins (e.g., Aggrecan, MMP-13, ADAMTS-5, collagen II) in human knee joint chondrocytes and regulates inflammatory cytokines in synovial cells from human knee joints. In contrast, miR-146a is expressed at reduced levels in DRGs and dorsal horn of the spinal cords isolated from rats experiencing OA-induced pain. Exogenous supplementation of synthetic miR-146a significantly modulates inflammatory cytokines and pain-related molecules (e.g., TNFalpha, COX-2, iNOS, IL-6, IL8, RANTS and ion channel, TRPV1) in human glial cells. Our findings suggest that miR-146a controls knee joint homeostasis and OA-associated algesia by balancing inflammatory responses in cartilage and synovium with pain-related factors in glial cells. Hence, miR-146a may be useful for the treatment of both cartilage regeneration and pain symptoms caused by OA.
机译:因为miR-146a与骨关节炎(OA)相关联,并且软骨变性与疼痛相关,所以我们已表征了miR-146a在调节人类关节软骨稳态和疼痛相关因素中的功能。分析了miRNA 146a在人关节软骨和滑膜中以及大鼠模型的背根神经节(DRG)和脊髓中的表达,以评估与OA相关的疼痛。在用miR-146a转染的细胞中研究了miR-146a对人软骨细胞,滑膜和小胶质细胞的功能作用。使用实时PCR,我们评估了软骨细胞中软骨细胞代谢相关基因的表达,滑膜细胞中炎性因子的基因以及小胶质细胞中疼痛相关的蛋白质和离子通道的表达。先前的研究表明,miR-146a在人外周膝OA关节组织中显着上调。合成miR-146a的转染可显着抑制人膝关节软骨细胞中的细胞外基质相关蛋白(例如Aggrecan,MMP-13,ADAMTS-5,胶原蛋白II)并调节人膝关节滑膜细胞中的炎性细胞因子。相反,miR-146a在DRG和从经历OA引起的疼痛的大鼠中分离出的脊髓背角中的表达水平降低。合成miR-146a的外源补充显着调节人神经胶质细胞中的炎症细胞因子和疼痛相关分子(例如TNFalpha,COX-2,iNOS,IL-6,IL8,RANTS和离子通道,TRPV1)。我们的发现表明,miR-146a通过平衡软骨和滑膜中的炎症反应与胶质细胞中的疼痛相关因子来控制膝关节稳态和OA相关性痛觉过敏。因此,miR-146a可用于治疗软骨再生和由OA引起的疼痛症状。

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