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首页> 外文期刊>Biochemical and Biophysical Research Communications >LncRNA-CIR promotes articular cartilage degeneration in osteoarthritis by regulating autophagy
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LncRNA-CIR promotes articular cartilage degeneration in osteoarthritis by regulating autophagy

机译:LNCRNA-CIR通过调节自噬促进骨关节炎的关节软骨变性

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Osteoarthritis (OA) is a common joint disease that is regarded as a local inflammatory response caused by joint instability and accompanied by the progressive degeneration of articular cartilage. However, the molecular mechanisms involved in the maintenance of articular cartilage remain a subject of debate and research. This study aims to analyze the roles of long noncoding RNA (lncRNA)-CIR and autophagy in cartilages and determine their overall contribution to the degradation of extracellular matrix. Patients with OA possessed high levels of lncRNA-CIR and MMP3 and low level of COL2A1. The levels of autophagy-related proteins, including LC3B-I/II and beclin-1, increased from 12 h to 48 h. The use of si-lncRNA-CIR reversed the trend compared with that in the OA group. The negative effect of lncRNA-CIR was assessed in vivo by establishing a model of surgically induced OA. Moreover, si-lncRNA-CIR-treated joints exhibited fewer OA changes than saline-treated joints. Results were confirmed by histopathological grading of the models by using the Osteoarthritis Research Society International Scoring System and the outcomes of immunohistochemistry for LC3B-II and MMP-3. Overall, lncRNA-CIR played a negative role in the OA process by activating autophagy. (C) 2018 Elsevier Inc. All rights reserved.
机译:骨关节炎(OA)是一种常见的关节疾病,被认为是由关节不稳定引起的局部炎症反应,并伴随着关节软骨的渐进性变性。然而,涉及维持关节软骨的分子机制仍然是辩论和研究的主题。本研究旨在分析长度非分量RNA(LNCRNA)-cir和自噬在软骨中的作用,并确定其对细胞外基质降解的总贡献。 OA患者具有高水平的LNCRNA-CIR和MMP3和COL2A1的低水平。与自噬相关蛋白质的水平,包括LC3B-I / II和BECLIN-1,从12小时增加到48小时。与OA组相比,使用Si-Lncrna-Cir逆转了趋势。通过建立手术诱导的OA模型在体内评估LNCRNA-CIR的负面影响。此外,Si-lncrna-Cir-Cirs处理的关节表现出比盐水处理的关节更少的OA变化。通过使用骨关节炎研究协会国际评分系统和LC3B-II和MMP-3的免疫组化结果,通过模型的组织病理学分级证实了结果。总的来说,LNCRNA-CIR通过激活自噬在OA过程中发挥了负面作用。 (c)2018年Elsevier Inc.保留所有权利。

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