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New molecular targets for the treatment of osteoarthritis.

机译:用于治疗骨关节炎的新分子靶标。

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Osteoarthritis (OA) is a chronic degenerative joint disorder characterized by destruction of the articular cartilage, subchondral bone alterations and synovitis. Current treatments are focused on symptomatic relief but they lack efficacy to control the progression of this disease which is a leading cause of disability. Therefore, the development of effective disease-modifying drugs is urgently needed. Different initiatives are in progress to define the molecular mechanisms involved in the initiation and progression of OA. These studies support the therapeutic potential of pathways relevant in joint metabolism such as Wnt/beta-catenin, discoidin domain receptor 2 or proteinase-activated receptor 2. The dysregulation in cartilage catabolism and subchondral bone remodeling could be improved by selective inhibitors of matrix metalloproteinases, aggrecanases and other proteases. Another approach would favor the activity of anabolic processes by using growth factors or regulatory molecules. Recent studies have also revealed the role of oxidative stress and synovitis in the progression of this disease, supporting the development of a number of inhibitory strategies. Novel targets in OA are represented by genes involved in OA pathophysiology discovered using gene network, epigenetic and microRNA approaches. Further insights into the molecular mechanisms involved in OA initiation and progression may lead to the development of new therapies able to control joint destruction and repair.
机译:骨关节炎(OA)是一种慢性退行性关节疾病,其特征是关节软骨破坏,软骨下骨改变和滑膜炎。当前的治疗集中在症状缓解上,但是它们缺乏控制这种疾病发展的功效,这是致残的主要原因。因此,迫切需要开发有效的疾病缓解药物。正在进行各种举措来定义与OA的发生和发展有关的分子机制。这些研究支持了与关节代谢相关的途径的治疗潜力,例如Wnt /β-catenin,discodisin域受体2或蛋白酶激活的受体2。软骨分解代谢异常和软骨下骨重塑的失调可以通过基质金属蛋白酶的选择性抑制剂来改善,软骨聚集蛋白聚糖酶和其他蛋白酶。另一种方法是通过使用生长因子或调节分子来促进合成代谢过程的活性。最近的研究还揭示了氧化应激和滑膜炎在该疾病进展中的作用,支持了许多抑制策略的发展。 OA中的新靶标是通过使用基因网络,表观遗传学和microRNA方法发现的与OA病理生理有关的基因来代表的。对涉及OA起始和进展的分子机制的进一步了解可能会导致能够控制关节破坏和修复的新疗法的发展。

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