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Can Metabolic Pathways Be Therapeutic Targets in Rheumatoid Arthritis?

机译:代谢途径可以成为类风湿关节炎的治疗目标吗?

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The metabolic rewiring of tumor cells and immune cells has been viewed as a promising source of novel drug targets. Many of the molecular pathways implicated in rheumatoid arthritis (RA) directly modify synovium metabolism and transform the resident cells, such as the fibroblast-like synoviocytes (FLS), and the synovial tissue macrophages (STM), toward an overproduction of enzymes, which degrade cartilage and bone, and cytokines, which promote immune cell infiltration. Recent studies have shown metabolic changes in stromal and immune cells from RA patients. Metabolic disruption in the synovium provide the opportunity to use in vivo metabolism-based imaging techniques for patient stratification and to monitor treatment response. In addition, these metabolic changes may be therapeutically targetable. Thus, resetting metabolism of the synovial membrane offers additional opportunities for disease modulation and restoration of homeostasis in RA. In fact, rheumatologists already use the antimetabolite methotrexate, a chemotherapy agent, for the treatment of patients with inflammatory arthritis. Metabolic targets that do not compromise systemic homeostasis or corresponding metabolic functions in normal cells could increase the drug armamentarium in rheumatic diseases for combination therapy independent of systemic immunosuppression. This article summarizes what is known about metabolism in synovial tissue cells and highlights chemotherapies that target metabolism as potential future therapeutic strategies for RA.
机译:肿瘤细胞和免疫细胞的代谢重排已被视为新型药物靶标的有希望的来源。类风湿性关节炎(RA)涉及的许多分子途径直接修饰滑膜代谢并转化常驻细胞(例如成纤维样滑膜细胞(FLS)和滑膜组织巨噬细胞(STM)),导致酶过度生产,从而降解酶软骨和骨骼以及细胞因子,可促进免疫细胞浸润。最近的研究表明,RA患者的基质细胞和免疫细胞发生代谢变化。滑膜中的代谢破坏为利用基于体内新陈代谢的成像技术进行患者分层和监测治疗反应提供了机会。此外,这些代谢变化可能是治疗可靶向的。因此,复位滑膜的新陈代谢为调节疾病和恢复RA的稳态提供了更多的机会。实际上,风湿病学家已经使用抗代谢药甲氨蝶呤(一种化学治疗剂)来治疗炎性关节炎患者。在正常细胞中不损害系统体内稳态或相应代谢功能的代谢靶标可增加风湿性疾病药物的药库,以用于与全身免疫抑制无关的联合治疗。本文总结了关于滑膜组织细胞中新陈代谢的知识,并着重介绍了将新陈代谢作为RA潜在的未来治疗策略的化学疗法。

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