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Metabolic signatures of T-cells and macrophages in rheumatoid arthritis

机译:类风湿性关节炎中T细胞和巨噬细胞的代谢特征

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摘要

In most autoimmune diseases, a decade-long defect in self-tolerance eventually leads to clinically relevant, tissue-destructive inflammatory disease. The pathogenic potential of chronic persistent immune responses during the pre-clinical and clinical phase is ultimately linked to the bioenergetic fitness of innate and adaptive immune cells. Chronic immune cell stimulation, high cellular turn-over, structural damage to the host tissue and maladaptive wound healing, all require a reliable supply of nutrients, oxygen, and biosynthetic precursors. Here, we use the model system of rheumatoid arthritis (RA) to discuss immunometabolism from the vantage point of T-cells and macrophages that encounter fundamentally different metabolic stress scenarios in the RA host. We outline the general principle that both insufficient nutrient supply, as well as nutrient excess generate cellular stress responses and guide immune function. ATP(low), NADPH(high), ROSIlow T-cells hyperproliferate and are forced into premature senescence. ATP(high), ROShigh macrophages dimerize the glycolytic enzyme pyruvate kinase to amplify STAT3-dependent inflammatory effector functions. A corollary of this model is that simple nutraceutical interventions will be insufficient to re-educate the immune system in RA. Instead, interference with cell-type-exclusive and differentiation-stage-dependent metabolic setpoints will be needed to reprogram arthritogenic pathways.
机译:在大多数自身免疫性疾病中,自我耐受的十年长缺陷最终导致临床相关的组织破坏性炎症疾病。临床前和临床相期间慢性持续免疫应答的致病潜力最终与先天和适应性免疫细胞的生物能量适应性相关。慢性免疫细胞刺激,高细胞翻转,宿主组织的结构损伤和造成的伤口愈合,都需要可靠的营养素,氧气和生物合成前体。在这里,我们使用类风湿性关节炎(RA)的模型系统从T细胞的角度和巨噬细胞中讨论免疫素描,巨噬细胞遇到RA主机中的根本不同的代谢应力情景。我们概述了营养供应不足的一般原则,以及营养过量产生细胞应激反应和指导免疫功能。 ATP(低),NADPH(高),罗疹T细胞过度增塑,并被迫过早衰老。 ATP(高),Roshigh巨噬细胞将糖酵解酶丙酮酸激酶二聚化以扩增STAT3依赖性炎症效应效应。该模型的推论是简单的营养素干预不足以重新教育RA中的免疫系统。相反,将需要对细胞类型独占和分化阶段依赖性代谢设定值的干扰,以重新编程有动力学途径。

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