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Metabolites as drivers and targets in rheumatoid arthritis

免疫系统 炎症 免疫学 滑膜关节 滑膜 关节炎 血管生成 生物 医学 类风湿性关节炎 癌症研究 PI3K/AKT/mTOR通路
作者
Megan M Hanlon,Mary Canavan,Brianne E Barker,Ursula Fearon
出处
期刊:Clinical and Experimental Immunology [Oxford University Press]
卷期号:208 (2): 167-180 被引量:3
标识
DOI:10.1093/cei/uxab021
摘要

Rheumatoid arthritis (RA) is a chronic autoimmune disease characterized by neovascularization, immune cell infiltration, and synovial hyperplasia, which leads to degradation of articular cartilage and bone, and subsequent functional disability. Dysregulated angiogenesis, synovial hypoxia, and immune cell infiltration result in a 'bioenergetic crisis' in the inflamed joint which further exacerbates synovial invasiveness. Several studies have examined this vicious cycle between metabolism, immunity, and inflammation and the role metabolites play in these interactions. To add to this complexity, the inflamed synovium is a multicellular tissue with many cellular subsets having different metabolic requirements. Metabolites can shape the inflammatory phenotype of immune cell subsets during disease and act as central signalling hubs. In the RA joint, the increased energy demand of stromal and immune cells leads to the accumulation of metabolites such as lactate, citrate, and succinate as well as adipocytokines which can regulate downstream signalling pathways. Transcription factors such as HIF1ɑ and mTOR can act as metabolic sensors to activate synovial cells and drive pro-inflammatory effector function, thus perpetuating chronic inflammation further. These metabolic intermediates may be potential therapeutic targets and so understanding the complex interplay between metabolites and synovial cells in RA may allow for identification of novel therapeutic strategies but also may provide significant insight into the underlying mechanisms of disease pathogenesis.
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