Cellular metabolic adaptations in rheumatoid arthritis and their therapeutic implications

免疫系统 细胞生物学 间质细胞 炎症 滑膜关节 类风湿性关节炎 医学 关节炎 免疫学 滑膜 癌症研究 生物 病理 骨关节炎 替代医学 关节软骨
作者
Ursula Fearon,Megan M. Hanlon,Achilleas Floudas,Douglas J. Veale
出处
期刊:Nature Reviews Rheumatology [Nature Portfolio]
卷期号:18 (7): 398-414 被引量:50
标识
DOI:10.1038/s41584-022-00771-x
摘要

Activation of endothelium and immune cells is fundamental to the initiation of autoimmune diseases such as rheumatoid arthritis (RA), and it results in trans-endothelial cell migration and synovial fibroblast proliferation, leading to joint destruction. In RA, the synovial microvasculature is highly dysregulated, resulting in inefficient oxygen perfusion to the synovium, which, along with the high metabolic demands of activated immune and stromal cells, leads to a profoundly hypoxic microenvironment. In inflamed joints, infiltrating immune cells and synovial resident cells have great requirements for energy and nutrients, and they adapt their metabolic profiles to generate sufficient energy to support their highly activated inflammatory states. This shift in metabolic capacity of synovial cells enables them to produce the essential building blocks to support their proliferation, activation and invasiveness. Furthermore, it results in the accumulation of metabolic intermediates and alteration of redox-sensitive pathways, affecting signalling pathways that further potentiate the inflammatory response. Importantly, the inflamed synovium is a multicellular tissue, with cells differing in their metabolic requirements depending on complex cell-cell interactions, nutrient supply, metabolic intermediates and transcriptional regulation. Therefore, understanding the complex interplay between metabolic and inflammatory pathways in synovial cells in RA will provide insight into the underlying mechanisms of disease pathogenesis.
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