炎症体
高尿酸血症
尿酸
痛风
嘌呤代谢
脂肪酸代谢
黄嘌呤氧化酶
药理学
医学
嘌呤
痛风性关节炎
新陈代谢
非布索坦
化学
花生四烯酸代谢
细胞代谢
脂质代谢
脂肪酸
免疫系统
苯溴马隆
受体
花生四烯酸
炎症
关节炎
生物化学
细胞因子
别嘌呤醇
二十烷酸代谢
药物代谢
生物信息学
类风湿性关节炎
β氧化
不利影响
耐受性
TRPC3型
经济短缺
作者
Xueping Zhao,Ye Sun,Le Yang,Hui Sun,Xinya Zhang,Hui Sun,Guangli Yan,Xijun Wang
标识
DOI:10.3389/fimmu.2025.1671548
摘要
Gouty arthritis (GA), a condition characterized by monosodium urate (MSU) crystal deposition and NLRP3 inflammasome-driven inflammation, is a result of a complex interplay between hyperuricemia and immune dysregulation, which leads to systemic complications and joint damage. Current therapies for GA exhibit certain limitations, including cardiovascular risks, hepatotoxicity, low efficacy in special populations, and difficulty in dissolving tophi. Emerging evidence implicates fatty acid metabolism disorders as key pathogenic factors in GA. Elevated fatty acids (FAs) activate Toll-like receptors (TLRs) in macrophages, which act in synergy with MSU crystals to trigger NLRP3 inflammasome activation and pro-inflammatory cytokine release (e.g., IL-1β), thereby initiating the inflammatory cascade. Dysregulated FA metabolism promotes neutrophil recruitment through aberrant arachidonic acid (AA) metabolism and exacerbates hyperuricemia by increasing purine synthesis while inhibiting uric acid excretion. Consequently, future clinical practice may leverage the detection of FA signatures in GA patients to enable tailored therapeutic and dietary management, thereby maximizing treatment efficacy while minimizing adverse effects. The combined application of FA-modulating agents and anti-GA therapeutics synergistically enhances therapeutic efficacy, enabling comprehensive disease-modifying control over GA progression. This review systematically elucidates the mechanisms through which FA metabolism disorders drive the progression of GA, providing a scientific basis for the subsequent research on GA.
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