中性粒细胞胞外陷阱
败血症
尿酸
高尿酸血症
免疫学
肾
肾脏疾病
免疫系统
细胞内
炎症
先天免疫系统
医学
中性粒细胞
脱颗粒
生物
体外
代谢物
细胞外
免疫
吞噬作用
化学
感染性休克
免疫缺陷
下调和上调
药理学
代谢组
登革热
作者
Qiubo Li,Juliane Anders,Kailey Flora,Louisa Ehreiser,Carolin Wendling,Fengjun Zhang,Liang Chang,Danyang Zhao,Li Li,Raimund Vogl,Oliver Soehnlein,Stefanie Steiger
标识
DOI:10.1038/s41467-026-73090-4
摘要
Neutrophils are essential for host defense and inflammation, yet their dysfunction is a hallmark of acquired immunodeficiency in kidney disease, contributing to increased susceptibility to infections such as peritonitis, sepsis, and pneumonia. We speculated that impaired renal clearance of the metabolite soluble uric acid (sUA) accounts for neutrophil dysfunction. Indeed, hyperuricemia (HU, serum UA of 9-14 mg/dL) related or unrelated to kidney disease significantly exacerbates the inflammatory immune response in mice with endotoxemia and bacterial sepsis. Despite promoting hyperinflammation, HU simultaneously impairs host defense, an effect that is partially reversible by lowering UA levels with febuxostat. We validated these findings in vitro using neutrophils or serum from healthy individuals or hyperuricemic patients with chronic kidney disease. Depleting UA partially restores neutrophil function. Mechanistically, sUA promotes neutrophil activation and degranulation but impairs phagocytosis, leading to reduced NOX2 expression independent of intracellular MPO levels. This results in diminished ROS production and defective bacterial clearance in human neutrophils. In contrast, sUA has no impact on neutrophil extracellular trap formation following exposure to LPS or E.coli. Together, our findings identify HU as an immunometabolic regulator that amplifies hyperinflammation, while simultaneously impairing effective host defense, suggesting that targeting UA may help to overcome acquired immunodeficiency in kidney disease.
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