The crucial role of metabolic reprogramming in driving macrophage conversion in kidney disease

重编程 巨噬细胞 疾病 肾脏疾病 细胞生物学 生物 医学 细胞 内分泌学 内科学 生物化学 体外
作者
Na Gong,Wenjuan Wang,Yifei Fu,Xumin Zheng,Xinru Guo,Yuhao Chen,Yan Chen,Sichun Zheng,Guangyan Cai
出处
期刊:Cellular & Molecular Biology Letters [BioMed Central]
卷期号:30 (1): 72-72 被引量:6
标识
DOI:10.1186/s11658-025-00746-2
摘要

Interstitial fibrosis after acute kidney injury is an ongoing pathological process of chronic inflammatory injury and repair. Macrophages participate in renal inflammation, repair and fibrosis by continuously changing their phenotype and function. The tissue microenvironment of kidney injury induces changes in key metabolic enzymes, pathways and metabolites in macrophages, leading to phenotypic and functional conversions, but the detailed mechanisms are unclear. However, in the early phase of acute kidney injury, macrophages shift to a pro-inflammatory role relying on glycolysis and pentose phosphate pathways. The tissue microenvironment regulates the suppression of glycolysis-related genes and the up-regulation of oxidative phosphorylation and tricarboxylic acid cycle genes in macrophages, resulting in a gradual shift to an anti-inflammatory phenotype, which is involved in tissue repair and remodelling. In the late stage of injury, if macrophages continue to be overactive, they will be involved in renal fibrosis. The concomitant enhancement of nucleotide and amino acid metabolism, especially arginine and glutamine metabolism, is critical for the macrophage function and phenotypic transition during the above injury process. Macrophage metabolic reprogramming therefore provides new therapeutic targets for intervention in inflammatory injury and interstitial fibrosis in kidney disease.
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