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◆ Nature communications2026-08-03

Genome-wide DNA methylation analysis revealed epigenetic mechanism underlying end-stage renal disease.

Xiaohong Zhou, Dianchun Shi, JinJin Xu, Ling Wang, Resham Lal Gurung, Zhiming Ye, M Yiamunaa, Meng Wang, Dongying Fu, Wei Chen, Jinghong Zhao, Hua Gan, Ping Fu, Xiaojun Tan, Jihong Chen, Yaozhong Kong, Haiqiang Zhang, Ming Li, Rajkumar Dorajoo, Xin Jin, Su Chi Lim, Xueqing Yu, Jianjun Liu

原始摘要(英文原文)· Original abstract
End-stage renal disease (ESRD) remains a major clinical challenge with high morbidity and mortality, and its molecular mechanisms, particularly those shared among diverse primary kidney diseases during progression to ESRD, have not been studied. Here we conduct a large-scale two-stage epigenome-wide association study of ESRD in two independent cohorts consisting of 704 controls and 1031 ESRD cases. We identify 52 ESRD-associated differentially methylated CpG positions (ESRD DMPs) showing consistent association between the two cohorts and across diverse kidney diseases, implicating 144 candidate genes enriched in inflammatory and immune pathways. Five of the 52 DMPs are associated with ESRD complications, and seven with renal function decline in early-stage chronic kidney disease, demonstrating their potential as prognostic biomarkers for ESRD and its complications. Our findings highlight inflammation, immune dysregulation, and renal fibrosis as shared epigenetic drivers of ESRD progression, and identify biomarkers with potential utility for risk stratification and therapeutic intervention.
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Genome-wide DNA methylation analysis revealed epigenetic mechanism underlying end-stage renal disease. — 科研速览 Science Skim