生物标志物
转录组
肾脏疾病
疾病
肾
泌尿系统
表皮生长因子
医学
生物
鉴定(生物学)
生物标志物发现
生物信息学
病理
内科学
基因表达
蛋白质组学
基因
受体
遗传学
植物
作者
Wenjun Ju,Viji Nair,Shahaan Smith,Li Zhu,Kerby Shedden,Peter X.‐K. Song,Laura H. Mariani,Felix Eichinger,Céline C. Berthier,Ann Randolph,Jennifer Y. Lai,Yan Zhou,Jennifer Hawkins,Markus Bitzer,Matthew G. Sampson,Martina Thier,Corinne Solier,Gonzalo Durán-Pacheco,Guillemette Duchâteau-Nguyen,Laurent Essioux
标识
DOI:10.1126/scitranslmed.aac7071
摘要
Chronic kidney disease (CKD) affects 8 to 16% people worldwide, with an increasing incidence and prevalence of end-stage kidney disease (ESKD). The effective management of CKD is confounded by the inability to identify patients at high risk of progression while in early stages of CKD. To address this challenge, a renal biopsy transcriptome-driven approach was applied to develop noninvasive prognostic biomarkers for CKD progression. Expression of intrarenal transcripts was correlated with the baseline estimated glomerular filtration rate (eGFR) in 261 patients. Proteins encoded by eGFR-associated transcripts were tested in urine for association with renal tissue injury and baseline eGFR. The ability to predict CKD progression, defined as the composite of ESKD or 40% reduction of baseline eGFR, was then determined in three independent CKD cohorts. A panel of intrarenal transcripts, including epidermal growth factor (EGF), a tubule-specific protein critical for cell differentiation and regeneration, predicted eGFR. The amount of EGF protein in urine (uEGF) showed significant correlation (P < 0.001) with intrarenal EGF mRNA, interstitial fibrosis/tubular atrophy, eGFR, and rate of eGFR loss. Prediction of the composite renal end point by age, gender, eGFR, and albuminuria was significantly (P < 0.001) improved by addition of uEGF, with an increase of the C-statistic from 0.75 to 0.87. Outcome predictions were replicated in two independent CKD cohorts. Our approach identified uEGF as an independent risk predictor of CKD progression. Addition of uEGF to standard clinical parameters improved the prediction of disease events in diverse CKD populations with a wide spectrum of causes and stages.
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