Urinary fluorogenic reporters for noninvasive detection and staging of kidney fibrosis

医学 尿检 纤维化 泌尿系统 肾脏疾病 病理 离体 肾功能 肾病科 体内 尿 内科学 血尿素氮 泌尿科 临床意义 急性肾损伤 生物标志物 脂质运载蛋白
作者
Zhu L,Fang He,Weiliang Deng,Y Zhou,Yuyan Jiang,Xiaogang Du,Jiaguo Huang
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:18 (850): eadz6929-eadz6929
标识
DOI:10.1126/scitranslmed.adz6929
摘要

Fibrosis is a hallmark and common outcome of progressive chronic kidney disease (CKD). Noninvasive and accurate diagnosis of kidney fibrosis remains unavailable in clinics, limiting effective patient management. Here, we report the development of fibrogenesis sensing reporters (FSRs) for sensitive in vivo near-infrared fluorescence imaging and ex vivo translational urinalysis of kidney fibrosis. FSR achieves enhanced diagnostic accuracy by engaging two crucial, concurrently up-regulated biomarkers in fibrotic kidneys: lysyl oxidase–derived allysine (Lys Ald ) and transglutaminase 2 (TG2). Engineered to be intrinsically nonfluorescent with excellent renal clearance, injected FSRs preferentially target kidneys through covalent binding to Lys Ald and are robustly cleaved by TG2, which is elevated in the fibrotic kidney, to unquench a renal-clearable fluorophore, enabling fluorescence “turn-on” for sensitive fibrosis detection by both kidney imaging and urine assays. Leveraging the high specificity of urinary TG2, FSR-based urinalysis distinguished kidney fibrosis from nonfibrotic acute kidney injury and was not confounded by extrarenal fibrosis (such as pulmonary and hepatic), providing diagnostic insights unattainable with routine kidney function tests. In a clinical cohort ( n = 35), FSR-based urinalysis discriminated patients with CKD from healthy controls with 84% sensitivity and 94% specificity and provided discrimination between histological mild versus severe fibrosis. In contrast, traditional clinical metrics such as the estimated glomerular filtration rate, serum creatinine, and blood urea nitrogen were not able to classify mild versus severe fibrosis cases. This noninvasive activatable reporter holds translational potential for early identification of renal fibrosis and patient stratification of CKD to improve clinical management and patient outcome.
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