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◆ Analytical Chemistry2026-05-08· Chemistry

Pathology-Responsive Nanoprobes for NIR-II Imaging of Acute Kidney Injury

Wuyue Su, Wenjing Bai, Shuangyan Song, Yongkuan Suo, Qian Hu, Wumei Wang, Pengfei Zhang, Chune Dong, Yuling Xiao, Zhen Cheng, Xiaodong Zeng, Xuechuan Hong

原始摘要(英文原文)· Original abstract
Acute kidney injury (AKI), a prevalent life-threatening syndrome triggered by drug-induced nephrotoxicity, ischemia-reperfusion injury (IRI), and surgical complications, rapidly progresses to chronic kidney disease without early intervention, escalating morbidity, and mortality. In this study, we synthesized a fluorescent probe CH-4T and leveraged disease-induced remodeling of the renal nano–bio interface during AKI to engineer a series of pathology-responsive nanoprobes (CH-4T@NP 1–4 ). Systematic screening identified CH-4T@NP 3 as optimal, exhibiting superior optical performance, stability, biocompatibility, and pathology-responsive renal accumulation. In cisplatin-AKI and IRI models, CH-4T@NP 3 enabled high-sensitivity, real-time NIR-II imaging, with fluorescence signals quantitatively correlating to serum creatinine (Scr), blood urea nitrogen, kidney injury molecule-1 (KIM-1), histopathology (H&E, TUNEL), and injury severity. It dynamically monitored N -acetylcysteine (NAC) therapy, aligning with renal recovery and reducing apoptosis with enhanced penetration and signal-to-noise ratio, offering a noninvasive platform for early AKI diagnosis, severity assessment, and therapeutic evaluation.
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