Scholay

学术搜索 · AI 审稿 · LaTeX 协作

An Ex Vivo Patient-Derived Tumor-Bearing Human Kidney Model Recapitulates Drug Toxicity and Metabolic Distribution

作者:Yaowei Li, Zhe Wang, Qi Liu, Qi Liu, Haonan Li, Haiqiang Duan, Shiyu Huang, Qing Shi, Yubo Zhao, Jiaqian Xu, Tianqi Yu, Guangzheng Wu, Hongjian Song, Changhao Zhao, Yishuo Yan, Zhishuai Zhang, Zongzheng Yang, Zhihao Yin, Yi-Xiang Wang, Peng Zhang, Peng Dai, Dayong Hou, Zhichao Tong, Ziqi Wang · 发表于:Research · 年份:2026 · DOI:10.34133/research.1257 · 研究领域:Renal cell carcinoma treatment、Cancer, Hypoxia, and Metabolism、Chemotherapy-induced organ toxicity mitigation

Renal metabolic behavior constitutes a critical evaluation parameter during drug development, toxicity assessment, and biodistribution. However, the inherent biological architecture of existing animal and cell-based models fails to recapitulate the authentic metabolic processes and spatial distribution patterns of drugs in the human kidney at a macroscopic level. Therefore, developing a standardized human-derived kidney model was necessary. In this work, the ex vivo tumor-bearing kidney (ETK) model was established using kidneys from 50 clinically diagnosed patients after the radical surgery. The standardized ETK model included the following: (a) selected according to the proportion of preserved normal tissue, vascular status suitable for ETK perfusion, and overall structural integrity of the kidneys; (b) surgical preparation exposed the renal pelvis and enabled catheterization of the renal artery and ureter; (c) perfused with hypothermic (4 to 10 °C) saline at a flow rate of 70 ml/min within perfusion system; and (d) ETK detection efficiency and drug biodistribution were assessed using biological sample indicators. Results showed that ETK maintained intact glomerular and tubular microstructures throughout perfusion and produced stable urine output with preserved filtration capacity. When treated with different kinds of nephrotoxic agents (cisplatin, gentamicin, and cephalosporins), the ETK model reproduced drug-specific injury patterns and exhibited biochemical changes and hi...