Predicting nucleic acid drug-induced nephrotoxicity using a 3D human renal proximal tubule spheroid model

肾毒性 核酸 毒性 化学 马兜铃酸 内质网 药理学 内吞循环 生物标志物 细胞内 回旋小管 生物化学 细胞毒性 生物 细胞生物学 线粒体 药品 细胞 分子生物学 靶向给药
作者
Kaoru Morimura,Etsushi Takahashi,Hayata Maeda,Yukiko Nishioka,Ayano Araki,Hiroshi Mizumoto,Yoichi Jimbo
出处
期刊:Journal of Toxicological Sciences [Japanese Society of Toxicological Sciences]
卷期号:51 (1): 75-87 被引量:2
标识
DOI:10.2131/jts.51.75
摘要

Nucleic acid drugs hold considerable promise; however, their toxicological profiles are often difficult to assess in animal models. Clinical studies have reported adverse effects, including thrombocytopenia, complement activation, hepatotoxicity, and nephrotoxicity. While human cell-based models for hepatotoxicity are advancing, nephrotoxicity assessment remains limited by the scarcity of physiologically relevant kidney cells. In this study, a three-dimensional spheroid model of human primary renal proximal tubule epithelial cells (3D-RPTEC, Nikkiso) was employed to evaluate the nephrotoxicity of nucleic acid drugs. Proteomic profiling revealed enhanced expression of drug transporters and endocytic machinery in 3D-RPTEC compared with two-dimensional cultures. Lipofection enabled efficient intracellular delivery of nucleic acids. Toxicity was assessed using ATP quantification, biomarker analysis (LDH, KIM-1, NGAL), and high-content analysis (HCA). Significant ATP depletion was observed only after prolonged exposure to SPC5001, a nephrotoxic antisense oligonucleotide. In contrast, biomarker expression and HCA facilitated early detection of compound-specific toxicity and implicated endoplasmic reticulum and mitochondrial stress as underlying mechanisms. These findings establish 3D-RPTEC as a sensitive and physiologically relevant platform for predicting the nephrotoxic potential of nucleic acid drugs.
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