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◇ bioRxiv2026-09-01· cell biology

Scalable proxiloids enable human-relevant assessment of kidney proximal tubule toxicity

S. Biermans, D. N. van Heugten, M. C. Avramut, R.-S. F. Verkerk, R. Y. van Nieuwland, R. H. van Scheppingen, L. van den Berk, C. W. van den Berg, B. van de Water, T. J. Rabelink, M. Hochane, H. S. Spijker

原始摘要(英文原文)· Original abstract
Drug-induced injury to the human proximal tubule (PT) is a leading cause of acute kidney injury and drug attrition, yet remains difficult to predict preclinically. PT toxicity arises from the coupling of transporter-mediated xenobiotic accumulation and high oxidative metabolic demand. Current models lack key aspects of PT physiology or are difficult to scale for toxicity testing. New Approach Methodologies (NAMs) address this challenge through human-relevant in vitro systems. Here we introduce proxiloids, a scalable suspension-based human induced pluripotent stem cell differentiation strategy. Within 14 days, proxiloids form lumenized, polarized tubular organoids enriched for PT identity, with functional transport and oxidative metabolic competence. Proxiloids are compatible with genetically encoded reporters and standard multiwell assays, enabling detection of defined stress responses. They recapitulate aminoglycoside nephrotoxicity with greater sensitivity than matched two-dimensional cultures and detect adefovir-induced mitochondrial toxicity not predicted in rodents. Together, proxiloids provide a scalable, human-relevant NAM for PT nephrotoxicity assessment.
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Scalable proxiloids enable human-relevant assessment of kidney proximal tubule toxicity — 科研速览 Science Skim