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Updated: May 19, 2026

Modeling Hypoxia/Reoxygenation Injury in Proximal Tubular Epithelial Cells
Published on: November 21, 2025
Autophagy in proximal tubules protects against acute kidney injury
Man Jiang1, Qingqing Wei, Guie Dong
1Department of Cellular Biology and Anatomy, Georgia Health Sciences University and Charlie Norwood VA Medical Center, Augusta, Georgia 30912, USA.
Abstract:
Autophagy is induced in renal tubular cells during acute kidney injury; however, whether this is protective or injurious remains controversial. We address this question by pharmacologic and genetic blockade of autophagy using mouse models of cisplatin- and ischemia-reperfusion-induced acute kidney injury. Chloroquine, a pharmacological inhibitor of autophagy, blocked autophagic flux and enhanced acute kidney injury in both models. Rapamycin, however, activated autophagy and protected against cisplatin-induced acute kidney injury. We also established a renal proximal tubule-specific autophagy-related gene 7-knockout mouse model shown to be defective in both basal and cisplatin-induced autophagy in kidneys. Compared with wild-type littermates, these knockout mice were markedly more sensitive to cisplatin-induced acute kidney injury as indicated by renal functional loss, tissue damage, and apoptosis. Mechanistically, these knockout mice had heightened activation of p53 and c-Jun N terminal kinase, the signaling pathways contributing to cisplatin acute kidney injury. Proximal tubular cells isolated from the knockout mice were more sensitive to cisplatin-induced apoptosis than cells from wild-type mice. In addition, the knockout mice were more sensitive to renal ischemia-reperfusion injury than their wild-type littermates. Thus, our results establish a renoprotective role of tubular cell autophagy in acute kidney injury where it may interfere with cell killing mechanisms.
Insights
Autophagy in kidney tubular cells protects against acute kidney injury. Blocking autophagy worsened injury, while activating it offered protection, revealing its renoprotective role.
Area of Science:
- Nephrology
- Cellular Biology
- Molecular Medicine
Background:
- Autophagy's role in acute kidney injury (AKI) is debated.
- Investigating autophagy's impact in renal tubular cells is crucial for understanding AKI pathogenesis.
Purpose of the Study:
- To determine whether autophagy in renal tubular cells is protective or injurious during AKI.
- To elucidate the mechanisms underlying autophagy's role in AKI.
Main Methods:
- Utilized mouse models of cisplatin- and ischemia-reperfusion-induced AKI.
- Employed pharmacological inhibition (chloroquine) and activation (rapamycin) of autophagy.
- Generated and analyzed renal proximal tubule-specific autophagy-related gene 7-knockout mice.
Main Results:
- Chloroquine enhanced AKI, while rapamycin showed protection against cisplatin-induced AKI.
- Autophagy-deficient mice exhibited increased sensitivity to cisplatin and ischemia-reperfusion injury.
- Knockout mice displayed heightened p53 and c-Jun N-terminal kinase activation and increased apoptosis.
Conclusions:
- Tubular cell autophagy plays a renoprotective role in AKI.
- Autophagy may mitigate cell death pathways, thus preventing kidney damage.
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Acute Kidney Injury V: Interprofessional Care
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Acute Kidney Injury I: Introduction
Physiology of the Genitourinary System II: Tubular Reabsorption and Secretion
