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Updated: Mar 18, 2026

Bilateral Renal Ischemia-Reperfusion Model for Acute Kidney Injury in Mice
Published on: February 2, 2024
Increased Urinary Albumin Excretion But Less Damaged Renal Tubular Structures in Mice with Genetically Decreased
Meitong Chen1, Qing Ma1, Niroshani M W Wariyapperuma Appuhamillage1
1Department of Pathology and Laboratory Medicine, School of Medicine, The University of North Carolina, Chapel Hill, NC 27599, USA.
None:
Renal ischemia/reperfusion injury (IRI) is a leading cause of acute kidney injury (AKI), a potentially fatal syndrome characterized by a rapid decline in kidney function. The major cause of AKI is IRI. Our prior studies have demonstrated that genetically increased Elmo1 expression in mice aggravated several kidney pathologies including diabetic nephropathy and transition of AKI to chronic kidney disease induced by IRI. However, the effects of decreased expression of Elmo1 on IRI is unclear. We compared the kidney structures and functions between wild type (WT) mice and mice with genetically decreased Elmo1 expression (Elmo1 L/L ) 5 days after unilateral renal IR surgery. The WT-IRI mice had typical tubular injuries including necrosis and shedding of proximal tubular cells, but these morphological changes were less severe in Elmo1 L/L -IRI mice. In contrast, the urinary albumin excretion was elevated in Elmo1 L/L -IRI mice compared with WT counterparts. While the expression of inflammatory markers (e.g., Il6, Tnfa, Cxcl1 and Tlr4) was comparable between WT and Elmo1 L/L mice with IRI which significantly higher than control mice, the expression of antioxidant markers (e.g., Sod1 and Sod2) was preserved in Elmo1 L/L -IRI mice which was significantly decreased in WT-IRI mice. We conclude that Elmo1 L/L mice had preserved tubular structures but increased urinary albumin excretion after IRI, suggesting that the role of Elmo1 in IRI is complex and it merits future evaluation.

