International Journal of Molecular Sciences (Apr 2023)

SerpinA3K Deficiency Reduces Oxidative Stress in Acute Kidney Injury

  • Isaac González-Soria,
  • Axel D. Soto-Valadez,
  • Miguel Angel Martínez-Rojas,
  • Juan Antonio Ortega-Trejo,
  • Rosalba Pérez-Villalva,
  • Gerardo Gamba,
  • Andrea Sánchez-Navarro,
  • Norma A. Bobadilla

DOI
https://doi.org/10.3390/ijms24097815
Journal volume & issue
Vol. 24, no. 9
p. 7815

Abstract

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We previously showed that SerpinA3K is present in urine from rats and humans with acute kidney injury (AKI) and chronic kidney disease (CKD). However, the specific role of SerpinA3K during renal pathophysiology is unknown. To begin to understand the role of SerpinA3K on AKI, SerpinA3K-deficient (KOSA3) mice were studied 24 h after inducing ischemia/reperfusion (I/R) and compared to wild type (WT) mice. Four groups were studied: WT+S, WT+IR, KOSA3+S, and KOSA3+IR. As expected, I/R increased serum creatinine and BUN, with a GFR reduction in both genotypes; however, renal dysfunction was ameliorated in the KOSA3+IR group. Interestingly, the increase in UH2O2 induced by I/R was not equally seen in the KOSA3+IR group, an effect that was associated with the preservation of antioxidant enzymes’ mRNA levels. Additionally, FOXO3 expression was initially greater in the KOSA3 than in the WT group. Moreover, the increase in BAX protein level and the decrease in Hif1a and Vegfa induced by I/R were not observed in the KOSA3+IR group, suggesting that these animals have better cellular responses to hypoxic injury. Our findings suggest that SerpinA3K is involved in the renal oxidant response, HIF1α/VEGF pathway, and cell apoptosis.

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