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Dexamethasone protects from renal ischemia/reperfusion injury: a possible association with SGK-1
Krisztina Rusai1, A Prokai, C Juanxing
1Department of Pediatrics, and Nephrology Research Laboratory of the Hungarian Academy of Sciences Budapest Hungary Semmelweis University Department of Pediatrics Bókay utca 53-54 H-1083 Budapest Hungary.
Abstract:
Previous experimental data suggest that steroids might have protective effects during hypoxic/ischemic injury of various organs. In this study, the association between dexamethason (Dexa) treatment and the anti-apoptotic SGK-1 was tested in ischemic renal injury. In vitro, HK-2 cells were exposed to 24 h hypoxia, and the effect of Dexa incubation on SGK-1 expression / activation and on cell death was studied. In an in vivo rat model of unilateral renal IR, animals were treated with Dexa, and serum renal function parameters, tissue injury and SGK-1 expression and localization were examined after different reperfusion times (2 h, 4 h and 24 h). Dexa at a dose of 2 mg/L exerted a protective effect on cell survival assessed by LDH release and vital staining paralleled by marked up-regulation of SGK-1. In rats, 2 mg/kg Dexa treatment 24 h prior to ischemia resulted in less severe tissue injury and ameliorated urea nitrogen levels 24 h after reperfusion. Furthermore, SGK-1 expression and phosphorylation were higher in Dexa animals demonstrated by Western blot and immunofluorescence technique. Our results provide novel data on the signalling mechanism of Dexa under hypoxia / ischemia and further support that Dexa emerges as an attractive pharmacological agent for the prevention of ischemic injury.
Insights
Dexamethasone (Dexa) protects against kidney injury from ischemia. Dexa upregulates the anti-apoptotic SGK-1 protein, suggesting a novel protective mechanism against hypoxic/ischemic damage.
Area of Science:
- Nephrology
- Cell Biology
- Pharmacology
Background:
- Steroids may protect organs from hypoxic/ischemic injury.
- The role of SGK-1 in steroid-mediated protection during renal ischemia is unclear.
Purpose of the Study:
- To investigate the association between dexamethasone (Dexa) treatment and the anti-apoptotic SGK-1 in ischemic renal injury.
- To elucidate the signaling mechanism of Dexa in hypoxic/ischemic conditions.
Main Methods:
- In vitro: HK-2 cells exposed to hypoxia, treated with Dexa; assessed cell death and SGK-1 expression/activation.
- In vivo: Rat model of unilateral renal ischemia-reperfusion (IR); Dexa treatment; evaluated renal function, tissue injury, and SGK-1 expression/localization.
Main Results:
- Dexa (2 mg/L) protected HK-2 cells from death and upregulated SGK-1.
- In rats, Dexa (2 mg/kg) reduced renal tissue injury and improved urea nitrogen levels post-IR.
- Dexa treatment increased SGK-1 expression and phosphorylation in ischemic kidneys.
Conclusions:
- Dexamethasone upregulates SGK-1, providing a novel signaling mechanism for its protective effects in ischemic renal injury.
- Dexa shows promise as a pharmacological agent for preventing ischemic kidney injury.
