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Endotoxemic acute renal failure is attenuated in caspase-1-deficient mice
Wei Wang1, Sarah Faubel, Danica Ljubanovic
1Department of Medicine, Division of Renal Diseases, University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.
Abstract:
Caspase-1-deficient (-/-) mice are protected against sepsis-induced hypotension and mortality. We investigated the role of caspase-1 and its associated cytokines in a nonhypotensive model of endotoxemic acute renal failure (ARF). Mice were injected intraperitoneally with 2.5 mg of LPS that induces endotoxemic ARF. On immunoblot analysis of whole kidney, there was an increase in caspase-1 protein in LPS-treated mice compared with vehicle-treated controls. In LPS-treated mice, the glomerular filtration rate (GFR) was significantly higher in caspase-1 -/- vs. wild-type mice at 16 and 36 h after LPS. To determine the mechanism of this protection, the caspase-1-activated cytokines IL-1beta and IL-18 were investigated. IL-1beta and IL-18 protein were significantly increased in the kidneys of LPS- vs. vehicle-treated mice. To determine the role of these cytokines, mice were treated with recombinant IL-1 receptor antagonist (IL-1Ra) or IL-18-neutralizing antiserum. In LPS-treated mice, GFR was not different in IL-1Ra-treated or IL-18-neutralizing antiserum-treated or combination therapy (IL-1Ra plus IL-18-neutralizing antiserum-treated) compared with control mice. In addition, tubular cell apoptosis, neutrophil infiltration, myeloperoxidase activity, caspase-3 activity, and calpain activity were not different between wild-type and caspase-1 -/- mice with endotoxemic ARF. In LPS- vs. vehicle-treated wild-type mice, renal IL-1alpha was significantly increased. In both LPS- and vehicle-treated caspase-1 -/- mice, renal IL-1alpha was very low. In summary, caspase-1 -/- mice are functionally protected against endotoxemic ARF. Neutralization of IL-1beta and IL-18 is not functionally protective. The role of the intracellular proinflammatory cytokine IL-1alpha in endotoxemic ARF merits further study.
Insights
Mice lacking caspase-1 (an enzyme) showed protection against endotoxemic acute renal failure (ARF). This suggests caspase-1 plays a key role in ARF development, independent of IL-1beta and IL-18.
Area of Science:
- Renal physiology
- Inflammation and immunology
- Molecular biology
Background:
- Sepsis and endotoxemia can lead to acute renal failure (ARF).
- Caspase-1 deficiency protects against sepsis-induced hypotension and mortality.
- The role of caspase-1 in non-hypotensive endotoxemic ARF is not fully understood.
Purpose of the Study:
- To investigate the role of caspase-1 in a non-hypotensive model of endotoxemic acute renal failure (ARF).
- To examine the involvement of caspase-1-activated cytokines, IL-1beta and IL-18, in this ARF model.
Main Methods:
- Induction of endotoxemic ARF in mice using lipopolysaccharide (LPS).
- Assessment of glomerular filtration rate (GFR) in wild-type and caspase-1-deficient mice.
- Measurement of IL-1beta, IL-18, and IL-1alpha protein levels in kidney tissue.
- Therapeutic interventions using IL-1 receptor antagonist (IL-1Ra) and IL-18-neutralizing antiserum.
Main Results:
- Caspase-1-deficient mice exhibited significantly higher GFR compared to wild-type mice following LPS injection.
- Kidney levels of IL-1beta and IL-18 were increased in LPS-treated mice.
- Neutralization of IL-1beta and IL-18 did not protect against endotoxemic ARF.
- Renal IL-1alpha levels were significantly increased in wild-type mice post-LPS but remained low in caspase-1-deficient mice.
Conclusions:
- Caspase-1 deficiency confers functional protection against endotoxemic ARF.
- IL-1beta and IL-18 are not the primary mediators of protection in this model.
- The intracellular cytokine IL-1alpha warrants further investigation for its role in endotoxemic ARF.
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