Current Molecular Medicine · 2012 · 12 citations · 0 references
ImmunologyRenal InflammationOxidative StressRegenerative MedicineInflammationTranslational MedicineRenal FunctionAcute Kidney InjuryKidney Tubule RemodelingChronic Kidney DiseaseAtherosclerosisTissue InjuryAnimal PhysiologyEarly Regenerative ProcessesPorcine KidneysKidney FailureVascular BiologyTspo ExpressionReperfusion InjuryUrologyPhysiologyPreclinical Pig ModelWound HealingMedicineNephrologyMin-warm Ischemia
Renal failure due to ischemic injury is a common denominator of various clinical situations in critically ill patients. This study was designed to characterize the TPSO/Cholesterol synthesis and cell division pathways in response to different levels of ischemia. Porcine kidneys were subjected to either 60 min-warm ischemia (WI) or auto-transplanted after cold storage for 24 h at 4°C (CS), or both conditions (WI+CS), pathway activation and function were evaluated at 3 h, 3 and 7 days after reperfusion. CS combined to WI affects renal functions indicating a high degree of injury. During the first week of reperfusion, renal levels of free and esterified cholesterol, major cellular components, increased in CS group with an attenuated production when WI was associated. CS and WI+CS groups exhibited an elevated expression of cell cycle induction markers such as PCNA and stathmin. TSPO expression was highest in groups with the lowest injury, and correlated with kidney outcome, revealing its potential for diagnosis.