Publication | Closed Access
Targeted Deletion of Dicer from Proximal Tubules Protects against Renal Ischemia-Reperfusion Injury
224
Citations
23
References
2010
Year
Renal PathologyImmunologyRenal InflammationCell DeathSpecific MicrornasRenal FunctionAcute Kidney InjuryChronic Kidney DiseaseMouse ModelVascular BiologyRenal PathophysiologyMicrorna DetectionReperfusion InjuryCell BiologyTumor MicroenvironmentUrologyRenal Ischemia-reperfusion InjuryProximal Tubules ProtectsMicrorna ProductionSmall RnaMedicineNephrologyKidney Research
MicroRNAs are endogenous, noncoding, small RNAs that regulate expression and function of genes, but little is known about regulation of microRNA in the kidneys under normal or pathologic states. Here, we generated a mouse model in which the proximal tubular cells lack Dicer, a key enzyme for microRNA production. These mice had normal renal function and histology under control conditions despite a global downregulation of microRNAs in the renal cortex; however, these animals were remarkably resistant to renal ischemia-reperfusion injury (IRI), showing significantly better renal function, less tissue damage, lower tubular apoptosis, and improved survival compared with their wild-type littermates. Microarray analysis showed altered expression of specific microRNAs during renal IRI. Taken together, these results demonstrate evidence for a pathogenic role of Dicer and associated microRNAs in renal IRI.
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