1. Fenoldopam Preconditioning: Role of Heme Oxygenase-1 in Protecting Human Tubular Cells and Rodent Kidneys Against Cold-Hypoxic Injury
- Author
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Salahudeen, Abdulla K, Yang, Ming, Huang, Hong, Dore, Sylvain, and Stec, David E
- Subjects
Medical Physiology ,Biomedical and Clinical Sciences ,Kidney Disease ,Transplantation ,Organ Transplantation ,2.1 Biological and endogenous factors ,Aetiology ,Renal and urogenital ,Life on Land ,Animals ,Cells ,Cultured ,Cold Ischemia ,Dopamine Agonists ,Enzyme Induction ,Fenoldopam ,Heme Oxygenase-1 ,Humans ,In Vitro Techniques ,Ischemic Preconditioning ,Kidney ,Kidney Transplantation ,Male ,Mice ,Mice ,Knockout ,Organ Preservation ,RNA ,Small Interfering ,Rats ,Rats ,Inbred WF ,Transplant ,Preconditioning ,Heme oxygenase-1 ,HO-1 ,Cold storage ,Oxidative stress ,Cold preservation ,Acute kidney injury ,Medical and Health Sciences ,Surgery ,Clinical sciences ,Immunology - Abstract
BackgroundKidneys from brain-dead donors are cold preserved until transplanted. However, prolonged cold storage can contribute to allograft failure. Studies suggest that donor preconditioning with dopaminergics may reduce cold-ischemic transplant injury, but whether heme oxygenase (HO)-1 induction is an underlying mechanism is not known.ObjectiveTo test whether preconditioning with fenoldopam (FD) induce HO-1 and protect kidneys against cold storage injury and whether HO-1 plays a role in protection.MethodWe used human renal proximal tubular epithelial cells, rat kidney transplants, and HO-1 null mice kidneys.ResultsFD preconditioning of cells for 4 hr significantly protected against cell death from 24-hr cold hypoxia and was associated with a dose-dependent increase in HO-1 expression. In a syngeneic rat kidney transplant model, FD preconditioning for 18 hr markedly increased kidney HO-1 expression and protected kidneys against 24-hr cold-ischemic transplant injury. To test the role of HO-1, renal proximal tubular epithelial cells were treated with HO-1 small interfering RNA, followed by FD-preconditioning. Small interfering RNA inhibited the HO-1 messenger RNA expression and reversed the FD protection. Suspension of kidneys of HO-1 null and wild-type mice preconditioned with FD or saline were subjected to 24- and 48-hr cold storage. N-acetyl glucosaminidase, a specific tubular injury marker, was significantly lower in FD-preconditioned wild-type kidneys, but not in HO-1 null kidneys, suggesting a role for HO-1 in FD's preconditioning.ConclusionOur data suggest HO-1 induction as an underlying mechanism for FD preconditioning and support the idea of testing FD preconditioning in the clinical setting. Studies are required to determine the optimum FD-preconditioning protocol.
- Published
- 2011