Protection against hypoxic injury of rat proximal tubules by felodipine via a calcium-independent mechanism
- 1 November 1995
- journal article
- Published by Springer Nature in Pflügers Archiv - European Journal of Physiology
- Vol. 431 (1) , 20-27
- https://doi.org/10.1007/bf00374373
Abstract
Most evidence for a key role of calcium entry in hypoxia-induced renal damage stems from studies with calcium channel blockers. In proximal tubules, a primary site of renal ischaemic injury, only phenylalkylamines, especially verapamil, have been studied. In the present study the effect of the dihydropyridine felodipine on hypoxic injury in isolated rat proximal tubules was investigated. To discriminate between the block of calcium entry and other effects, the enantiomers and a non-calcium blocking derivative of felodipine (H186/86) were included. Cell membrane injury was assessed by measuring the release of lactate dehydrogenase (LDH). At high concentrations (100 µM) felodipine, H186/86 and the two enantiomers all protected rat proximal tubules against hypoxiainduced injury to the same extent. Absence of extracellular calcium did not offer protection, but rather enhanced hypoxic injury. All dihydropyridines used increased the intracellular potassium concentration during normoxia. Felodipine attenuated the hypoxiainduced loss of cellular potassium. We have tried to mimic the effects of felodipine by using potassium channel blockers. The potassium channel blockers quinidine and glibenclamide afforded some protection against hypoxic injury, although their effects on cellular potassium were equivocal. We conclude that the dihydropyridine calcium channel blocker felodipine protects rat proximal tubules against hypoxic injury via a calcium-independent mechanism. We propose that high levels of intracellular potassium and attenuation of potassium loss during hypoxia are important in this protection.Keywords
This publication has 32 references indexed in Scilit:
- Activation of potassium channels contributes to hypoxic injury in proximal tubules.Journal of Clinical Investigation, 1994
- Effects of Ca2+ channel blockers, low Ca2+ medium and glycine on cell Ca2+ and injury in anoxic rabbit proximal tubulesKidney International, 1994
- Evidence for role of cytosolic free calcium in hypoxia-induced proximal tubule injury.Journal of Clinical Investigation, 1994
- Calcium channel antagonists induce direct inhibition of the outward rectifying potassium channel in tobacco protoplastsFEBS Letters, 1994
- Calcium Channel Blockers: Protective Effects in Ischemic Acute Renal FailureRenal Failure, 1992
- Calcium-dependent control of volume regulation in renal proximal tubule cells: II. Roles of dihydropyridine-sensitive and-insensitive Ca2+ entry pathwaysThe Journal of Membrane Biology, 1991
- Role of Calcium-Channel Bockers in Preventing Acute and Chronic Renal InjuryJournal of Cardiovascular Pharmacology, 1991
- Calcium channels: Molecular pharmacology, structure and regulationThe Journal of Membrane Biology, 1988
- THE EFFECT OF VERAPAMIL ON RENAL FUNCTION AFTER WARM AND COLD ISCHEMIA IN THE ISOLATED PERFUSED RAT KIDNEYTransplantation, 1985
- Protective effect of intrarenal calcium membrane blockers before or after renal ischemia. Functional, morphological, and mitochondrial studies.Journal of Clinical Investigation, 1984