© Schattauer 2015. Cardiac ischaemia and reperfusion leads to irreversible injury and subsequent tissue remodelling. Initial reperfusion seems to shift arginine metabolism from nitric oxide (NO) to polyamine formation. This may limit functional recovery at reperfusion. The hypothesis was tested whether ischaemia/reperfusion translates such a shift in arginine metabolism in a tumour necrosis factor (TNF)-α-dependent way and renin-angiotensin system (RAS)-dependent way into a sustained effect. Both, the early post-ischaemic recovery and molecular adaptation to ischaemia/reperfusion were analysed in saline perfused rat hearts undergoing global no-flow ischaemia and reperfusion. Local TNF-α activation was blocked by inhibition of TNF-α sheddase...
Background. Maintenance of nitric oxide (NO) availability is crucial for cardiovascular homeostasis ...
AbstractIschemia and reperfusion may damage myocytes and endothelium in jeopardized hearts. This stu...
l-Arginine transport is augmented through up-regulation of tubular CAT-2 mRNA in ischemic acute rena...
© Schattauer 2015. Cardiac ischaemia and reperfusion leads to irreversible injury and subsequent tis...
Background: Reperfusion or reopening of occluded vessels is the gold standard to terminate ischemia....
Induction and activation of arginase is among the fastest responses of the heart to ischemic events....
The flux of arginine after ischemia-reperfusion in the rat kidney.BackgroundRenal arginine synthesis...
Myocardial ischemia and reperfusion may result in endothelial dysfunction and reduced release of nit...
Abstract In vivo administration of L-arginine at different time points during the course of myocardi...
AbstractObjective: We evaluated the effect of pretreatment with nitric oxide precursor before ischem...
Consumption of L-arginine contributes to reduced bioavailability of nitric oxide (NO) that is critic...
Background Reduced bioavailability of nitric oxide (NO) is a key factor contributing to myocardial i...
Background Nitric oxide (NO) is central for the integrity of the cardiovascular system, the mainten...
Objective: Several recent studies have implicated a role of endogenous nitric oxide (NO) in the path...
AbstractBackground: ischaemic renal dysfunction is present in many clinical settings, including card...
Background. Maintenance of nitric oxide (NO) availability is crucial for cardiovascular homeostasis ...
AbstractIschemia and reperfusion may damage myocytes and endothelium in jeopardized hearts. This stu...
l-Arginine transport is augmented through up-regulation of tubular CAT-2 mRNA in ischemic acute rena...
© Schattauer 2015. Cardiac ischaemia and reperfusion leads to irreversible injury and subsequent tis...
Background: Reperfusion or reopening of occluded vessels is the gold standard to terminate ischemia....
Induction and activation of arginase is among the fastest responses of the heart to ischemic events....
The flux of arginine after ischemia-reperfusion in the rat kidney.BackgroundRenal arginine synthesis...
Myocardial ischemia and reperfusion may result in endothelial dysfunction and reduced release of nit...
Abstract In vivo administration of L-arginine at different time points during the course of myocardi...
AbstractObjective: We evaluated the effect of pretreatment with nitric oxide precursor before ischem...
Consumption of L-arginine contributes to reduced bioavailability of nitric oxide (NO) that is critic...
Background Reduced bioavailability of nitric oxide (NO) is a key factor contributing to myocardial i...
Background Nitric oxide (NO) is central for the integrity of the cardiovascular system, the mainten...
Objective: Several recent studies have implicated a role of endogenous nitric oxide (NO) in the path...
AbstractBackground: ischaemic renal dysfunction is present in many clinical settings, including card...
Background. Maintenance of nitric oxide (NO) availability is crucial for cardiovascular homeostasis ...
AbstractIschemia and reperfusion may damage myocytes and endothelium in jeopardized hearts. This stu...
l-Arginine transport is augmented through up-regulation of tubular CAT-2 mRNA in ischemic acute rena...