AbstractMitochondrial complex I is a large, membrane-bound enzyme central to energy metabolism, and its dysfunction is implicated in cardiovascular and neurodegenerative diseases. An interesting feature of mammalian complex I is the so-called A/D transition, when the idle enzyme spontaneously converts from the active (A) to the de-active, dormant (D) form. The A/D transition plays an important role in tissue response to ischemia and rate of the conversion can be a crucial factor determining outcome of ischemia/reperfusion. Here, we describe the effects of alkali cations on the rate of the D-to-A transition to define whether A/D conversion may be regulated by sodium.At neutral pH (7–7.5) sodium resulted in a clear increase of rates of activa...
AbstractThe Na+K+-ATPase functions in cells to couple energy from the hydrolysis of ATP to the trans...
AbstractOxidation of NADH in the mitochondrial matrix of aerobic cells is catalysed by mitochondrial...
The model of "chemical hypoxia" with KCN plus iodoacetic acid mimics the ATP depletion and reductive...
AbstractMitochondrial complex I is a large, membrane-bound enzyme central to energy metabolism, and ...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
Atherosclerosis, hardening of the arteries, is the major cause of stroke, peripheral artery disease ...
Resumen del póster presentado al 3rd Symposium on Biomedical Research: "Advances and Perspectives in...
SUMMARY. Several reports have shown that electrical and ionic changes occurring in acute myocardial ...
The exposure of isolated hepatocytes to the redox-cycling quinone menadione caused an early loss of ...
Background: Dietary high salt (HS) is a leading risk factor for mortality and morbidity....
AbstractMitochondrial complex I (NADH:ubiquinone oxidoreductase) is a key enzyme in cellular energy ...
All metazoans depend on the consumption of O2 by the mitochondrial oxidative phosphorylation system ...
Elevated intracellular Na (Nai) and metabolic impairment are interrelated pathophysiological feature...
AbstractThe Na+/Ca2+ antiporter was purified from beef heart mitochondria and reconstituted into lip...
Oxidative stress is one of the major causes of cell death. Using time- lapse confocal recording of l...
AbstractThe Na+K+-ATPase functions in cells to couple energy from the hydrolysis of ATP to the trans...
AbstractOxidation of NADH in the mitochondrial matrix of aerobic cells is catalysed by mitochondrial...
The model of "chemical hypoxia" with KCN plus iodoacetic acid mimics the ATP depletion and reductive...
AbstractMitochondrial complex I is a large, membrane-bound enzyme central to energy metabolism, and ...
Objective: Intracellular Na rises rapidly during cardiac ischemia and this has been attributed to th...
Atherosclerosis, hardening of the arteries, is the major cause of stroke, peripheral artery disease ...
Resumen del póster presentado al 3rd Symposium on Biomedical Research: "Advances and Perspectives in...
SUMMARY. Several reports have shown that electrical and ionic changes occurring in acute myocardial ...
The exposure of isolated hepatocytes to the redox-cycling quinone menadione caused an early loss of ...
Background: Dietary high salt (HS) is a leading risk factor for mortality and morbidity....
AbstractMitochondrial complex I (NADH:ubiquinone oxidoreductase) is a key enzyme in cellular energy ...
All metazoans depend on the consumption of O2 by the mitochondrial oxidative phosphorylation system ...
Elevated intracellular Na (Nai) and metabolic impairment are interrelated pathophysiological feature...
AbstractThe Na+/Ca2+ antiporter was purified from beef heart mitochondria and reconstituted into lip...
Oxidative stress is one of the major causes of cell death. Using time- lapse confocal recording of l...
AbstractThe Na+K+-ATPase functions in cells to couple energy from the hydrolysis of ATP to the trans...
AbstractOxidation of NADH in the mitochondrial matrix of aerobic cells is catalysed by mitochondrial...
The model of "chemical hypoxia" with KCN plus iodoacetic acid mimics the ATP depletion and reductive...