This study investigated the effect of magnesium on the vascular reactivity of conduit and resistance arteries in a nitric oxide synthase inhibition-induced hypertension model. The aorta and third-order branches of the mesenteric artery were dissected from normotensive control and hypertensive rats, and their constriction and dilation responses in physiological saline solution containing normal (1.2 mM) or high (4.8 mM) magnesium concentrations were examined. The responses of the vessels were evaluated using potassium chloride (KCl) and phenylephrine (Phe), acetylcholine (ACh) and sodium nitroprusside. The Phe-induced constriction response of the aortic rings increased, whereas the ACh-induced dilation response decreased, in the hypertensive...
Epidemiological, clinical and experimental evidence indicates an inverse association between Mg2+ le...
Epidemiological, clinical and experimental evidence indicates an inverse association between Mg<s...
Magnesium is an essential cation critically involved in cell viability and physiological regulation ...
This study examines the effects of magnesium on vascular tone and reactivity in mesenteric resistanc...
This study examines the effects of magnesium on vascular tone and reactivity in mesenteric resistanc...
The aim of this study was to assess the effect of oral magnesium supplementation (Mg-supp) on blood ...
This study investigated the effects of magnesium on blood rheological properties and blood pressure ...
The aim of this study was to show whether the decrease in blood pressure induced by Mg supplementati...
The aim of this study was to show whether the decrease in blood pressure induced by Mg supplementati...
Abstract. Magnesium may influence blood pressure by modulating vascular tone and structure through i...
Many factors have been implicated in the pathogenesis of hypertension, including changes in intracel...
Magnesium may influence blood pressure by modulating vascular tone and structure through its effects...
Magnesium may influence blood pressure by modulating vascular tone and structure through its effects...
Attention is growing for a potential role of magnesium in the pathoetiology of cardiovascular diseas...
Attention is growing for a potential role of magnesium in the pathoetiology of cardiovascular diseas...
Epidemiological, clinical and experimental evidence indicates an inverse association between Mg2+ le...
Epidemiological, clinical and experimental evidence indicates an inverse association between Mg<s...
Magnesium is an essential cation critically involved in cell viability and physiological regulation ...
This study examines the effects of magnesium on vascular tone and reactivity in mesenteric resistanc...
This study examines the effects of magnesium on vascular tone and reactivity in mesenteric resistanc...
The aim of this study was to assess the effect of oral magnesium supplementation (Mg-supp) on blood ...
This study investigated the effects of magnesium on blood rheological properties and blood pressure ...
The aim of this study was to show whether the decrease in blood pressure induced by Mg supplementati...
The aim of this study was to show whether the decrease in blood pressure induced by Mg supplementati...
Abstract. Magnesium may influence blood pressure by modulating vascular tone and structure through i...
Many factors have been implicated in the pathogenesis of hypertension, including changes in intracel...
Magnesium may influence blood pressure by modulating vascular tone and structure through its effects...
Magnesium may influence blood pressure by modulating vascular tone and structure through its effects...
Attention is growing for a potential role of magnesium in the pathoetiology of cardiovascular diseas...
Attention is growing for a potential role of magnesium in the pathoetiology of cardiovascular diseas...
Epidemiological, clinical and experimental evidence indicates an inverse association between Mg2+ le...
Epidemiological, clinical and experimental evidence indicates an inverse association between Mg<s...
Magnesium is an essential cation critically involved in cell viability and physiological regulation ...