Supplementation with dietary inorganic nitrate (NO3-) is increasingly recognized to confer cardioprotective effects in both healthy and clinical populations. While the mechanism(s) remains ambiguous, in skeletal muscle oral consumption of NaNO3 has been shown to improve mitochondrial efficiency. Whether NaNO3 has similar effects on mitochondria within the heart is unknown. Therefore, we comprehensively investigated the effect of NaNO3 supplementation on in vivo left ventricular (LV) function and mitochondrial bioenergetics. Healthy male Sprague-Dawley rats were supplemented with NaNO3 (1 g/l) in their drinking water for 7 days. Echocardiography and invasive hemodynamics were used to assess LV morphology and function. Blood pressure (BP) was...
High dose nitrate (NO3−) supplementation via beetroot juice (BR, 1 mmol/kg/day) lowers mean arterial...
Nitric oxide (NO) is a vasodilator and independent modulator of cardiac remodelling. Commonly, in ca...
Skeletal muscle disuse reduces muscle protein synthesis rates and induces atrophy, events associated...
Supplementation with dietary inorganic nitrate (NO−3) is increasingly recognized to confer cardiopro...
Dietary inorganic nitrate prevents aspects of cardiac mitochondrial dysfunction induced by hypoxia, ...
Hypoxic exposure is associated with impaired cardiac energetics in humans and altered mitochondrial ...
Dietary inorganic nitrate prevents aspects of cardiac mitochondrial dysfunction induced by hypoxia, ...
Hypoxic exposure is associated with impaired cardiac energetics in humans and altered mitochondrial ...
BACKGROUND: Inorganic nitrate, abundant in leafy green vegetables and beetroot, is thought to have p...
SummaryNitrate, an inorganic anion abundant in vegetables, is converted in vivo to bioactive nitroge...
BACKGROUND: Inorganic nitrate, abundant in leafy green vegetables and beetroot, is thought to have p...
Dietary inorganic nitrate prevents aspects of cardiac mitochondrial dysfunction induced by hypoxia, ...
ObjectivesThe aim of this study was to test the hypothesis that long-term dietary nitrate supplement...
SummaryNitrate, an inorganic anion abundant in vegetables, is converted in vivo to bioactive nitroge...
Skeletal muscle disuse reduces muscle protein synthesis rates and induces atrophy, events associated...
High dose nitrate (NO3−) supplementation via beetroot juice (BR, 1 mmol/kg/day) lowers mean arterial...
Nitric oxide (NO) is a vasodilator and independent modulator of cardiac remodelling. Commonly, in ca...
Skeletal muscle disuse reduces muscle protein synthesis rates and induces atrophy, events associated...
Supplementation with dietary inorganic nitrate (NO−3) is increasingly recognized to confer cardiopro...
Dietary inorganic nitrate prevents aspects of cardiac mitochondrial dysfunction induced by hypoxia, ...
Hypoxic exposure is associated with impaired cardiac energetics in humans and altered mitochondrial ...
Dietary inorganic nitrate prevents aspects of cardiac mitochondrial dysfunction induced by hypoxia, ...
Hypoxic exposure is associated with impaired cardiac energetics in humans and altered mitochondrial ...
BACKGROUND: Inorganic nitrate, abundant in leafy green vegetables and beetroot, is thought to have p...
SummaryNitrate, an inorganic anion abundant in vegetables, is converted in vivo to bioactive nitroge...
BACKGROUND: Inorganic nitrate, abundant in leafy green vegetables and beetroot, is thought to have p...
Dietary inorganic nitrate prevents aspects of cardiac mitochondrial dysfunction induced by hypoxia, ...
ObjectivesThe aim of this study was to test the hypothesis that long-term dietary nitrate supplement...
SummaryNitrate, an inorganic anion abundant in vegetables, is converted in vivo to bioactive nitroge...
Skeletal muscle disuse reduces muscle protein synthesis rates and induces atrophy, events associated...
High dose nitrate (NO3−) supplementation via beetroot juice (BR, 1 mmol/kg/day) lowers mean arterial...
Nitric oxide (NO) is a vasodilator and independent modulator of cardiac remodelling. Commonly, in ca...
Skeletal muscle disuse reduces muscle protein synthesis rates and induces atrophy, events associated...