Angiotensin-(1-9) is a peptide from the noncanonical renin-angiotensin system with anti-hypertrophic effects in cardiomyocytes via an unknown mechanism. In the present study we aimed to elucidate it, basing us initially on previous work from our group and colleagues who proved a relationship between disturbances in mitochondrial morphology and calcium handling, associated with the setting of cardiac hypertrophy. Our first finding was that angiotensin-(1-9) can induce mitochondrial fusion through DRP1 phosphorylation. Secondly, angiotensin-(1-9) blocked mitochondrial fission and intracellular calcium dysregulation in a model of norepinephrine-induced cardiomyocyte hypertrophy, preventing the activation of the calcineurin/NFAT signaling pathw...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
Calcium can be regulated by mitochondria and also plays a significant role in mitochondrial pathways...
Prolonged pathological cardiac hypertrophy is a major risk factor for death. In the heart, angiotens...
Vascular smooth muscle cell (VSMC) phenotypic switch plays an essential role in the pathogenesis of ...
Background: The aim of this study was to investigate the possible effects of angiotensin-(1–7) [Ang-...
Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our prev...
AbstractBackgroundThe aim of this study was to investigate the possible effects of angiotensin-(1–7)...
Angiotensin II-induced cardiac damage is associated with oxidative stress-dependent mitochondrial dy...
Abstract—Angiotensin II–induced cardiac damage is associated with oxidative stress-dependent mitocho...
AMP-kinase (AMPK) activation reduces cardiac hypertrophy, although underlying molecular mechanisms r...
ObjectivesWe investigated the effect of reducing mitochondrial oxidative stress by the mitochondrial...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
Background: Angiotensin-(1-9) is present in human and rat plasma and its circulating levels increase...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
Calcium can be regulated by mitochondria and also plays a significant role in mitochondrial pathways...
Prolonged pathological cardiac hypertrophy is a major risk factor for death. In the heart, angiotens...
Vascular smooth muscle cell (VSMC) phenotypic switch plays an essential role in the pathogenesis of ...
Background: The aim of this study was to investigate the possible effects of angiotensin-(1–7) [Ang-...
Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our prev...
AbstractBackgroundThe aim of this study was to investigate the possible effects of angiotensin-(1–7)...
Angiotensin II-induced cardiac damage is associated with oxidative stress-dependent mitochondrial dy...
Abstract—Angiotensin II–induced cardiac damage is associated with oxidative stress-dependent mitocho...
AMP-kinase (AMPK) activation reduces cardiac hypertrophy, although underlying molecular mechanisms r...
ObjectivesWe investigated the effect of reducing mitochondrial oxidative stress by the mitochondrial...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
Background: Angiotensin-(1-9) is present in human and rat plasma and its circulating levels increase...
<p>Hypertension-induced cardiac apoptosis is a major contributor to early-stage heart-failure. Our p...
Calcium can be regulated by mitochondria and also plays a significant role in mitochondrial pathways...
Prolonged pathological cardiac hypertrophy is a major risk factor for death. In the heart, angiotens...