Oxidative stress can be generated at several sites within the mitochondria. Among these, monoamine oxidase (MAO) has been described as a prominent source. MAOs are mitochondrial flavoenzymes responsible for the oxidative deamination of catecholamines, serotonin and biogenic amines, and during this process they generate H2O2 and aldehyde intermediates. The role of MAO in cardiovascular pathophysiology has only recently gathered some attention since it has been demonstrated that both H2O2 and aldehydes may target mitochondrial function and consequently affect function and viability of the myocardium. In the present review, we will discuss the role of MAO in catecholamine and serotonin clearance and cycling in relation to cardiac structure and...
Oxidative stress plays a key role in cardiac diseases, although the sources of reactive oxygen speci...
RATIONALE: Monoamine oxidases (MAOs) are mitochondrial enzymes that catabolize prohypertrophic neur...
International audienceAIMS:Oxidative stress and mitochondrial dysfunction participate together in th...
Oxidative stress can be generated at several sites within the mitochondria. Among these, monoamine o...
International audienceOxidative stress can be generated at several sites within the mitochondria. Am...
AbstractRecent evidence highlights monoamine oxidases (MAO) as another prominent source of oxidative...
Recent evidence highlights monoamine oxidases (MAO) as another prominent source of oxidative stress....
AIMS: Monoamine oxidases (MAOs) are mitochondrial flavoenzymes responsible for neurotransmitter and...
Aims: Monoamine oxidases (MAOs) are mitochondrial flavoenzymes responsible for neurotransmitter and ...
International audienceThe mitochondrial enzyme monoamine oxidase A (MAO-A) is widely distributed in ...
Oxidative stress has been implicated in numerous pathologies and a number of intracellular sources o...
Growing evidence indicates that reactive oxygen species (ROS) may play a key role in human heart fai...
International audienceChronic remodeling postmyocardial infarction consists in various maladaptive c...
Oxidative stress plays a key role in cardiac diseases, although the sources of reactive oxygen speci...
RATIONALE: Monoamine oxidases (MAOs) are mitochondrial enzymes that catabolize prohypertrophic neur...
International audienceAIMS:Oxidative stress and mitochondrial dysfunction participate together in th...
Oxidative stress can be generated at several sites within the mitochondria. Among these, monoamine o...
International audienceOxidative stress can be generated at several sites within the mitochondria. Am...
AbstractRecent evidence highlights monoamine oxidases (MAO) as another prominent source of oxidative...
Recent evidence highlights monoamine oxidases (MAO) as another prominent source of oxidative stress....
AIMS: Monoamine oxidases (MAOs) are mitochondrial flavoenzymes responsible for neurotransmitter and...
Aims: Monoamine oxidases (MAOs) are mitochondrial flavoenzymes responsible for neurotransmitter and ...
International audienceThe mitochondrial enzyme monoamine oxidase A (MAO-A) is widely distributed in ...
Oxidative stress has been implicated in numerous pathologies and a number of intracellular sources o...
Growing evidence indicates that reactive oxygen species (ROS) may play a key role in human heart fai...
International audienceChronic remodeling postmyocardial infarction consists in various maladaptive c...
Oxidative stress plays a key role in cardiac diseases, although the sources of reactive oxygen speci...
RATIONALE: Monoamine oxidases (MAOs) are mitochondrial enzymes that catabolize prohypertrophic neur...
International audienceAIMS:Oxidative stress and mitochondrial dysfunction participate together in th...