AbstractMitochondria are often regarded as a major source of reactive oxygen species (ROS) in animal cells, with H2O2 being the predominant ROS released from mitochondria; however, it has been recently demonstrated that energized brain mitochondria may act as stabilizers of H2O2 concentration (Starkov et al. [1]) based on the balance between production and the consumption of H2O2, the later of which is a function of [H2O2] and follows first order kinetics. Here we test the hypothesis that isolated skeletal muscle mitochondria, from the rat, are able to modulate [H2O2] based upon the interaction between the production of ROS, as superoxide/H2O2, and the H2O2 decomposition capacity. The compartmentalization of detection systems for H2O2 and t...
We have examined the substrate specificity and inhibitor sensitivity of H2O2 formation by rat heart ...
Mitochondria are the primary producers of intracellular H2O2, an oxidant signaling molecule that has...
AbstractDehydrogenases that use ubiquinone as an electron acceptor, including complex I of the respi...
AbstractMitochondria are often regarded as a major source of reactive oxygen species (ROS) in animal...
Mitochondria are widely recognized as sources of reactive oxygen species in animal cells, with H2O2 ...
AbstractMitochondria have the capacity to produce and consume H2O2. We examined H2O2 metabolism in i...
We compared the capacity of rat liver and heart mitochondria to remove exogenously produced H2O2, de...
Reactive oxygen species are a by-product of mitochondrial oxidative phosphorylation, derived from a ...
For over 40 years, mitochondrial reactive oxygen species (ROS) production and balance has been studi...
Mitochondrial respiration produces both complete and partially reduced oxygen species that are invol...
AbstractReactive oxygen species (ROS) have been widely implicated in the pathogenesis of various neu...
Mitochondrial radical production is important in redox signaling, aging and disease, but the relativ...
<p>A-B: Representative raw traces of the ROS-recordings. The rate of hydrogen peroxide (H<sub>2</sub...
AbstractThe observation that in isolated mitochondria electrons may leak out of the respiratory chai...
Oxidative stress is a feature of cardiovascular disease. Hydrogen peroxide (H2O2) can act as a signa...
We have examined the substrate specificity and inhibitor sensitivity of H2O2 formation by rat heart ...
Mitochondria are the primary producers of intracellular H2O2, an oxidant signaling molecule that has...
AbstractDehydrogenases that use ubiquinone as an electron acceptor, including complex I of the respi...
AbstractMitochondria are often regarded as a major source of reactive oxygen species (ROS) in animal...
Mitochondria are widely recognized as sources of reactive oxygen species in animal cells, with H2O2 ...
AbstractMitochondria have the capacity to produce and consume H2O2. We examined H2O2 metabolism in i...
We compared the capacity of rat liver and heart mitochondria to remove exogenously produced H2O2, de...
Reactive oxygen species are a by-product of mitochondrial oxidative phosphorylation, derived from a ...
For over 40 years, mitochondrial reactive oxygen species (ROS) production and balance has been studi...
Mitochondrial respiration produces both complete and partially reduced oxygen species that are invol...
AbstractReactive oxygen species (ROS) have been widely implicated in the pathogenesis of various neu...
Mitochondrial radical production is important in redox signaling, aging and disease, but the relativ...
<p>A-B: Representative raw traces of the ROS-recordings. The rate of hydrogen peroxide (H<sub>2</sub...
AbstractThe observation that in isolated mitochondria electrons may leak out of the respiratory chai...
Oxidative stress is a feature of cardiovascular disease. Hydrogen peroxide (H2O2) can act as a signa...
We have examined the substrate specificity and inhibitor sensitivity of H2O2 formation by rat heart ...
Mitochondria are the primary producers of intracellular H2O2, an oxidant signaling molecule that has...
AbstractDehydrogenases that use ubiquinone as an electron acceptor, including complex I of the respi...