AbstractIt has been observed experimentally that cells from failing hearts exhibit elevated levels of reactive oxygen species (ROS) upon increases in energetic workload. One proposed mechanism for this behavior is mitochondrial Ca2+ mismanagement that leads to depletion of ROS scavengers. Here, we present a computational model to test this hypothesis. Previously published models of ROS production and scavenging were combined and reparameterized to describe ROS regulation in the cellular environment. Extramitochondrial Ca2+ pulses were applied to simulate frequency-dependent changes in cytosolic Ca2+. Model results show that decreased mitochondrial Ca2+uptake due to mitochondrial Ca2+ uniporter inhibition (simulating Ru360) or elevated cytos...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
AbstractTo understand the mechanisms involved in the control and regulation of mitochondrial reactiv...
To understand the mechanisms involved in the control and regulation of mitochondrial reactive oxygen...
AbstractIt has been observed experimentally that cells from failing hearts exhibit elevated levels o...
AbstractElevated levels of reactive oxygen species (ROS) play a critical role in cardiac myocyte sig...
AbstractElevated levels of reactive oxygen species (ROS) play a critical role in cardiac myocyte sig...
AbstractWe describe a unique mitochondrial oscillator that depends on oxidative phosphorylation, rea...
Abstract—Mitochondrial ATP production is continually adjusted to energy demand through coordinated i...
Changes in intracellular [Ca2+] ([Ca2+]I) homeostasis, mitochondrial dysfunction and reactive oxygen...
AbstractWhile it is generally accepted that mitochondrial reactive oxygen species (ROS) balance depe...
AbstractIschemia-induced shortening of the cardiac action potential and its heterogeneous recovery u...
Reactive Oxygen Species (ROS) generation is an unavoidable background process during normal cellular...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
Objective: Reactive oxygen species (ROS) have been implicated in the progression of ventricular hype...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
AbstractTo understand the mechanisms involved in the control and regulation of mitochondrial reactiv...
To understand the mechanisms involved in the control and regulation of mitochondrial reactive oxygen...
AbstractIt has been observed experimentally that cells from failing hearts exhibit elevated levels o...
AbstractElevated levels of reactive oxygen species (ROS) play a critical role in cardiac myocyte sig...
AbstractElevated levels of reactive oxygen species (ROS) play a critical role in cardiac myocyte sig...
AbstractWe describe a unique mitochondrial oscillator that depends on oxidative phosphorylation, rea...
Abstract—Mitochondrial ATP production is continually adjusted to energy demand through coordinated i...
Changes in intracellular [Ca2+] ([Ca2+]I) homeostasis, mitochondrial dysfunction and reactive oxygen...
AbstractWhile it is generally accepted that mitochondrial reactive oxygen species (ROS) balance depe...
AbstractIschemia-induced shortening of the cardiac action potential and its heterogeneous recovery u...
Reactive Oxygen Species (ROS) generation is an unavoidable background process during normal cellular...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
Objective: Reactive oxygen species (ROS) have been implicated in the progression of ventricular hype...
Mitochondria are key players in energy production, critical activity for the smooth functioning of e...
AbstractTo understand the mechanisms involved in the control and regulation of mitochondrial reactiv...
To understand the mechanisms involved in the control and regulation of mitochondrial reactive oxygen...