release and programmed cell death, but also favors opening of the mitochondrial permeability transition pore (MPTP). An increase in MPTP susceptibility would support a role for bcl-2 depletion mediated cell death in the calcium overload setting of early reperfusion via MPTP as well as later in reperfusion via MOMP as myocardial calcium content normalizes.Calcium retention capacity (CRC) was used to reflect the sensitivity of the MPTP opening in isolated cardiac mitochondria. To study the relationship between bcl-2 inhibition and MPTP opening, mitochondria were incubated with a bcl-2 inhibitor (HA14-1) and CRC measured. The contribution of preserved bcl-2 content to MPTP opening following ischemia-reperfusion was explored using transgenic b...
Aims: The mitochondrial permeability transition pore (mPTP) plays a central role for tissue damage a...
Aims: The mitochondrial permeability transition pore (mPTP) plays a central role for tissue damage a...
Mitochondria act as 'sinks' for Ca2+ signaling, with mitochondrial Ca2+ uptake linking physiological...
Mitochondria are critical to cardiac injury during reperfusion as a result of damage sustained durin...
<div><p>Background</p><p>Mitochondria are critical to cardiac injury during reperfusion as a result ...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
AbstractMyocardial ischemia damages the electron transport chain and augments cardiomyocyte death du...
Calcium homeostasis is essential for cell survival and is precisely controlled by several cellular a...
AbstractDysregulation of Ca2+ has long been implicated to be important in cell injury. A Ca2+-linked...
AbstractThe age-related accumulation of mitochondrial DNA mutations has the potential to impair orga...
Aims: The mitochondrial permeability transition pore (mPTP) plays a central role for tissue damage a...
Aims: The mitochondrial permeability transition pore (mPTP) plays a central role for tissue damage a...
Mitochondria act as 'sinks' for Ca2+ signaling, with mitochondrial Ca2+ uptake linking physiological...
Mitochondria are critical to cardiac injury during reperfusion as a result of damage sustained durin...
<div><p>Background</p><p>Mitochondria are critical to cardiac injury during reperfusion as a result ...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
Background Mitochondria are critical to cardiac injury during reperfusion as a result of damage sust...
AbstractMyocardial ischemia damages the electron transport chain and augments cardiomyocyte death du...
Calcium homeostasis is essential for cell survival and is precisely controlled by several cellular a...
AbstractDysregulation of Ca2+ has long been implicated to be important in cell injury. A Ca2+-linked...
AbstractThe age-related accumulation of mitochondrial DNA mutations has the potential to impair orga...
Aims: The mitochondrial permeability transition pore (mPTP) plays a central role for tissue damage a...
Aims: The mitochondrial permeability transition pore (mPTP) plays a central role for tissue damage a...
Mitochondria act as 'sinks' for Ca2+ signaling, with mitochondrial Ca2+ uptake linking physiological...