KEY POINTS: Calcium ions regulate mitochondrial ATP production and contractile activity and thus play a pivotal role in matching energy supply and demand in cardiac muscle. The magnitude and kinetics of the changes in free mitochondrial calcium concentration in cardiac myocytes are largely unknown. Rapid stimulation frequency-dependent increases but relatively slow decreases in free mitochondrial calcium concentration were observed in rat cardiac myocytes. This asymmetry caused a rise in the mitochondrial calcium concentration with stimulation frequency. These results provide insight into the mechanisms of mitochondrial calcium uptake and release that are important in healthy and diseased myocardium. ABSTRACT: Calcium ions regulate mitochon...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
Aim: Calcium ions play a pivotal role in matching energy supply and demand in cardiac muscle. Mitoch...
AIM: Calcium ions play a pivotal role in matching energy supply and demand in cardiac muscle. Mitoch...
AbstractMitochondrial free Ca2+ may regulate mitochondrial ATP production during cardiac exercise. H...
AbstractMitochondrial involvement in the regulation of cytosolic calcium concentration ([Ca2+]i) in ...
AbstractExisting theory suggests that mitochondria act as significant, dynamic buffers of cytosolic ...
Existing theory suggests that mitochondria act as significant, dynamic buffers of cytosolic calcium ...
Existing theory suggests that mitochondria act as significant, dynamic buffers of cytosolic calcium ...
AbstractMitochondrial free Ca2+ may regulate mitochondrial ATP production during cardiac exercise. H...
AbstractMitochondrial Ca2+ transport was initially considered important only in buffering of cytosol...
Recent studies have suggested that mitochondria may play important roles in the Ca(2+) homeostasis o...
Recent studies have suggested that mitochondria may play important roles in the Ca2+ homeostasis of ...
Mitochondrial calcium plays a crucial role in mitochondrial metabolism, cell calcium handling, and c...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
Aim: Calcium ions play a pivotal role in matching energy supply and demand in cardiac muscle. Mitoch...
AIM: Calcium ions play a pivotal role in matching energy supply and demand in cardiac muscle. Mitoch...
AbstractMitochondrial free Ca2+ may regulate mitochondrial ATP production during cardiac exercise. H...
AbstractMitochondrial involvement in the regulation of cytosolic calcium concentration ([Ca2+]i) in ...
AbstractExisting theory suggests that mitochondria act as significant, dynamic buffers of cytosolic ...
Existing theory suggests that mitochondria act as significant, dynamic buffers of cytosolic calcium ...
Existing theory suggests that mitochondria act as significant, dynamic buffers of cytosolic calcium ...
AbstractMitochondrial free Ca2+ may regulate mitochondrial ATP production during cardiac exercise. H...
AbstractMitochondrial Ca2+ transport was initially considered important only in buffering of cytosol...
Recent studies have suggested that mitochondria may play important roles in the Ca(2+) homeostasis o...
Recent studies have suggested that mitochondria may play important roles in the Ca2+ homeostasis of ...
Mitochondrial calcium plays a crucial role in mitochondrial metabolism, cell calcium handling, and c...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...
International audienceThe relationships between cardiac cell structure and the regulation of mitocho...