AbstractMitochondria play a pivotal role in intracellular Ca2+ signalling by taking up and releasing the ion upon specific conditions. In order to do so, mitochondria depend on a number of factors, such as the mitochondrial membrane potential and spatio-temporal constraints. Whereas most of the basic principles underlying mitochondrial Ca2+ handling have been successfully deciphered over the last 50 years using assays based on in vitro preparations of mitochondria or cultured cells, we have only just started to understand the actual physiological relevance of these processes in the whole animal. Recent advancements in imaging and genetically encoded sensor technologies have allowed us to visualise mitochondrial Ca2+ transients in live mice....
AbstractThe literature suggests that the physiological functions for which mitochondria sequester Ca...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe heterogenous subcellular distribution of a wide array of channels, pumps and exchangers ...
AbstractMitochondria play a pivotal role in intracellular Ca2+ signalling by taking up and releasing...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractMitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation o...
Apart from their essential role in generating ATP, mitochondria also act as local calcium (Ca(2+)) b...
AbstractIn the Fifties, electron microscopy studies on neuronal cells showed that mitochondria typic...
Mitochondria are crucial in different intracellular pathways of signal transduction. Mitochondria ar...
AbstractCalcium handling by mitochondria is a key feature in cell life. It is involved in energy pro...
AbstractMitochondrial Ca2+ transport was initially considered important only in buffering of cytosol...
AbstractMitochondria process local and global Ca2+ signals. Thereby the spatiotemporal patterns of m...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
AbstractThe literature suggests that the physiological functions for which mitochondria sequester Ca...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe heterogenous subcellular distribution of a wide array of channels, pumps and exchangers ...
AbstractMitochondria play a pivotal role in intracellular Ca2+ signalling by taking up and releasing...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractMitochondria promptly respond to Ca2+-mediated cell stimulations with a rapid accumulation o...
Apart from their essential role in generating ATP, mitochondria also act as local calcium (Ca(2+)) b...
AbstractIn the Fifties, electron microscopy studies on neuronal cells showed that mitochondria typic...
Mitochondria are crucial in different intracellular pathways of signal transduction. Mitochondria ar...
AbstractCalcium handling by mitochondria is a key feature in cell life. It is involved in energy pro...
AbstractMitochondrial Ca2+ transport was initially considered important only in buffering of cytosol...
AbstractMitochondria process local and global Ca2+ signals. Thereby the spatiotemporal patterns of m...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
The possibility of specifically addressing recombinant probes to mitochondria is a novel, powerful w...
AbstractThe literature suggests that the physiological functions for which mitochondria sequester Ca...
AbstractBoth the contribution of mitochondria to intracellular calcium (Ca2+) signalling and the rol...
AbstractThe heterogenous subcellular distribution of a wide array of channels, pumps and exchangers ...