Astrocytes participate in information processing by actively modulating synaptic properties via gliotransmitter release. Various mechanisms of astrocytic release have been reported, including release from storage organelles via exocytosis and release from the cytosol via plasma membrane ion channels and pumps. It is still not fully clear which mechanisms operate under which conditions, but some of them, being Ca(2+)-regulated, may be physiologically relevant. The properties of Ca(2+)-dependent transmitter release via exocytosis or via ion channels are different and expected to produce different extracellular transmitter concentrations over time and to have distinct functional consequences. The molecular aspects of these two release pathways...
It is widely recognized that extracellular vesicles subserve non-classical signal transmission in th...
It is widely recognized that extracellular vesicles subserve non-classical signal transmission in th...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Astrocytes participate in information processing by actively modulating synaptic properties via glio...
AbstractAstrocytes can exocytotically release the gliotransmitter glutamate from vesicular compartme...
The influence of astrocytes on synaptic function has been increasingly studied, owing to the discove...
In recent decades, astrocytes have gained ground in their protagonist role at the synapses, challeng...
Astrocytes have traditionally been considered ancillary, satellite cells of the nervous system. Howe...
Astrocytes are the most abundant glial cell type in the brain. Although not apposite for long-range ...
Astrocytes are highly complex cells with many emerging putative roles in brain function. Of these, g...
Astrocytes are highly complex cells with many emerging putative roles in brain function. Of these, g...
Communication between neuronal and glial cells is important for many brain functions. Astrocytes can...
Astrocytes have traditionally been considered ancillary, satellite cells of the nervous system. Howe...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Astrocytes undergo elevations in intracellular calcium following activation of metabotropic receptor...
It is widely recognized that extracellular vesicles subserve non-classical signal transmission in th...
It is widely recognized that extracellular vesicles subserve non-classical signal transmission in th...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Astrocytes participate in information processing by actively modulating synaptic properties via glio...
AbstractAstrocytes can exocytotically release the gliotransmitter glutamate from vesicular compartme...
The influence of astrocytes on synaptic function has been increasingly studied, owing to the discove...
In recent decades, astrocytes have gained ground in their protagonist role at the synapses, challeng...
Astrocytes have traditionally been considered ancillary, satellite cells of the nervous system. Howe...
Astrocytes are the most abundant glial cell type in the brain. Although not apposite for long-range ...
Astrocytes are highly complex cells with many emerging putative roles in brain function. Of these, g...
Astrocytes are highly complex cells with many emerging putative roles in brain function. Of these, g...
Communication between neuronal and glial cells is important for many brain functions. Astrocytes can...
Astrocytes have traditionally been considered ancillary, satellite cells of the nervous system. Howe...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Astrocytes undergo elevations in intracellular calcium following activation of metabotropic receptor...
It is widely recognized that extracellular vesicles subserve non-classical signal transmission in th...
It is widely recognized that extracellular vesicles subserve non-classical signal transmission in th...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...