ATP, released by both neurons and glia, is an important mediator of brain intercellular communication. We find that selective activation of purinergic P2Y1 receptors (P2Y1R) in cultured astrocytes triggers glutamate release. By total internal fluorescence reflection imaging of fluorescence-labeled glutamatergic vesicles, we document that such release occurs by regulated exocytosis. The stimulus-secretion coupling mechanism involves Ca2+ release from internal stores and is controlled by additional transductive events mediated by tumor necrosis factor-α (TNFα) and prostaglandins (PG). P2Y1R activation induces release of both TNFα and PGE2 and blocking either one significantly reduces glutamate release. Accordingly, astrocytes from TNFα-defici...
Glutamatergic gliotransmission provides a stimulatory input to excitatory synapses in the hippocampa...
Astrocytes from the hippocampus of chronic epileptic rats exhibit an abnormal pattern of intracellul...
The release of transmitters from glia influences synaptic functions. The modalities and physiologica...
ATP, released by both neurons and glia, is an important mediator of brain intercellular communicatio...
ATP, released by both neurons and glia, is an important mediator of brain intercellular communicatio...
Astrocytes are highly secretory cells, participating in rapid brain communication by releasing gluta...
SummaryGlutamatergic gliotransmission provides a stimulatory input to excitatory synapses in the hip...
The purinergic P2X(7) receptor (P2X(7)R) can mediate glutamate release from cultured astrocytes. Usi...
Communication between neuronal and glial cells is important for many brain functions. Astrocytes can...
Astrocytes participate in information processing by actively modulating synaptic properties via glio...
Astrocytes in the brain form an intimately associated network with neurons. They respond to neuronal...
Astrocytes are highly secretory cells, participating in rapid brain communication by releasing gluta...
AbstractAstrocytes can exocytotically release the gliotransmitter glutamate from vesicular compartme...
Communication between neuronal and glial cells is thought to be very important for many brain functi...
Although glial cells have been traditionally viewed as supportive partners of neurons, studies of th...
Glutamatergic gliotransmission provides a stimulatory input to excitatory synapses in the hippocampa...
Astrocytes from the hippocampus of chronic epileptic rats exhibit an abnormal pattern of intracellul...
The release of transmitters from glia influences synaptic functions. The modalities and physiologica...
ATP, released by both neurons and glia, is an important mediator of brain intercellular communicatio...
ATP, released by both neurons and glia, is an important mediator of brain intercellular communicatio...
Astrocytes are highly secretory cells, participating in rapid brain communication by releasing gluta...
SummaryGlutamatergic gliotransmission provides a stimulatory input to excitatory synapses in the hip...
The purinergic P2X(7) receptor (P2X(7)R) can mediate glutamate release from cultured astrocytes. Usi...
Communication between neuronal and glial cells is important for many brain functions. Astrocytes can...
Astrocytes participate in information processing by actively modulating synaptic properties via glio...
Astrocytes in the brain form an intimately associated network with neurons. They respond to neuronal...
Astrocytes are highly secretory cells, participating in rapid brain communication by releasing gluta...
AbstractAstrocytes can exocytotically release the gliotransmitter glutamate from vesicular compartme...
Communication between neuronal and glial cells is thought to be very important for many brain functi...
Although glial cells have been traditionally viewed as supportive partners of neurons, studies of th...
Glutamatergic gliotransmission provides a stimulatory input to excitatory synapses in the hippocampa...
Astrocytes from the hippocampus of chronic epileptic rats exhibit an abnormal pattern of intracellul...
The release of transmitters from glia influences synaptic functions. The modalities and physiologica...