It is becoming increasingly clear that astrocytes play an active role in neural communications by releasing neuro-active gliotransmitters into extra-cellular spaces, where they act on neighbouring neurons in order to modulate synaptic transmission and plasticity, and affect behaviour. However, in terms of cell biology, our knowledge of the mechanisms governing the secretion of gliotransmitters is so much less detailed than our knowledge of those governing neurotransmitters that it has even been questioned whether astrocytes are capable of secreting molecules. This review critically evaluates the currently available findings concerning gliotransmitters with the aim of stimulating discussion in the field
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Astroglia is a main type of brain neuroglia, which includes many cell sub-types that differ in their...
By forming close contacts with synapses, astrocytes secrete neuroactive substances and remove neurot...
It is becoming increasingly clear that astrocytes play an active role in neural communications by re...
It is becoming increasingly clear that astrocytes play an active role in neural communications by re...
For decades neurons have been regarded as the only cells involved in the generation and control of b...
International audienceThe identification of the presence of active signaling between astrocytes and ...
International audienceThe identification of the presence of active signaling between astrocytes and ...
International audienceThe identification of the presence of active signaling between astrocytes and ...
The identification of the presence of active signaling between astrocytes and neurons in a process t...
Accumulating evidence has demonstrated the existence of bidirectional communication between glial ce...
In the last years, the classical view of glial cells (in particular of astrocytes) as a simple suppo...
The central nervous system is composed of two main classes of cells: neurons and glia. This chapter ...
The central nervous system is composed of two main classes of cells: neurons and glia. This chapter ...
Astrocytes participate in information processing by actively modulating synaptic properties via glio...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Astroglia is a main type of brain neuroglia, which includes many cell sub-types that differ in their...
By forming close contacts with synapses, astrocytes secrete neuroactive substances and remove neurot...
It is becoming increasingly clear that astrocytes play an active role in neural communications by re...
It is becoming increasingly clear that astrocytes play an active role in neural communications by re...
For decades neurons have been regarded as the only cells involved in the generation and control of b...
International audienceThe identification of the presence of active signaling between astrocytes and ...
International audienceThe identification of the presence of active signaling between astrocytes and ...
International audienceThe identification of the presence of active signaling between astrocytes and ...
The identification of the presence of active signaling between astrocytes and neurons in a process t...
Accumulating evidence has demonstrated the existence of bidirectional communication between glial ce...
In the last years, the classical view of glial cells (in particular of astrocytes) as a simple suppo...
The central nervous system is composed of two main classes of cells: neurons and glia. This chapter ...
The central nervous system is composed of two main classes of cells: neurons and glia. This chapter ...
Astrocytes participate in information processing by actively modulating synaptic properties via glio...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Astroglia is a main type of brain neuroglia, which includes many cell sub-types that differ in their...
By forming close contacts with synapses, astrocytes secrete neuroactive substances and remove neurot...