The notion that astrocytes have a profound influence on the function of synapses between CNS neurons implies that the development of synaptic connections and their glial neighbors are controlled by reciprocally acting signals. Currently, however, synaptogenesis is considered a purely neuronal affair. This article sum-marizes recent experimental evidence suggesting that this may not be the case. Astrocytes may indeed regu-late the formation, maturation and maintenance of synapses. The recent advances caution that synapses cannot develop correctly without astrocytes. Further progress on this issue requires new experimental models to identify signaling pathways and to scrutinize the relevance of glia–synapse interactions in vivo. During the pa...
Astrocytes, also known as astroglia, are characteristic star-shaped glial cells in the brain and spi...
Glial cells represent the most abundant cell population in the central nervous system and for years ...
Astrocytes are the most abundant glia in the central nervous system that play a significant role in...
Glial cells comprise 90% of the human brain.1 Glia are divided into two subtypes, the microglia whic...
Astrocytes are the major glial cells in the brain, which play a supporting role in the energy and nu...
International audienceClose structural and functional interactions of astrocytes with synapses play ...
Synaptic plasticity, the ability of neurons to change the number and strength of their synapses, has...
In addition to being structurally associated with synapses, astrocytes are now known to be functiona...
Astrocytes are the most abundant cell type in the mammalian brain. Interest in astrocyte function ha...
Synaptic plasticity is the capacity of a preexisting connection between two neurons to change in str...
Our awareness of the number of synapse regulatory functions performed by astroglia is rapidly expand...
By forming close contacts with synapses, astrocytes secrete neuroactive substances and remove neurot...
Astrocytes are known to provide trophic support to neurons and were originally thought to be passive...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeosta...
Astrocytes, also known as astroglia, are characteristic star-shaped glial cells in the brain and spi...
Glial cells represent the most abundant cell population in the central nervous system and for years ...
Astrocytes are the most abundant glia in the central nervous system that play a significant role in...
Glial cells comprise 90% of the human brain.1 Glia are divided into two subtypes, the microglia whic...
Astrocytes are the major glial cells in the brain, which play a supporting role in the energy and nu...
International audienceClose structural and functional interactions of astrocytes with synapses play ...
Synaptic plasticity, the ability of neurons to change the number and strength of their synapses, has...
In addition to being structurally associated with synapses, astrocytes are now known to be functiona...
Astrocytes are the most abundant cell type in the mammalian brain. Interest in astrocyte function ha...
Synaptic plasticity is the capacity of a preexisting connection between two neurons to change in str...
Our awareness of the number of synapse regulatory functions performed by astroglia is rapidly expand...
By forming close contacts with synapses, astrocytes secrete neuroactive substances and remove neurot...
Astrocytes are known to provide trophic support to neurons and were originally thought to be passive...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeosta...
Astrocytes, also known as astroglia, are characteristic star-shaped glial cells in the brain and spi...
Glial cells represent the most abundant cell population in the central nervous system and for years ...
Astrocytes are the most abundant glia in the central nervous system that play a significant role in...