Optogenetic modulates gliotransmission
Gliotransmitters dérivés de l'astrocyte glutamate et l'ATP modulent l'activité neuronale. Cependant, il reste à savoir comment les astrocytes contrôlent la libération et coordonnent les actions de ces gliotransmetteurs.
Shen, Weida
core
The influence of gliotransmission on higher cognitive functions
In recent years, the understanding of synaptic modulation by neuron-astrocyte interactions has evolved considerably, contributing to build up the concept of the “tripartite synapse”. This concept is based on the dynamic dialogue between astrocytes and neurons that complements and modulates the communication between pre- and post-synaptic structures ...
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Astrocyte-Mediated Plasticity: Multi-Scale Mechanisms Linking Synaptic Dynamics to Learning and Memory. [PDF]
Yamamoto M, Takano T.
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The Active Astrocyte: Calcium Dynamics, Circuit Modulation, and Targets for Intervention. [PDF]
Rusakov DA, Jensen TP, Tyurikova O.
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D-Serine's Journey Between Stars and Synapses. [PDF]
Mountadem S, Oliet SHR, Panatier A.
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Glial syncytial control fields and the low-frequency resonome of the human brain. [PDF]
Ballús Santacana A.
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Neuromodulatory roles for astrocytes: Synapses, circuits & behavior
In addition to being structurally associated with synapses, astrocytes are now known to be functionally involved in the modulation of synaptic transmission. Astrocytes express a number of G-protein coupled receptors (GPCRs) which allow them to respond to
Halassa, Michael M
core
From synaptic gatekeepers to affective-cognitive modulators: The astrocyte D1 receptor-d-serine axis in the prefrontal cortex. [PDF]
Fang LP, Kirchhoff F.
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Glial-Dopamine crosstalk: Astrocytic and microglial gatekeepers of neuroinflammation, plasticity, and motivation. [PDF]
Naffaa MM.
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