Astrocytic volume regulation and neurotransmitter uptake are critically dependent on the intracellular anion concentration, but little is known about the mechanisms controlling internal anion homeostasis in these cells. Here we used fluorescence lifetime imaging microscopy (FLIM) with the chloride-sensitive dye MQAE to measure intracellular chloride concentrations in murine Bergmann glial cells in acute cerebellar slices. We found Bergmann glial [Cl−]int to be controlled by two opposing transport processes: chloride is actively accumulated by the Na+-K+-2Cl− cotransporter NKCC1, and chloride efflux through anion channels associated with excitatory amino acid transporters (EAATs) reduces [Cl−]int to values that vary upon changes in expressio...
International audienceNeuronal chloride concentration ([Cl(-)](i)) is known to be dynamically modula...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Neuronal chloride concentration ([Cl-]i) is known to be dynamically modulated and alterations in Cl-...
High water permeabilities permit rapid adjustments of glial volume upon changes in external and inte...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
textabstractThe intraneuronal ionic composition is an important determinant of brain functioning. Th...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
textabstractChloride homeostasis determines the impact of inhibitory synaptic transmission and there...
Chloride homeostasis determines the impact of inhibitory synaptic transmission and thereby mediates ...
During early neuronal development GABA is excitatory and only later does it switch to inhibitory. Th...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
Intraneuronal chloride concentrations ([Cl- ]i) decrease during development resulting in a shift fro...
Neuronal intracellular Cl− concentration ([Cl−]i) influences a wide range of processes such as neuro...
Calcium-activated chloride channels of the anoctamin (alias TMEM16) protein family fulfill critical ...
International audienceNeuronal chloride concentration ([Cl(-)](i)) is known to be dynamically modula...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Neuronal chloride concentration ([Cl-]i) is known to be dynamically modulated and alterations in Cl-...
High water permeabilities permit rapid adjustments of glial volume upon changes in external and inte...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
textabstractThe intraneuronal ionic composition is an important determinant of brain functioning. Th...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
textabstractChloride homeostasis determines the impact of inhibitory synaptic transmission and there...
Chloride homeostasis determines the impact of inhibitory synaptic transmission and thereby mediates ...
During early neuronal development GABA is excitatory and only later does it switch to inhibitory. Th...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
Intraneuronal chloride concentrations ([Cl- ]i) decrease during development resulting in a shift fro...
Neuronal intracellular Cl− concentration ([Cl−]i) influences a wide range of processes such as neuro...
Calcium-activated chloride channels of the anoctamin (alias TMEM16) protein family fulfill critical ...
International audienceNeuronal chloride concentration ([Cl(-)](i)) is known to be dynamically modula...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Neuronal chloride concentration ([Cl-]i) is known to be dynamically modulated and alterations in Cl-...