Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated by GABA(A) receptors (GABA(A)Rs). The impact of changes in steady state Cl(-) gradient is relatively straightforward to understand, but how dynamic interplay between Cl(-) influx, diffusion, extrusion and interaction with other ion species affects synaptic signaling remains uncertain. Here we used electrodiffusion modeling to investigate the nonlinear interactions between these processes. Results demonstrate that diffusion is crucial for redistributing intracellular Cl(-) load on a fast time scale, whereas Cl(-)extrusion controls steady state levels. Interaction between diffusion and extrusion can result in a somato-dendritic Cl(-) gradient ...
The effects of ionotropic γ-aminobutyric acid receptor (GABA-A, GABAA) activation depends criti...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl ions via acti...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
Synaptic transmission in the nervous system involves the activation of receptor proteins that permit...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
The effects of ionotropic γ-aminobutyric acid receptor (GABA-A, GABAA) activation depends criti...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl ions via acti...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
Synaptic transmission in the nervous system involves the activation of receptor proteins that permit...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
The effects of ionotropic γ-aminobutyric acid receptor (GABA-A, GABAA) activation depends criti...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl ions via acti...