The intraneuronal ionic composition is an important determinant of brain functioning. There is growing evidence that aberrant homeostasis of the intracellular concentration of Cl− ([Cl−]i) evokes, in addition to that of Na+ and Ca2+, robust impairments of neuronal excitability and neurotransmission and thereby neurological conditions. More specifically, understanding the mechanisms underlying regulation of [Cl−]i is crucial for deciphering the variability in GABAergic and glycinergic signaling of neurons, in both health and disease. The homeostatic level of [Cl−]i is determined by various regulatory mechanisms, including those mediated by plasma membrane Cl− channels and transporters. This review focuses on the latest advances in identifica...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
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...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
The importance of chloride ions in cell physiology has not been fully recognized until recently, in ...
The importance of chloride ions in cell physiology has not been fully recognized until recently, in ...
Intracellular chloride (Cl−), together with bicarbonate (HCO3−), is the most abundant free anion in ...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Stimulation of olfactory receptor neurons with odors culminates in opening of a ciliary Ca2+-activat...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
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...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
The importance of chloride ions in cell physiology has not been fully recognized until recently, in ...
The importance of chloride ions in cell physiology has not been fully recognized until recently, in ...
Intracellular chloride (Cl−), together with bicarbonate (HCO3−), is the most abundant free anion in ...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Stimulation of olfactory receptor neurons with odors culminates in opening of a ciliary Ca2+-activat...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...
Adult primary afferent neurons are depolarized by GABA throughout their entire surface, including th...