Chloride ions play an important role in controlling excitability of principal neurons in the central nervous system. When neurotransmitter GABA is released from inhibitory interneurons, activated GABA type A (GABAA) receptors on principal neurons become permeable to chloride. Typically, chloride flows through activated GABAA receptors into the neurons causing hyperpolarization or shunting inhibition, and in turn inhibits action potential (AP) generation. However, in situations when intracellular chloride concentration is increased, chloride ions can flow in opposite direction, depolarize neurons, and promote AP generation. It is generally recognized that altered chloride homeostasis per se has no effect on the AP threshold. Here, we demonst...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
GABA(A) receptors (GABA(A)Rs) exist as different subtype variants showing unique functional properti...
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...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
AbstractIn the CNS, γ-aminobutyric acid (GABA) acts as an inhibitory transmitter via ligand-gated GA...
GABA, the main inhibitory transmitter in adulthood, early in postnatal development exerts a depolari...
GABA is the major inhibitory neurotransmitter in the mature CNS. When GABAA receptors are activated ...
The function of voltage-gated chloride channels in neurons is essentially unknown. The voltage-gated...
Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
Transmembrane chloride gradients govern the efficacy and polarity of GABA signaling in neurons and a...
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...
GABA(A) receptors (GABA(A)Rs) exist as different subtype variants showing unique functional properti...
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...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
AbstractIn the CNS, γ-aminobutyric acid (GABA) acts as an inhibitory transmitter via ligand-gated GA...
GABA, the main inhibitory transmitter in adulthood, early in postnatal development exerts a depolari...
GABA is the major inhibitory neurotransmitter in the mature CNS. When GABAA receptors are activated ...
The function of voltage-gated chloride channels in neurons is essentially unknown. The voltage-gated...
Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
The intraneuronal ionic composition is an important determinant of brain functioning. There is growi...
Transmembrane chloride gradients govern the efficacy and polarity of GABA signaling in neurons and a...
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...
GABA(A) receptors (GABA(A)Rs) exist as different subtype variants showing unique functional properti...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...