Background: Regulation of chloride gradients is a major mechanism by which excitability is regulated in neurons. Disruption of these gradients is implicated in various diseases, including cystic fibrosis, neuropathic pain and epilepsy. Relatively few studies have addressed chloride regulation in neuronal processes because probes capable of detecting changes in small compartments over a physiological range are limited. Methodology/Principal Findings: In this study, a palmitoylation sequence was added to a variant of the yellow fluorescent protein previously described as a sensitive chloride indicator (YFPQS) to target the protein to the plasma membrane (mbYFPQS) of cultured midbrain neurons. The reporter partitions to the cytoplasmic face of...
Intracellular chloride and pH are fundamental regulators of neuronal excitability and they are often...
Intracellular chloride ([Cl-](i)) andpH(pH(i)) are fundamental regulators of neuronal excitability. ...
Background: Cation-chloride cotransporters (CCCs) are indispensable for maintaining chloride homeost...
BACKGROUND: Regulation of chloride gradients is a major mechanism by which excitability is regulated...
Neuronal Network consists of two different types of neurons: the excitatory and inhibitory systems. ...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
AbstractWe constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive ...
Intraneuronal chloride concentrations ([Cl- ]i) decrease during development resulting in a shift fro...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
We constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive yellow f...
Photochromic switches and genetically encoded biosensors have become powerful tools for monitoring a...
<p>Cultured midbrain neurons expressing mbYFPQS were incubated with the following ionophores for 20–...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
We constructed a novel optical indicator for chloride ions by fusing the chloride−sensitive yellow f...
Chloride (Cl-) homeostasis is known to be fundamental for central nervous system functioning. Altera...
Intracellular chloride and pH are fundamental regulators of neuronal excitability and they are often...
Intracellular chloride ([Cl-](i)) andpH(pH(i)) are fundamental regulators of neuronal excitability. ...
Background: Cation-chloride cotransporters (CCCs) are indispensable for maintaining chloride homeost...
BACKGROUND: Regulation of chloride gradients is a major mechanism by which excitability is regulated...
Neuronal Network consists of two different types of neurons: the excitatory and inhibitory systems. ...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
AbstractWe constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive ...
Intraneuronal chloride concentrations ([Cl- ]i) decrease during development resulting in a shift fro...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
We constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive yellow f...
Photochromic switches and genetically encoded biosensors have become powerful tools for monitoring a...
<p>Cultured midbrain neurons expressing mbYFPQS were incubated with the following ionophores for 20–...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
We constructed a novel optical indicator for chloride ions by fusing the chloride−sensitive yellow f...
Chloride (Cl-) homeostasis is known to be fundamental for central nervous system functioning. Altera...
Intracellular chloride and pH are fundamental regulators of neuronal excitability and they are often...
Intracellular chloride ([Cl-](i)) andpH(pH(i)) are fundamental regulators of neuronal excitability. ...
Background: Cation-chloride cotransporters (CCCs) are indispensable for maintaining chloride homeost...