Within the nervous system, intracellular Cl- and pH regulate fundamental processes including cell proliferation, metabolism, synaptic transmission and network excitability. Cl- and pH are often co-regulated, and network activity results in the movement of both Cl- and H+. Tools to accurately measure these ions are crucial for understanding their role under physiological and pathological conditions. Although genetically-encoded Cl- and pH sensors have been described previously, these either lack ion specificity or are unsuitable for neuronal use. Here we present ClopHensorN - a new genetically-encoded ratiometric Cl- and pH sensor that is optimized for the nervous system. We demonstrate the ability of ClopHensorN to dissociate and simultaneo...
International audienceGenetically encoded biosensors are widely used in cell biology for the non-inv...
ClopHensor, a new fluorescent ratiometric GFP-based biosensor, is a powerful tool for non-invasive p...
Chloride is the most abundant physiological anion and participates in a variety of cellular processe...
doi: 10.3389/fncel.2013.00202 A genetically-encoded chloride and pH sensor for dissociating ion dyna...
International audienceChloride (Cl) is the most abundant physiological anion. Abnormalities in Cl re...
Monitoring of the intracellular concentrations of Cl- and H+ requires sensitive probes that allow re...
Intracellular chloride and pH are fundamental regulators of neuronal excitability and they are often...
The regulation of hydrogen ion concentration (pH) is fundamental to cell viability, metabolism and e...
The regulation of hydrogen ion concentration (pH) is fundamental to cell viability, metabolism, and ...
AbstractWe constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive ...
We constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive yellow f...
We constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive yellow f...
Ion homeostasis regulates critical physiological processes in the living cell. Intracellular chlorid...
© 2019 Elsevier Ltd Genetically encoded biosensors are widely used in cell biology for the non-invas...
Neuronal Network consists of two different types of neurons: the excitatory and inhibitory systems. ...
International audienceGenetically encoded biosensors are widely used in cell biology for the non-inv...
ClopHensor, a new fluorescent ratiometric GFP-based biosensor, is a powerful tool for non-invasive p...
Chloride is the most abundant physiological anion and participates in a variety of cellular processe...
doi: 10.3389/fncel.2013.00202 A genetically-encoded chloride and pH sensor for dissociating ion dyna...
International audienceChloride (Cl) is the most abundant physiological anion. Abnormalities in Cl re...
Monitoring of the intracellular concentrations of Cl- and H+ requires sensitive probes that allow re...
Intracellular chloride and pH are fundamental regulators of neuronal excitability and they are often...
The regulation of hydrogen ion concentration (pH) is fundamental to cell viability, metabolism and e...
The regulation of hydrogen ion concentration (pH) is fundamental to cell viability, metabolism, and ...
AbstractWe constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive ...
We constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive yellow f...
We constructed a novel optical indicator for chloride ions by fusing the chloride-sensitive yellow f...
Ion homeostasis regulates critical physiological processes in the living cell. Intracellular chlorid...
© 2019 Elsevier Ltd Genetically encoded biosensors are widely used in cell biology for the non-invas...
Neuronal Network consists of two different types of neurons: the excitatory and inhibitory systems. ...
International audienceGenetically encoded biosensors are widely used in cell biology for the non-inv...
ClopHensor, a new fluorescent ratiometric GFP-based biosensor, is a powerful tool for non-invasive p...
Chloride is the most abundant physiological anion and participates in a variety of cellular processe...