Background K+ channels of the TASK family are believed to participate in sensory transduction by chemoreceptor (glomus) cells of the carotid body (CB). However, studies on the systemic CB-mediated ventilatory response to hypoxia and hypercapnia in TASK1- and/or TASK3-deficient mice have yielded conflicting results. We have characterized the glomus cell phenotype of TASK-null mice and studied the responses of individual cells to hypoxia and other chemical stimuli. CB morphology and glomus cell size were normal in wild-type as well as in TASK1/ or double TASK1/3/ mice. Patch-clamped TASK1/3-null glomus cells had significantly higher membrane resistance and less hyperpolarized resting potential than their wild-type counterpart. These electrica...
The carotid body (CB) is the principal arterial chemoreceptor that mediates the hyperventilatory res...
The carotid body (CB) is the principal arterial chemoreceptor that mediates the hyperventilatory res...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...
Acid-sensitive K+ channels of the tandem P-domain K+-channel family (TASK-1 and TASK-3) have been im...
Despite intensive research, the exact function of TASK potassium channels in central and peripheral ...
In rat arterial chemoreceptors, background potassium channels play an important role in maintaining ...
Acute oxygen (O2) sensing is essential for adaptation of organisms to hypoxic environments or medica...
Carotid body glomus cells release transmitters in response to hypoxia due to the increase of excitab...
The carotid body (CB) is a primary chemosensory organ for arterial hypoxia. Inhibition of K channels...
Carotid body glomus cells are multimodal arterial chemoreceptors able to sense and integrate changes...
Carotid body glomus cells are multimodal arterial chemoreceptors able to sense and integrate changes...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
We have developed a thin-slice preparation of whole rat carotid body that allows us to perform patch...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
O2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the carotid bod...
The carotid body (CB) is the principal arterial chemoreceptor that mediates the hyperventilatory res...
The carotid body (CB) is the principal arterial chemoreceptor that mediates the hyperventilatory res...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...
Acid-sensitive K+ channels of the tandem P-domain K+-channel family (TASK-1 and TASK-3) have been im...
Despite intensive research, the exact function of TASK potassium channels in central and peripheral ...
In rat arterial chemoreceptors, background potassium channels play an important role in maintaining ...
Acute oxygen (O2) sensing is essential for adaptation of organisms to hypoxic environments or medica...
Carotid body glomus cells release transmitters in response to hypoxia due to the increase of excitab...
The carotid body (CB) is a primary chemosensory organ for arterial hypoxia. Inhibition of K channels...
Carotid body glomus cells are multimodal arterial chemoreceptors able to sense and integrate changes...
Carotid body glomus cells are multimodal arterial chemoreceptors able to sense and integrate changes...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
We have developed a thin-slice preparation of whole rat carotid body that allows us to perform patch...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
O2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the carotid bod...
The carotid body (CB) is the principal arterial chemoreceptor that mediates the hyperventilatory res...
The carotid body (CB) is the principal arterial chemoreceptor that mediates the hyperventilatory res...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...