O2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the carotid body (CB) contain cells with O2-sensitive K+ channels, which are inhibited by hypoxia to trigger fast adaptive cardiorespiratory reflexes. How variations of O2 tension (PO2) are detected and the mechanisms whereby these changes are conveyed to membrane ion channels have remained elusive. We have studied acute O2 sensing in conditional knockout mice lacking mitochondrial complex I (MCI) genes. We inactivated Ndufs2, which encodes a protein that participates in ubiquinone binding. Ndufs2-null mice lose the hyperventilatory response to hypoxia, although they respond to hypercapnia. Ndufs2-deficient CB cells have normal functions and ATP content but...
RATIONALE: Hypoxic pulmonary vasoconstriction (HPV) optimizes systemic oxygen delivery by matching v...
© 2021 by the authorsOxygen is an essential requirement for metabolism in mammals and many other ani...
Significance: Ventilatory responses to hypoxia are initiated by the carotid body, where inhibition o...
SummaryO2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the caro...
Acute oxygen (O2) sensing is essential for adaptation of organisms to hypoxic environments or medica...
Acute O2 sensing by peripheral chemoreceptors is essential for mammalian homeostasis. Carotid body g...
The molecular mechanisms underlying O2-sensing by carotid body (CB) chemoreceptors remain undetermin...
Acute oxygen (O2) sensing is essential for individuals to survive under hypoxic conditions. The caro...
Acute cardiorespiratory responses to O2 deficiency are essential for physiological homeostasis. The ...
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...
Glomus cells in the carotid body (CB) and chromaffin cells in the adrenal medulla (AM) are essential...
Oxygen (O2) is fundamental for cell and whole-body homeostasis. Our understanding of the adaptive pr...
Carotid body glomus cells release transmitters in response to hypoxia due to the increase of excitab...
International Society for Arterial Chemoreception (ISAC XXI 2022).Acute oxygen (O2) sensing and adap...
RATIONALE: Hypoxic pulmonary vasoconstriction (HPV) optimizes systemic oxygen delivery by matching v...
© 2021 by the authorsOxygen is an essential requirement for metabolism in mammals and many other ani...
Significance: Ventilatory responses to hypoxia are initiated by the carotid body, where inhibition o...
SummaryO2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the caro...
Acute oxygen (O2) sensing is essential for adaptation of organisms to hypoxic environments or medica...
Acute O2 sensing by peripheral chemoreceptors is essential for mammalian homeostasis. Carotid body g...
The molecular mechanisms underlying O2-sensing by carotid body (CB) chemoreceptors remain undetermin...
Acute oxygen (O2) sensing is essential for individuals to survive under hypoxic conditions. The caro...
Acute cardiorespiratory responses to O2 deficiency are essential for physiological homeostasis. The ...
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...
Glomus cells in the carotid body (CB) and chromaffin cells in the adrenal medulla (AM) are essential...
Oxygen (O2) is fundamental for cell and whole-body homeostasis. Our understanding of the adaptive pr...
Carotid body glomus cells release transmitters in response to hypoxia due to the increase of excitab...
International Society for Arterial Chemoreception (ISAC XXI 2022).Acute oxygen (O2) sensing and adap...
RATIONALE: Hypoxic pulmonary vasoconstriction (HPV) optimizes systemic oxygen delivery by matching v...
© 2021 by the authorsOxygen is an essential requirement for metabolism in mammals and many other ani...
Significance: Ventilatory responses to hypoxia are initiated by the carotid body, where inhibition o...