A key feature of O2 sensing by chemoreceptor tissues is the hypoxic inhibition of K+ channels. However, mechanisms coupling a fall of pO2 to channel closure differ between tissues: O2 regulation of K+ channels in chemoreceptive neuroepithelial bodies and their immortal counterparts, H146 cells, involves altered reactive oxygen species generation by NADPH oxidase. In contrast, this enzyme complex is not involved in O2 sensing by the carotid body and pulmonary vasculature. Here, we provide pharmacological evidence to support a role for NADPH oxidase in hypoxic inhibition of K+ currents in H146 cells. Two structurally unrelated NADPH oxidase inhibitors, diphenylene iodonium and phenylarsine oxide, suppressed hypoxic inhibition of K+ currents r...
The molecular mechanisms underlying hypoxic pulmonary vasoconstriction (HPV) are not yet properly un...
The majority of physiological processes proceed most favourably when O2 is in plentiful supply. Howe...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...
A key feature of O2 sensing by chemoreceptor tissues is the hypoxic inhibition of K+ channels. Howev...
Accumulating evidence suggests that neuroepithelial bodies are airway O2 sensors. Recently, we have ...
Researchers have speculated as to the molecular basis of O2 sensing for decades. In more recent year...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
We have recently reported that the model airway chemoreceptors, H146 cells, exhibit a significant co...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Neuroepithelial bodies act as airway oxygen sensors. The lung carcinoma line H146 is an established ...
Neuroepithelial bodies act as airway oxygen sensors. The lung carcinoma line H146 is an established ...
Airway neuroepithelial bodies sense changes in inspired O2, whereas arterial O2 levels are monitored...
The molecular mechanisms underlying hypoxic pulmonary vasoconstriction (HPV) are not yet properly un...
The majority of physiological processes proceed most favourably when O2 is in plentiful supply. Howe...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...
A key feature of O2 sensing by chemoreceptor tissues is the hypoxic inhibition of K+ channels. Howev...
Accumulating evidence suggests that neuroepithelial bodies are airway O2 sensors. Recently, we have ...
Researchers have speculated as to the molecular basis of O2 sensing for decades. In more recent year...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
We have recently reported that the model airway chemoreceptors, H146 cells, exhibit a significant co...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Neuroepithelial bodies act as airway oxygen sensors. The lung carcinoma line H146 is an established ...
Neuroepithelial bodies act as airway oxygen sensors. The lung carcinoma line H146 is an established ...
Airway neuroepithelial bodies sense changes in inspired O2, whereas arterial O2 levels are monitored...
The molecular mechanisms underlying hypoxic pulmonary vasoconstriction (HPV) are not yet properly un...
The majority of physiological processes proceed most favourably when O2 is in plentiful supply. Howe...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...