Producción CientíficaThis report represents a relevant contribution to the study of oxygen sensing for two main reasons. First, it shows an approach adequate for identification of a putative O2-sensitive K+ channel, by moving from the modulation by hypoxia of a recombinant channel back to its physiological context, the role of this channel in the response to low Po2 of the native cells. Second, it demonstrates that hypoxic inhibition of the recombinant Kv3.1 channels is retained in excised membrane patches, pointing to a membrane-delimited mechanism as the origin of hypoxic responses. The importance of this latter finding deserves additional comment
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
O2 sensing is of critical importance for cell survival and adaptation of living organisms to changin...
The ability to sense and react to changes in environmental oxygen levels is crucial to the survival ...
The ability to sense and react to changes in environmental oxygen levels is crucial to the survival ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
O2 sensing is of critical importance for cell survival and adaptation of living organisms to changin...
The ability to sense and react to changes in environmental oxygen levels is crucial to the survival ...
The ability to sense and react to changes in environmental oxygen levels is crucial to the survival ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...