The ability to sense and react to changes in environmental oxygen levels is crucial to the survival of all aerobic life forms. In mammals, specialized tissues have evolved which can sense and rapidly respond to an acute reduction in oxygen and central to this ability in many is dynamic modulation of ion channels by hypoxia. The most widely studied oxygen-sensitive ion channels are potassium channels but oxygen sensing by members of both the calcium and sodium channel families has also been demonstrated. This chapter will focus on mechanisms of physiological oxygen sensing by ion channels, with particular emphasis on potassium channel function, and will highlight some of the consensuses and controversies within the field. Where data are avai...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
The ability to sense and react to changes in environmental oxygen levels is crucial to the survival ...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...
O2 sensing is of critical importance for cell survival and adaptation of living organisms to changin...
Producción CientíficaThis report represents a relevant contribution to the study of oxygen sensing f...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
An ability to adapt to changes in oxygen availability is essential for survival in both prokaryotic ...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Oxygen is known to be one of the strongest electron acceptors and has one of its main functions in t...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
The ability to sense and react to changes in environmental oxygen levels is crucial to the survival ...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...
The ability of ion channels to respond to an acute perturbation in oxygen tension is a widespread ph...
O2 sensing is of critical importance for cell survival and adaptation of living organisms to changin...
Producción CientíficaThis report represents a relevant contribution to the study of oxygen sensing f...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
An ability to adapt to changes in oxygen availability is essential for survival in both prokaryotic ...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Individuals suffering from a variety of cardiorespiratory diseases which are characterised by sustai...
Oxygen is known to be one of the strongest electron acceptors and has one of its main functions in t...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...
Recombinant and native large conductance, Ca2+ -activated K+ (BK) channels often demonstrate O2 sens...