The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also powerfully excited by inhibitors of oxidative phosphorylation. This latter observation is the cornerstone of the mitochondrial hypothesis which proposes that oxygen is sensed through changes in energy metabolism. All of these stimuli act in a similar manner, i.e. by inhibiting a background TASK-like potassium channel (KB) they induce membrane depolarization and thus neurosecretion. In this study we have evaluated the role of ATP in modulating KB channels.We find that KB channels are strongly activated by MgATP (but not ATP4 −) within the physiological range (K1/2 =2.3mM). This effect was mimicked by other Mg-nucleotides including GTP, UTP, AMP...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
This review has focused on the properties of the ATP-sensitive K-channel found in cardiac and skelet...
ATP and MgADP regulate K(ATP) channel activity and hence potentially couple cellular metabolism to m...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body's physiological role is to sense arterial oxygen, CO(2) and pH. It is however, also...
The carotid body's physiological role is to sense arterial oxygen, CO(2) and pH. It is however, also...
Chemosensing by type-1 cells of the carotid body involves a series of events which culminate in the ...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
This review has focused on the properties of the ATP-sensitive K-channel found in cardiac and skelet...
ATP and MgADP regulate K(ATP) channel activity and hence potentially couple cellular metabolism to m...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body’s physiological role is to sense arterial oxygen, CO2 and pH. It is however, also p...
The carotid body's physiological role is to sense arterial oxygen, CO(2) and pH. It is however, also...
The carotid body's physiological role is to sense arterial oxygen, CO(2) and pH. It is however, also...
Chemosensing by type-1 cells of the carotid body involves a series of events which culminate in the ...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
The carotid body plays an important role in initiating protective responses to hypoxemia. The primar...
This review has focused on the properties of the ATP-sensitive K-channel found in cardiac and skelet...
ATP and MgADP regulate K(ATP) channel activity and hence potentially couple cellular metabolism to m...