1. An outward current (I-K(N)) was identified in rabbit pulmonary artery myocytes, which persisted after Ca2+-activated and ATP-sensitive K+ currents were blocked by TEA (10 mM) and glibenclamide (10 mu M), respectively, and after A-like (I-K(A)) and delayed rectifier (I-K(V)) K+ currents were inactivated by clamping the cell at 0 mV for >10 min. It was found in smooth muscle cells at all levels of the pulmonary arterial tree.2. The relationship between the reversal potential of I-K(N) and the extracellular K+ concentration ([K+](o)) was close to that expected for a K+-selective channel. Deviation from Nernstian behaviour at low [K+](o) could be accounted for by the presence of an accompanying leakage current.3. I-K(N) is voltage gated. ...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
plays an important role in excitation-contraction coupling in the pulmonary vasculature, is regulate...
In the pulmonary circulation voltage-gated K+ (KV) channels control resting membrane potential. Thei...
1. An outward current (I-K(N)) was identified in rabbit pulmonary artery myocytes, which persisted a...
Pulmonary vascular tone is strongly influenced by the resting membrane potential of smooth muscle ce...
Abstract—Pulmonary vascular tone is strongly influenced by the resting membrane potential of smooth ...
Pulmonary arteries (PAs), particularly those of the rat, demonstrate a prominent voltage-gated K+ (K...
Pulmonary vascular tone is strongly influenced by the resting membrane potential of smooth muscle ce...
K+ channels regulate resting potential of pulmonary arterial smooth muscle cells. Am. J. Physiol. 26...
In vascular smooth muscle cells, it has been suggested that membrane potential is an important compo...
1. The molecular identity of the K channels giving rise to the negative membrane potential of pulmon...
1. The molecular identity of the K channels giving rise to the negative membrane potential of pulmon...
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 ...
1. Whole-cell patch clamp recording was used to study an ATP-sensitive, sulphonylurea-inhibitable po...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
plays an important role in excitation-contraction coupling in the pulmonary vasculature, is regulate...
In the pulmonary circulation voltage-gated K+ (KV) channels control resting membrane potential. Thei...
1. An outward current (I-K(N)) was identified in rabbit pulmonary artery myocytes, which persisted a...
Pulmonary vascular tone is strongly influenced by the resting membrane potential of smooth muscle ce...
Abstract—Pulmonary vascular tone is strongly influenced by the resting membrane potential of smooth ...
Pulmonary arteries (PAs), particularly those of the rat, demonstrate a prominent voltage-gated K+ (K...
Pulmonary vascular tone is strongly influenced by the resting membrane potential of smooth muscle ce...
K+ channels regulate resting potential of pulmonary arterial smooth muscle cells. Am. J. Physiol. 26...
In vascular smooth muscle cells, it has been suggested that membrane potential is an important compo...
1. The molecular identity of the K channels giving rise to the negative membrane potential of pulmon...
1. The molecular identity of the K channels giving rise to the negative membrane potential of pulmon...
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 ...
1. Whole-cell patch clamp recording was used to study an ATP-sensitive, sulphonylurea-inhibitable po...
Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought ...
plays an important role in excitation-contraction coupling in the pulmonary vasculature, is regulate...
In the pulmonary circulation voltage-gated K+ (KV) channels control resting membrane potential. Thei...