Hypoxia inhibits voltage-gated K channels in pulmonary artery smooth muscle (PASM). This is thought to contribute to hypoxic pulmonary vasoconstriction by promoting membrane depolarization, Ca(2+) influx, and contraction. Several of the K-channel subtypes identified in pulmonary artery have been implicated in the response to hypoxia, but contradictory evidence clouds the identity of the oxygen-sensing channels. Using patch-clamp techniques, this study investigated the effect of hypoxia on recombinant Kv1 channels previously identified in pulmonary artery (Kv1.1, Kv1.2, and Kv1.5) and Kv3.1b, which has similar kinetic and pharmacological properties to native oxygen-sensitive currents. Hypoxia failed to inhibit any Kv1 channel, but it inhibit...
K+channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mus...
K+channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mus...
K+ channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mu...
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 ...
Abstract Activity of voltage-gated potassium (Kv) channels controls membrane potential, which subseq...
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 causes pulmonary vasoconstriction in part by inhibiting voltage-gated K (Kv) channel activi...
Hypoxia initiates pulmonary vasoconstriction (HPV) by in-hibiting one or more voltage-gated potassiu...
Hypoxia contracts the pulmonary vein, but the underlying cellular effectors remain unclear. Utilizin...
Abstract—Hypoxic pulmonary vasoconstriction is initiated by inhibiting one or more voltage-gated pot...
In the pulmonary circulation voltage-gated K+ (KV) channels control resting membrane potential. Thei...
Reaction of pulmonary vascular bed to hypoxia is different than in systemic vasculature. Acute venti...
Reaction of pulmonary vascular bed to hypoxia is different than in systemic vasculature. Acute venti...
K+channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mus...
K+channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mus...
K+ channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mu...
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 ...
Abstract Activity of voltage-gated potassium (Kv) channels controls membrane potential, which subseq...
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 causes pulmonary vasoconstriction in part by inhibiting voltage-gated K (Kv) channel activi...
Hypoxia initiates pulmonary vasoconstriction (HPV) by in-hibiting one or more voltage-gated potassiu...
Hypoxia contracts the pulmonary vein, but the underlying cellular effectors remain unclear. Utilizin...
Abstract—Hypoxic pulmonary vasoconstriction is initiated by inhibiting one or more voltage-gated pot...
In the pulmonary circulation voltage-gated K+ (KV) channels control resting membrane potential. Thei...
Reaction of pulmonary vascular bed to hypoxia is different than in systemic vasculature. Acute venti...
Reaction of pulmonary vascular bed to hypoxia is different than in systemic vasculature. Acute venti...
K+channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mus...
K+channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mus...
K+ channels play a fundamental role regulating membrane potential of pulmonary artery (PA) smooth mu...