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Functional evidence of a role for two‐pore domain potassium channels in rat mesenteric and pulmonary arteries
Author(s) -
Gardener M J,
Johnson I T,
Burnham M P,
Edwards G,
Heagerty A M,
Weston A H
Publication year - 2004
Publication title -
british journal of pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.432
H-Index - 211
eISSN - 1476-5381
pISSN - 0007-1188
DOI - 10.1038/sj.bjp.0705691
Subject(s) - tetraethylammonium , mesenteric arteries , potassium channel , chemistry , glibenclamide , anatomy , medicine , anesthesia , endocrinology , artery , potassium , organic chemistry , diabetes mellitus
Experiments were performed to elucidate the mechanism by which alterations of extracellular pH (pH o ) change membrane potential ( E M ) in rat mesenteric and pulmonary arteries. Changing pH o from 7.4 to 6.4 or 8.4 produced a depolarisation or hyperpolarisation, respectively, in mesenteric and pulmonary arteries. Anandamide (10 μ M ) or bupivacaine (100 μ M ) reversed the hyperpolarisation associated with alkaline pH o , shifting the E M of both vessels to levels comparable to that at pH 6.4. In pulmonary arteries, clofilium (100 μ M ) caused a significant reversal of hyperpolarisation seen at pH 8.4 but was without effect at pH 7.4. K + channel blockade by 4‐aminopyridine (4‐AP) (5 m M ), tetraethylammonium (TEA) (10 m M ), Ba 2+ (30 μ M ) and glibenclamide (10 μ M ) depolarised the pulmonary artery. However, shifts in E M with changes in pH o remained and were sensitive to anandamide (10 μ M ), bupivacaine (100 μ M ) or Zn 2+ (200 μ M ). Anandamide (0.3–60 μ M ) or bupivacaine (0.3–300 μ M ) caused a concentration‐dependent increase in basal tone in pulmonary arteries. RT–PCR demonstrated the expression of TASK‐1, TASK‐2, THIK‐1, TRAAK, TREK‐1, TWIK‐1 and TWIK‐2 in mesenteric arteries and TASK‐1, TASK‐2, THIK‐1, TREK‐2 and TWIK‐2 in pulmonary arteries. TASK‐1, TASK‐2, TREK‐1 and TWIK‐2 protein was demonstrated in both arteries by immunostaining. These experiments provide evidence for the presence of two‐pore domain K + channels in rat mesenteric and pulmonary arteries. Collectively, they strongly suggest that modulation of TASK‐1 channels is most likely to have mediated the pH‐induced changes in membrane potential observed in these vessels, and that blockade of these channels by anandamide or bupivacaine generates a small increase in pulmonary artery tone.British Journal of Pharmacology (2004) 142 , 192–202. doi: 10.1038/sj.bjp.0705691