Exercise training increases inwardly rectifying K+ current and augments K+-mediated vasodilatation in deep femoral artery of rats
Author(s) -
Chun Zi Jin,
Hyang Sun Kim,
Eun Yeong Seo,
Dong Hoon Shin,
Kyung Park,
YangSook Chun,
Yin Hua Zhang,
Sung Joon Kim
Publication year - 2011
Publication title -
cardiovascular research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.774
H-Index - 219
eISSN - 1755-3245
pISSN - 0008-6363
DOI - 10.1093/cvr/cvr050
Subject(s) - vasodilation , medicine , endocrinology , mesenteric arteries , myocyte , skeletal muscle , chemistry , cardiology , anatomy , artery
A moderate increase in extracellular [K(+)] ([K(+)](e)) induces relaxation of small arteries by activating inwardly rectifying K(+) current (I(Kir)). The K(+)-induced vasodilatation is an important mechanism for exercise-induced hyperaemia in skeletal muscle. We investigated whether I(Kir) and K(+)-induced vasodilatation are enhanced in deep femoral arteries (DFAs) from exercise-trained rats (ET rats; treadmill running for 20 min at 20 m/min, 3 days/week for 2 weeks). The effects of exercise training on K(+)-induced vasodilatation and I(Kir) were also investigated in cerebral (CA) and mesenteric arteries.
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