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Exercise training increases K+-channel contribution to regulation of coronary arterial tone
Authors:Bowles  D K; Laughlin  M H; Sturek  M
Abstract:The present study examined whether regulation ofcoronary tone in conduit arteries (>1.0 mm ID) is altered by exercisetraining. Yucatan miniature swine were treadmill trained for 16-20wk (Ex) and compared with sedentary counterparts (Sed).Endothelium-denuded arterial rings were stretched to optimal length andallowed to equilibrate for 60 min. Inhibition of eitherCa2+-activated channels 1mM tetraethylammonium (TEA) or 10 nM iberiotoxin (IBTX)] orvoltage-dependent K+ channels1 mM 4-aminopyridine (4-AP)] significantlyincreased resting tension in both groups; however, the effect of allK+-channel blockers was greater inEx. Addition of 1 mM sodium nitroprusside reduced resting tension inboth groups, confirming the presence of active basal tone; however,sodium nitroprusside-sensitive tone was increased approximately twofoldin Ex compared with Sed group. Perforated patch-clamp experiments onisolated smooth muscle cells demonstrated no effect of exercisetraining on whole cell TEA-sensitive, 4-AP-sensitive, or basalK+ current. Similarly, whereasTEA, 4-AP, and IBTX all decreased resting membrane potential, there wasno difference in depolarization between groups. The greater effect ofTEA on resting tension in Ex could be mimicked in Sed by addition ofthe Ca2+-channel agonist BAY K8644. In conclusion, the greater response toK+-channel blockers after exercisetraining is consistent with an increased contribution ofK+ channels to regulation of basaltone in conduit coronary arteries. The lack of an effect of training onK+ current characteristics ormembrane potential responses in isolated cells suggests that arequisite factor for enhancedK+-channel activation in arteriesfrom Ex, possibly stretch, is absent in isolated cells.

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