Pressure-induced activation of membrane K+ current in rat saphenous artery.

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Pressure-induced activation of membrane K+ current in rat saphenous artery.

Pressurization of isolated arteries may result in Ca(2+)-dependent contraction and membrane depolarization. Because the open state probability of some vascular muscle K+ channels is augmented by rises in cytosolic Ca2+ and membrane depolarization, we investigated the possibility that increases in intraluminal pressure activate K+ channels in isolated, perfused rat saphenous arteries. Stepwise i...

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We recently determined that the ability of the femoral artery (FA) to maintain higher levels of tonic isometric stress compared with the saphenous artery (SA) was due to differential expression of motor proteins permitting latch-bridge formation in FA and not SA. Arteries under pressure in vivo are not constrained to contract isometrically. Thus the significance of latch-bridge formation in art...

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Transmural pressure and membrane potential in human saphenous vein.

OBJECTIVE An increase in transmural pressure reportedly depolarizes myocytes in various arterial blood vessels. We have examined the relationship between transmural pressure and membrane potential (E(m)) in human saphenous veins with a view to determine whether contractile force generation, hence spasmogenesis in vein grafts, involves a similar process of mechanoelectrical excitation. METHODS...

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ژورنال

عنوان ژورنال: Hypertension

سال: 1992

ISSN: 0194-911X,1524-4563

DOI: 10.1161/01.hyp.19.6.725