1989
DOI: 10.1097/00005344-198900146-00012
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Receptor-Operated Calcium-Permeable Channels in Vascular Smooth Muscle

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Cited by 74 publications
(25 citation statements)
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“…Furthermore, in the presence of NCDC, AngII did not elicit efferent arteriolar constriction. Our data are compatible with those of Ruegg et al (15), and indicate a mediatory role for phospholipase C in AngIIinduced calcium influx into efferent arterioles. Indeed, recent investigations reveal that the products of phospholipase C regulate voltage-independent calcium-permeable cation channels (43).…”
Section: Discussionsupporting
confidence: 93%
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“…Furthermore, in the presence of NCDC, AngII did not elicit efferent arteriolar constriction. Our data are compatible with those of Ruegg et al (15), and indicate a mediatory role for phospholipase C in AngIIinduced calcium influx into efferent arterioles. Indeed, recent investigations reveal that the products of phospholipase C regulate voltage-independent calcium-permeable cation channels (43).…”
Section: Discussionsupporting
confidence: 93%
“…However, it is unlikely that capacitive calcium current accounts for this calcium entry, because thapsigargin itself, which strongly recruits capacitive calcium entry (39), failed to induce vasoconstriction. Alternatively, recent studies indicate that AngII induces calcium entry by opening receptor-operated calcium-permeable channels via a phospholipase C-dependent process in vascular smooth muscle (15). In addition, we have shown that AngII does not elicit efferent arteriolar constriction in the presence of either NEM or NCDC.…”
Section: Discussionmentioning
confidence: 47%
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“…Receptor operated calcium channels: Studies by Ruegg et al 48 indicated that contractile stimuli, including AII, could induce Ca 2+ entry into vascular smooth muscle by a route insensitive to calcium antagonists. This route was termed a receptor operated channel (ROC) following the classification proposed by Bolton.…”
Section: Voltage Operated Calcium Channels (L-type Channels)mentioning
confidence: 99%