Literature DB >> 7986955

Minor role for direct adrenoceptor-mediated calcium entry in rat mesenteric small arteries.

H Nilsson1, P E Jensen, M J Mulvany.   

Abstract

The role of membrane potential-dependent and independent regulation of the intracellular free calcium concentration ([Ca2+]i) was assessed in the mesenteric small arteries of Wistar rats. [Ca2+]i was determined by Fura-2 fluorescence. Membrane potential measurements were made using intracellular microelectrodes. Depolarization with a high-potassium solution (K-PSS) elevated [Ca2+]i and induced contraction. Further addition of 10 microM noradrenaline (NA) did not elevate [Ca2+]i further but enhanced tone. Addition of calcium channel inhibitors (felodipine or D-600) inhibited the maintained rise in [Ca2+]i with K-PSS, but NA still elevated [Ca2+]i and force to about half the previous level. Further addition of either ryanodine or thapsigargin eliminated the rise in [Ca2+]i with NA, although 10-20% of the contraction remained. Simultaneous measurements of membrane potential, [Ca2+]i, and force during cumulative additions of NA or K-PSS in the absence of inhibitors showed similar relations between membrane potential and [Ca2+]i for each means of activation. The results indicate that membrane potential and [Ca2+]i are strongly correlated in mesenteric small arteries. A small part of the [Ca2+]i increase to NA can be attributed to release from intracellular stores. Membrane potential-independent calcium channels that are directly operated by adrenoceptors appear to play a minor role in the regulation of [Ca2+]i in these vessels.

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Year:  1994        PMID: 7986955     DOI: 10.1159/000159059

Source DB:  PubMed          Journal:  J Vasc Res        ISSN: 1018-1172            Impact factor:   1.934


  10 in total

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5.  Interactions between neuropeptide Y and the adenylate cyclase pathway in rat mesenteric small arteries: role of membrane potential.

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6.  Preservation of vascular contraction during ageing: dual effect on calcium handling and sensitization.

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7.  Mechanisms of Ca2+ sensitization of force production by noradrenaline in rat mesenteric small arteries.

Authors:  C L Buus; C Aalkjaer; H Nilsson; B Juul; J V Møller; M J Mulvany
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Authors:  J A Brock; E M McLachlan; P Jobling; R J Lewis
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  10 in total

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