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PMID: 2443270 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Two types of calcium channels in single smooth muscle cells from rabbit ear artery studied with whole-cell and single-channel recordings.

Circulation research ·Vol. 61 ·No. 4 Pt 2 ·1987-10-00 ·Pages I10-6

Benham CD, Hess P, Tsien RW

Abstract

Freshly dispersed rabbit ear artery cells were studied using patch-clamp techniques to measure membrane currents in whole cells and single-channel currents in membrane patches. Whole-cell calcium currents recorded at physiologic extracellular calcium concentrations were small (approximately 10 pA). Recordings with 110 mM external barium gave much larger currents and revealed two current components with properties similar to those in other vascular smooth muscle preparations and to the calcium currents designated as T and L in heart cells and neurons. T current was activated with weak depolarizations and inactivated rapidly, while L current was activated with relatively strong depolarizations and inactivated more slowly. L current was increased by dihydropyridine agonists and decreased by dihydropyridine antagonists, while T current was unaffected. Recordings from cell-attached and outside-out membrane patches with 100 mM external barium showed unitary calcium channel currents with conductances of 8 and 25 pS. The small conductance channels had kinetic properties that accounted for T current in the whole-cell recordings, while the 25-pS channels showed the voltage dependence, the time dependence, and the dihydropyridine sensitivity expected for L-type channels. We conclude that vascular smooth muscle cells contain two types of calcium channels with properties very similar to those described for T- and L-type calcium channels in other cell types; the L current appears to be the predominant current component in whole-cell recordings.

MeSH Terms
Animals Calcium/metabolism Dihydropyridines/pharmacology Electrophysiology Ion Channels/classification,drug effects,physiology Kinetics Muscle, Smooth, Vascular/metabolism Rabbits
Chemicals
Dihydropyridines Ion Channels Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Benham C D
Department of Physiology, Yale University Medical School, New Haven, CT 06510.
Hess P
Tsien R W
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
0009-7330
Published
1987-10-00
Pages
I10-6
Language
English
Region
United States
NLM ID
0047103
Subset
IM
Grants
NHLBI NIH HHS · HL-13306 · United States
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