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PMID: 11455203 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Increased store-operated Ca2+ entry into contractile vascular smooth muscle following organ culture.

Journal of vascular research ·Vol. 38 ·No. 4 ·2001-00-00 ·Pages 324-31

Dreja K, Bergdahl A, Hellstrand P

Abstract

Ca2+ inflow via store-operated Ca2+ channels was investigated in rings of rat tail and basilar arteries kept in serum-free organ culture, which is known to preserve the contractility of the vascular smooth muscle. After culture for 3-4 days, Ca2+ release from intracellular stores in response to caffeine (20 mM) was augmented 2- to 4-fold. Following depletion of intracellular Ca2+ stores by caffeine and thapsigargin (10 microM), addition of Ca2+ (2.5 mM) caused an increase in the intracellular Ca2+ concentration which was 2-3 times greater in cultured than in freshly dissected rings, and was not affected by verapamil (10 microM). In contrast, L-type Ca2+ channel currents were decreased by 20% after culture. While freshly dissected rings developed no or very little force in response to the addition of Ca2+ after store depletion, cultured rings developed 42% (tail artery) and 60% (basilar artery) of the force of high-K+-induced contractions. These contractions in cultured vessels were insensitive to verapamil but could be completely relaxed by SKF-96365 (30 microM). Store depletion by caffeine increased the Mn2+ quench rate 3- to 4-fold in freshly dissected as well as cultured tail artery, while there was no increase in freshly dissected basilar artery, but a 3-fold increase in cultured basilar artery. Uptake of Ca2+ into intracellular stores was twice as rapid in cultured as in freshly dissected tail artery. This study shows that organ culture of vascular smooth muscle tissue causes changes in Ca2+ handling, resembling the pattern seen in dedifferentiating smooth muscle cells in culture, although contractile properties are maintained.

MeSH Terms
Animals Basilar Artery Caffeine/pharmacology Calcium/metabolism Calcium Channel Blockers/pharmacology Calcium Channels/physiology Calcium Channels, L-Type/physiology Culture Media, Serum-Free Electric Conductivity Female Imidazoles/pharmacology Manganese/metabolism Muscle Contraction Muscle, Smooth, Vascular/drug effects,metabolism Organ Culture Techniques Potassium/pharmacology Rats Rats, Sprague-Dawley Tail/blood supply Thapsigargin/pharmacology Verapamil/pharmacology
Chemicals
Calcium Channel Blockers Calcium Channels Calcium Channels, L-Type Culture Media, Serum-Free Imidazoles Caffeine Manganese Thapsigargin Verapamil 1-(2-(3-(4-methoxyphenyl)propoxy)-4-methoxyphenylethyl)-1H-imidazole Potassium Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Dreja K
Department of Physiological Sciences, Lund University, Lund, Sweden.
Bergdahl A
Hellstrand P
Article Info
Journal
Journal of vascular research
Abbr.
J Vasc Res
ISSN
1018-1172
Published
2001-00-00
Pages
324-31
Language
English
Region
Switzerland
NLM ID
9206092
Subset
IM
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