Mechanisms of endothelial P2Y(1)- and P2Y(2)-mediated vasodilatation involve differential [Ca2+](i) responses

Authors
Citation
Sp. Marrelli, Mechanisms of endothelial P2Y(1)- and P2Y(2)-mediated vasodilatation involve differential [Ca2+](i) responses, AM J P-HEAR, 281(4), 2001, pp. H1759-H1766
Citations number
37
Categorie Soggetti
Cardiovascular & Hematology Research
Journal title
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY
ISSN journal
03636135 → ACNP
Volume
281
Issue
4
Year of publication
2001
Pages
H1759 - H1766
Database
ISI
SICI code
0363-6135(200110)281:4<H1759:MOEPAP>2.0.ZU;2-Q
Abstract
The present study was designed to evaluate the role of endothelial intracel lular Ca2+ concentration ([Ca2+](i)) in the difference between P2Y(1)- and P2Y(2)-mediated vasodilatations in cerebral arteries. Rat middle cerebral a rteries were cannulated, pressurized, and luminally perfused. The endotheli um was selectively loaded with fura 2, a fluorescent Call indicator, for si multaneous measurement of endothelial [Ca2+](i) and diameter. Luminal admin istration of 2-methylthioadenosine 5'-triphosphate (2-MeS-ATP), an endothel ial P2Y(1) agonist, resulted in purely nitric oxide (NO)-dependent dilation and [Ca2+](i) increases up to similar to 300 DM (resting [Ca2+](i) = 145 n M). UTP, an endothelial P2Y(2) agonist, resulted in dilations that were bot h endothelium-derived hyperpolarizing factor (EDHF)and NO-dependent with [C a2+](i) increases to >400 nM. In the presence of N-G-nitro-L-arginine-indom ethacin to inhibit NO synthase and cyclooxygenase, UTP resulted in an EDBF- dependent dilation alone. The [Ca2+](i) threshold for NO-dependent dilation was 220 vs. 340 nM for EDBY In summary, the differences in the mechanism o f vasodilatation resulting from stimulation of endothelial P2Y(1)- and P2Y( 2) purinoceptors result in part from differential [Ca2+](i) responses. Cons istent with this finding, these studies also demonstrate a higher [Ca2+](i) threshold for EDBF-dependent responses compared with NO.