THE TACHYKININ NK1 RECEPTOR ANTAGONIST, RP67580, INHIBITS THE BRADYKININ-INDUCED RISE IN INTRACELLULAR CA2-ARTERY ENDOTHELIAL-CELLS( CONCENTRATION IN BOVINE PULMONARY)

Citation
Jf. Westradevlieger et al., THE TACHYKININ NK1 RECEPTOR ANTAGONIST, RP67580, INHIBITS THE BRADYKININ-INDUCED RISE IN INTRACELLULAR CA2-ARTERY ENDOTHELIAL-CELLS( CONCENTRATION IN BOVINE PULMONARY), European journal of pharmacology, 342(2-3), 1998, pp. 359-366
Citations number
28
Categorie Soggetti
Pharmacology & Pharmacy
ISSN journal
00142999
Volume
342
Issue
2-3
Year of publication
1998
Pages
359 - 366
Database
ISI
SICI code
0014-2999(1998)342:2-3<359:TTNRAR>2.0.ZU;2-Z
Abstract
The bradykinin-induced rise in intracellular Ca2+ concentration ([Ca2](i)) and the bradykinin receptor involved in this response were chara cterized in bovine pulmonary artery endothelial cells. It was found th at bradykinin induces an intracellular biphasic Ca2+ response, consist ing of a transient peak followed by an elevated plateau phase. Both br adykinin and the bradykinin B-1 receptor agonist, des-Arg(9)-bradykini n, induced a concentration-dependent increase in [Ca2+](i), but the br adykinin-induced rise was much greater. Moreover, the bradykinin-induc ed [Ca2+](i) rise could be inhibited by the bradykinin B-2 receptor an tagonists, D-Arg(0)[Hyp(3), Thi(5.8) D-Phe(7)]bradykinin and Hoe 140 ( o-Arg[Hyp(3), Thi(5), D-Tic(7), Oic(8)]bradykinin), but not by the bra dykinin B-1 receptor antagonist, des-Arg(9)-[Leu(8)]bradykinin. From t hese results it can be concluded that a bradykinin B-2 receptor is inv olved in this response. Furthermore, we found that the tachykinin NK1 receptor antagonist, RP67580 ([imino 1 (methoxy-2-phenyl)-2 ethyl]-2, diphenyl 7,7 perhydroisoindolone-4 (3aR, 7aR)), and its negative enant iomer, RP68651 (2-[1-imino 2-(2 methoxy phenyl) ethyl] 7,7 diphenyl 4- perhydroisoindolone (3aS-7aS)), could inhibit the bradykinin-induced [ Ca2+](i) response, although no functional tachykinin NK1 receptors wer e found. Binding studies evidenced no binding of RP67580 or RP68651 to the bradykinin receptor. We conclude that RP67580 inhibits the bradyk inin-induced rise in [Ca2+](i) via a bradykinin B-2 receptor-independe nt mechanism. (C) 1998 Elsevier Science B.V.