Effect of KT-362, a putative intracellular calcium antagonist, on norepinephrine-induced contractions and inositol monophosphate accumulation in canine femoral artery.
Effect of KT-362, a putative intracellular calcium antagonist, on norepinephrine-induced contractions and inositol monophosphate accumulation in canine femoral artery.
复制标题
KT-362(一种假定的细胞内钙拮抗剂)对去甲肾上腺素诱导的犬股动脉收缩和肌醇单磷酸积累的影响。
DOI:
10.1097/00005344-198903000-00020
复制
发表时间:
1989
影响因子:
3
通讯作者:
Gross,GJ
中科院分区:
文献类型:
--
作者:
Eskinder,H;Hillard,CJ;Wilke,RA;Gross,GJ
The purpose of the present study was to determine if the intracellular calcium antagonist, KT-362, inhibits norepinephrine-IN Hi induced contractions and inositol monophosphate (IP) accumulation in canine femoral arteries preincubated with [3H] inositol. Norepinephrine dose-dependently increased contractile tension and produced a parallel stimulation of inositol phospholipid hydrolysis as measured by IP accumulation. This stimulation was inhibited by the selective [alpha] 1 adrenoceptor antagonist. prazosin (0.1 [mu] M), indicating that the NE-induced stimulation of inositol phospholipid hydrolysis is coupled to [alpha] 1 adrenoceptor activation in canine femoral artery. Pretreatment with nitroglycerin (100 [mu] M). 8-Brcyclic guanosine monophosphate (cGMP)(1 [mu] M), or diltiazem (40 [mu] M) inhibited contractile responses produced by NE; however, these agents had no significant effect on NE-indueed IP accumulation. In contrast, pretreatment with KT-362 (10-100 [mu] M) greatly inhibited both the NE-induced contractions and IP accumulation. KT-362 also produced a marked inhibition of NE-induced contractions in normal as well as zero calcium buffer, whereas diltiazem (40 [mu] M) had no effect in zero calcium buffer. These results indicate that the mechanism of action of KT-362 differs from diltiazem, nitroglycerin, and 8-Br cGMP. and these data suggest that one of the mechanisms by which KT-362 antagonizes NE-induced vasoconstrictor responses is by decreasing inositol phospholipid hydrolysis in canine femoral artery.