首页> 外文期刊>Journal of cardiovascular pharmacology. >Apelin Reduces Nitric Oxide-Induced Relaxation of Cerebral Arteries by Inhibiting Activation of Large-Conductance, Calcium-Activated K Channels
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Apelin Reduces Nitric Oxide-Induced Relaxation of Cerebral Arteries by Inhibiting Activation of Large-Conductance, Calcium-Activated K Channels

机译:组织Apelin减少氮Oxide-Induced放松的脑动脉通过抑制激活的Large-Conductance Calcium-Activated K通道

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摘要

Activation of the apelin/APJ receptor signaling system causes endothelium-dependent and nitric oxide (NO)-dependent relaxation in several peripheral arteries. The effects of apelin in cerebral arteries are unknown; however, apelin inhibits voltage-dependent increases in large-conductance, calcium-activated K channel (BKCa) currents in cerebral artery smooth muscle cells. Because NO-induced relaxation of cerebral arteries is mediated, in part, by activation of BKCa channels, the goals of this study were to determine the net effect of apelin in cerebral arteries, as well as test the hypothesis that the actions of apelin in cerebral arteries are secondary to stimulation of APJ receptors. Immunoblot and quantitative reverse transcription polymerase chain reaction analyses detected APJ receptors in cerebral arteries of male Sprague-Dawley rats, and immunofluorescence studies using confocal microscopy confirmed APJ receptor localization in smooth muscle cells. In myograph studies, apelin itself had no direct vasomotor effect but inhibited relaxations to the NO-donor, diethylamine NONOate, and to the endothelium-dependent vasodilator, bradykinin. These effects of apelin were mimicked by the selective BKCa-channel blocker, iberiotoxin, and suppressed by the APJ receptor antagonist, F13A. Apelin also inhibited relaxations evoked by the BKCa-channel openers, NS1619 and BMS 191011, but had no effect on relaxation to levcromakalim, a selective KATP-channel opener. Apelin had no effect on diethylamine NONOate-induced or bradykinin-induced increases in cyclic guanosine monophosphate levels. Patch clamp recordings demonstrated that apelin and iberiotoxin each suppressed the increase in BKCa currents induced by DEA and NS1619 in freshly isolated cerebral artery smooth muscle cells. The results demonstrate that apelin inhibits NO-induced relaxation of cerebral arteries through a mechanism involving activation of APJ receptors and inhibition of BKCa channels in cerebral arterial smooth muscle cells.
机译:已激活组织apelin /受体信号系统会导致endothelium-dependent和氮氧化(NO)端依赖放松一些周边动脉。脑动脉是未知的;抑制压敏电阻器的增加large-conductance calcium-activated K通道(BKCa)电流在脑动脉平滑肌细胞。部分动脉是介导的激活BKCa渠道,本研究的目标确定组织apelin在脑的净效应动脉,以及测试的假设脑动脉组织apelin的行动次要的刺激已受体。免疫印迹和定量反转录聚合酶链反应分析已发现受体在脑动脉的男性Sprague-Dawley老鼠和免疫荧光研究使用共焦显微镜已确认在平滑肌细胞受体定位。肌动描记器研究,组织apelin本身没有直接但是抑制松弛血管舒缩性的影响任何捐助者不,二乙胺NONOate和endothelium-dependent血管舒张,血管舒缓激肽。这些影响组织apelin被模仿的iberiotoxin选择性BKCa-channel杀杀杀,由已受体拮抗剂抑制F13A。组织Apelin也抑制诱发松口的BKCa-channel开器,NS1619和百时美施贵宝191011,但是没有影响放松levcromakalim,选择性KATP-channel刀。影响二乙胺NONOate-induced或bradykinin-induced增加环鸟苷一磷酸水平。表明组织apelin iberiotoxin每个抑制BKCa电流的增加引起的DEA和NS1619新鲜孤立脑动脉平滑肌细胞。表明组织apelin抑制NO-induced脑动脉通过放松已激活的受体机制并在大脑抑制BKCa渠道动脉平滑肌细胞。

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