首页> 外文期刊>Stroke: A Journal of Cerebral Circulation >P2u receptor-mediated release of endothelium-derived relaxing factoritric oxide and endothelium-derived hyperpolarizing factor from cerebrovascular endothelium in rats.
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P2u receptor-mediated release of endothelium-derived relaxing factoritric oxide and endothelium-derived hyperpolarizing factor from cerebrovascular endothelium in rats.

机译:P2u受体介导的大鼠脑血管内皮细胞释放内皮源舒张因子/一氧化氮和内皮源超极化因子。

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BACKGROUND AND PURPOSE: Stimulation of P2u purinoceptors by UTP on endothelium dilates the rat middle cerebral artery (MCA) through the release of endothelium-derived relaxing factoritric oxide (EDRF/NO) and an unknown relaxing factor. The purpose of this study was to determine whether this unknown relaxing factor is endothelium-derived hyperpolarizing factor (EDHF). METHODS: Rat MCAs were isolated, cannulated, pressurized, and luminally perfused. UTP was added to the luminal perfusate to elicit dilations. RESULTS: Resting outside diameter of the MCAs in one study was 209+/-7 micrometer (n=10). The MCAs showed concentration-dependent dilations with UTP administration. Inhibition of NO synthase with NG-nitro-L-arginine methyl ester (L-NAME) (1 micromol/L to 1 mmol/L) did not diminish the maximum response to UTP but did shift the concentration-response curve to the right. Scavenging NO with hemoglobin (1 or 10 micromol/L) or inhibition of guanylate cyclase with ODQ (1 or 10 micromol/L) had effects on the UTP-mediated dilations similar to those of L-NAME. In the presence of L-NAME, dilations induced by 10 micromol/L UTP were accompanied by 13+/-2 mV (P<0.009) hyperpolarization of the vascular smooth muscle membrane potential (-28+/-2 to -41+/-1 mV). Iberiotoxin (100 nmol/L), blocker of the large-conductance calcium-activated K channels, sometimes blocked the dilation, but its effects were variable. Charybdotoxin (100 nmol/L), also a blocker of the large-conductance calcium-activated K channels, abolished the L-NAME-insensitive component of the dilation to UTP. CONCLUSIONS: Stimulation of P2u purinoceptors on the endothelium of the rat MCA released EDHF, in addition to EDRF/NO, and dilated the rat MCA by opening an atypical calcium-activated K channel.
机译:背景与目的:UTP刺激内皮对P2u嘌呤受体的作用是通过释放内皮源性舒张因子/一氧化氮(EDRF / NO)和未知的舒张因子来扩张大鼠大脑中动脉(MCA)。这项研究的目的是确定这种未知的松弛因子是否是内皮源的超极化因子(EDHF)。方法:分离,插管,加压和光灌注大鼠MCA。将UTP添加到腔内灌注液中以引起扩张。结果:在一项研究中,MCA的静止外径为209 +/- 7微米(n = 10)。 MCA显示UTP给药浓度依赖性的扩张。用NG-硝基-L-精氨酸甲酯(L-NAME)(1 micromol / L到1 mmol / L)抑制NO合酶不会减弱对UTP的最大反应,但会使浓度-反应曲线向右移动。用血红蛋白(1或10 micromol / L)清除NO或用ODQ(1或10 micromol / L)抑制鸟苷酸环化酶对UTP介导的扩张作用与L-NAME类似。在存在L-NAME的情况下,由10 micromol / L UTP诱导的扩张伴随着血管平滑肌膜电位的13 +/- 2 mV(P <0.009)超极化(-28 +/- 2至-41 + / -1 mV)。大电流钙激活的K通道的阻滞剂伊贝毒素(100 nmol / L)有时会阻止扩张,但其作用是可变的。 Charybdotoxin(100 nmol / L),也是大传导钙激活的K通道的阻滞剂,废除了对UTP的L-NAME不敏感成分的扩张。结论:刺激大鼠MCA内皮上的P2u嘌呤受体,除EDRF / NO外,还释放EDHF,并通过开放非典型钙激活的K通道来扩张大鼠MCA。

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