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Purinergic receptors regulate myogenic tone in cerebral parenchymal arterioles

机译:嘌呤能受体调节脑实质小动脉的肌原性张力

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Myogenic tone is a fundamental aspect of vascular behavior in resistance arteries. This contractile response to changes in intravascular pressure is critically involved in blood flow autoregulation in tissues such as the brain, kidneys, and heart. Myogenic tone also helps regulate precapillary pressure and provides a level of background tone upon which vasodilator stimuli act to increase tissue perfusion when appropriate. Despite the importance of these processes in the brain, little is known about the mechanisms involved in control of myogenic tone in the cerebral microcirculation. Here, we report that pharmacological inhibition of P2Y4 and P2Y6 pyrimidine receptors nearly abolished myogenic tone in cerebral parenchymal arterioles (PAs). Molecular suppression of either P2Y4 or P2Y6 receptors using antisense oligodeoxynucleotides reduced myogenic tone by 44%??8% and 45%??7%, respectively. These results indicate that both receptor isoforms are activated by increased intravascular pressure, which enhances the activity of voltage-dependent calcium channels and increases myogenic tone in PAs. Enhancement or inhibition of ectonucleotidase activity had no effect on parenchymal arteriolar myogenic tone, indicating that this response is not mediated by local release of nucleotides, but rather may involve direct mechanical activation of P2Y receptors in the smooth muscle cells. ? 2013 ISCBFM All rights reserved.
机译:生肌张力是抵抗动脉中血管行为的基本方面。这种对血管内压力变化的收缩反应至关重要地参与了诸如大脑,肾脏和心脏等组织的血流自动调节。肌张力还有助于调节毛细血管前压力,并提供一定程度的背景张力,适当时血管舒张剂可在此背景下起作用,以增加组织灌注。尽管这些过程在大脑中很重要,但对控制大脑微循环中肌原性张力所涉及的机制知之甚少。在这里,我们报告说,P2Y4和P2Y6嘧啶受体的药理抑制作用几乎消除了脑实质小动脉(PAs)中的肌原性基调。使用反义寡聚脱氧核苷酸对P2Y4或P2Y6受体的分子抑制分别使肌原性调低44%→8%和45%→7%。这些结果表明,两种受体同工型都通过增加的血管内压力激活,从而增强了电压依赖性钙通道的活性并增加了PAs的肌原性。外切核苷酸酶活性的增强或抑制对实质小动脉肌原性肌张力没有影响,表明该反应不是由核苷酸的局部释放介导的,而是可能涉及平滑肌细胞中P2Y受体的直接机械活化。 ? 2013 ISCBFM保留所有权利。

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