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Cellular signalling pathways mediating dilation of porcine pial arterioles to adenosine A2A receptor activation

机译:细胞信号转导介导猪小动脉小动脉扩张至腺苷A2A受体激活

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AimsAdenosine is a potent vasodilator contributing to cerebral blood flow regulation during metabolic stress. However, the distribution of adenosine receptor subtypes and underlying signalling mechanisms for dilation of pial arterioles remain unclear. The present study aimed at addressing these issues.Methods and resultsIsolated porcine pial arterioles were subjected to study of vasomotor function, localization of adenosine receptors, and production of nitric oxide (NO). Concentration-dependent vasodilation to adenosine was inhibited by A2A receptor antagonist ZM241385 but not by A 1 receptor antagonist 8-cyclopentyl-1,3-dipropylxanthine. A 2A receptors were detected in endothelium and smooth muscle of pial arterioles via immunohistochemistry. Adenosine significantly increased arteriolar production of NO, and the induced dilation was insensitive to K ATP channel blocker glibenclamide but was attenuated by endothelial denudation, NO synthase inhibitor l-NAME, or guanylyl cyclase inhibitor ODQ in a similar manner. Both inward rectifier potassium (Kir) channel inhibitor barium and cAMP signalling inhibitor Rp-8-Br-cAMPS attenuated adenosine-induced dilation. In the presence of l-NAME or the absence of endothelium, addition of Rp-8-Br-cAMPS but not barium further reduced adenosine-induced responses. Barium diminished endothelium-independent vasodilation to NO donor sodium nitroprusside. Comparable to the adenosine-induced response, vasodilation to A2A receptor agonist CGS21680 was attenuated by endothelial removal, ZM241385, l-NAME, barium, or Rp-8-Br-cAMPS, but not by glibenclamide.ConclusionAdenosine evokes dilation of porcine pial arterioles via parallel activation of endothelial and smooth muscle A2A receptors. Stimulation of endothelial NO production activates smooth muscle guanylyl cyclase for vasodilation by opening Kir channels. Adenosine also activates smooth muscle cAMP signalling leading to vasodilation.
机译:AimsAdenosine是一种有效的血管扩张剂,可在代谢应激期间促进脑血流量的调节。然而,腺苷受体亚型的分布和潜在的信号传导机制的小动脉扩张仍然不清楚。本研究旨在解决这些问题。方法和结果对分离的猪小动脉进行血管舒缩功能,腺苷受体的定位和一氧化氮(NO)的产生。 A2A受体拮抗剂ZM241385抑制了腺苷的浓度依赖性血管舒张,但A 1受体拮抗剂8-cyclopentyl-1,3-dipropylxanthanine却没有。通过免疫组织化学在小动脉的内皮和平滑肌中检测到2A受体。腺苷显着增加了小动脉的NO生成,并且诱导的扩张对K ATP通道阻滞剂格列本脲不敏感,但被内皮剥脱,NO合酶抑制剂I-NAME或鸟苷酸环化酶抑制剂ODQ减弱。内向整流钾(Kir)通道抑制剂钡和cAMP信号抑制剂Rp-8-Br-cAMPS均可减弱腺苷诱导的扩张。在存在l-NAME或不存在内皮的情况下,添加Rp-8-Br-cAMPS但不添加钡会进一步降低腺苷诱导的反应。钡使内皮依赖性血管舒张减少为NO供体硝普钠。与腺苷诱导的反应相当,通过内皮去除,ZM241385,l-NAME,钡或Rp-8-Br-cAMPS减弱了对A2A受体激动剂CGS21680的血管舒张作用,但未通过格列本脲使之减弱。内皮细胞和平滑肌A2A受体的平行激活。刺激内皮细胞一氧化氮的产生通过打开Kir通道激活平滑肌鸟苷酸环化酶进行血管舒张。腺苷还激活平滑肌cAMP信号,导致血管舒张。

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