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大鼠肠系膜动脉和静脉中的 CGRP-受体表达、CGRP 存在及其潜在作用。

CGRP in rat mesenteric artery and vein - receptor expression, CGRP presence and potential roles.

机构信息

Department of Clinical Experimental Research, Glostrup Research Institute, Glostrup University Hospital, Nordstjernevej 42, DK-2600, Glostrup, Denmark; Department of Drug Design and Pharmacology, Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100, Copenhagen Oe, Denmark.

Department of Clinical Experimental Research, Glostrup Research Institute, Glostrup University Hospital, Nordstjernevej 42, DK-2600, Glostrup, Denmark.

出版信息

Eur J Pharmacol. 2020 May 15;875:173033. doi: 10.1016/j.ejphar.2020.173033. Epub 2020 Feb 22.

Abstract

CGRP is a potent dilator of arteries and despite rich perivascular CGRP immunoreactivity in both arteries and veins the role of CGRP in veins remains unknown. The aim of the current study was to compare perivascular CGRP immunoreactivity and expression of CGRP receptor mRNA and CGRP receptor immunoreactivity in rat mesenteric arteries and veins. Furthermore, potential vasomotor effects of CGRP were explored in veins. Immunohistochemical studies reproduced rich perivascular CGRP innervation in arteries and in veins. Further, the presence of mRNA encoding the CGRP receptor subunits, CLR and RAMP1, were demonstrated in both arteries and veins using qPCR. Before comparing the vasoactive effects of CGRP in arteries and veins, we aimed to identify an experimental setting where vasomotor responses could be detected. Therefore, a length-tension study was performed in artery and vein segments. Whereas the arteries showed the characteristic monophasic curve with an IC/IC value of 0.9, surprisingly the veins showed a biphasic response with two corresponding IC/IC values of 0.7 and 0.9, respectively. There was no significant difference between fresh and cultured vasculature segments. To investigate whether a potential tension-dependent CGRP-induced dilation of veins caused the decline between the two IC/IC peaks, a second study was performed, with the CGRP receptor antagonist, BIBN4096BS (olcegepant) and the sensory nerve secretagogue, capsaicin. No significant vascular role of endogenous perivascular CGRP in mesenteric veins could be concluded, and a potential role of the rich perivascular CGRP and CGRP receptor abundancy in veins remains unknown.

摘要

降钙素基因相关肽(CGRP)是一种有效的动脉扩张剂,尽管在动脉和静脉中都存在丰富的血管周围 CGRP 免疫反应性,但 CGRP 在静脉中的作用仍不清楚。本研究的目的是比较大鼠肠系膜动脉和静脉的血管周围 CGRP 免疫反应性以及 CGRP 受体 mRNA 和 CGRP 受体免疫反应性的表达。此外,还研究了 CGRP 在静脉中的潜在血管舒缩作用。免疫组织化学研究在动脉和静脉中重现了丰富的血管周围 CGRP 支配。此外,使用 qPCR 在动脉和静脉中都证明了编码 CGRP 受体亚基 CLR 和 RAMP1 的 mRNA 的存在。在比较 CGRP 在动脉和静脉中的血管活性作用之前,我们旨在确定可以检测到血管舒缩反应的实验设置。因此,在动脉和静脉段进行了张力研究。尽管动脉显示出特征性的单相曲线,IC/IC 值为 0.9,但令人惊讶的是,静脉显示出双相反应,相应的 IC/IC 值分别为 0.7 和 0.9。新鲜和培养的血管段之间没有显著差异。为了研究潜在的张力依赖性 CGRP 诱导的静脉扩张是否导致两个 IC/IC 峰值之间的下降,进行了第二项研究,使用 CGRP 受体拮抗剂 BIBN4096BS(olcegepant)和感觉神经兴奋剂辣椒素。在肠系膜静脉中,不能得出内源性血管周围 CGRP 具有显著的血管作用的结论,而丰富的血管周围 CGRP 和 CGRP 受体在静脉中的潜在作用仍不清楚。

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