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首页> 外文期刊>Brain research >Localization of CGRP, CGRP receptor, PACAP and glutamate in trigeminal ganglion. Relation to the blood-brain barrier
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Localization of CGRP, CGRP receptor, PACAP and glutamate in trigeminal ganglion. Relation to the blood-brain barrier

机译:三叉神经节中CGRP,CGRP受体,PACAP和谷氨酸的定位。与血脑屏障的关系

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Calcitonin gene-related peptide (CGRP) receptor antagonists have demonstrated antimigraine efficacy. One remaining question is where do these blockers act? We hypothesized that the trigeminal ganglion could be one possible site. We examined the binding sites of a CGRP receptor antagonist (MK-3207) and related this to the expression of CGFtP and its receptor in rhesus trigeminal ganglion. Pituitary adenylate cyclase-activating polypeptide (PACAP) and glutamate were examined and related to the CGRP system. Furthermore, we examined if the trigeminal ganglion is protected by the blood-brain barrier (BBB). Autoradiography was performed with [31-1]MK-3207 to demonstrate receptor binding sites in rhesus trigeminal ganglion (TG). Immunofluorescence was used to correlate binding and the presence of CGRP and its receptor components, calcitonin receptor-like receptor (CLR) and receptor activity-modifying protein 1 (RAMP1), and the distribution of PACAP and glutamate in rhesus and rat TG. Evans blue was used to examine large molecule penetration into the rat TG. High receptor binding densities were found in rhesus TG. Immunofluorescence revealed expression of CGRP, CLR and RAMP1 in trigeminal cells. CGRP Positive neurons expressed PACAP but not glutamate. Some neurons expressing CLR and FtAMP1 co-localized with glutamate. Evans blue revealed that the TG is not protected by BBB. This study demonstrates CGRP receptor binding sites and expression of the CGRP receptor in rhesus and rat TG. The expression pattern of PACAP and glutamate suggests a possible interaction between the glutamatergic and CGRP system. In rat the TG is outside the BBB, suggesting that molecules do not need to be CNS-penetrant to block these receptors. (C) 2015 Elsevier B.V. All rights reserved.
机译:降钙素基因相关肽(CGRP)受体拮抗剂已显示出抗偏头痛功效。剩下的一个问题是这些阻滞剂在哪里起作用?我们假设三叉神经节可能是一个可能的部位。我们检查了CGRP受体拮抗剂(MK-3207)的结合位点,并将其与恒河三叉神经节中CGFtP及其受体的表达相关。垂体腺苷酸环化酶激活多肽(PACAP)和谷氨酸被检查并与CGRP系统相关。此外,我们检查了三叉神经节是否受到血脑屏障(BBB)的保护。用[31-1] MK-3207进行放射自显影,以证明恒河三叉神经节(TG)中的受体结合位点。免疫荧光用于关联CGRP及其受体成分,降钙素受体样受体(CLR)和受体活性修饰蛋白1(RAMP1)的结合,以及恒河猴和大鼠TG中PACAP和谷氨酸的分布。伊文思蓝用于检查大分子向大鼠TG的渗透。在恒河猴TG中发现高的受体结合密度。免疫荧光显示三叉神经细胞中CGRP,CLR和RAMP1的表达。 CGRP阳性神经元表达PACAP,但不表达谷氨酸。一些表达CLR和FtAMP1的神经元与谷氨酸共定位。埃文斯·布鲁(Evans blue)透露,TG不受BBB保护。这项研究证明了恒河猴和大鼠TG中CGRP受体的结合位点和CGRP受体的表达。 PACAP和谷氨酸的表达模式表明谷氨酸能和CGRP系统之间可能存在相互作用。在大鼠中,TG位于BBB之外,这表明分子不需要渗透CNS即可阻断这些受体。 (C)2015 Elsevier B.V.保留所有权利。

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