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代谢型谷氨酸受体在大鼠脑膜、脑微血管和脉络丛中的表达。

Expression of metabotropic glutamate receptors in rat meningeal and brain microvasculature and choroid plexus.

作者信息

Gillard Samantha E, Tzaferis John, Tsui Ho-Ching Tiffany, Kingston Ann E

机构信息

Eli Lilly and Company, Lilly Corporate Center, Indianapolis, Indiana 46285, USA.

出版信息

J Comp Neurol. 2003 Jun 30;461(3):317-32. doi: 10.1002/cne.10671.

Abstract

This study investigated the distribution of metabotropic glutamate receptors (mGluRs) in meningeal and parenchymal microvasculature and in choroid plexus by means of Western blot analysis and immunohistochemistry. Western blot analysis demonstrated mGluR expression in both rat and human leptomeningeal tissues. In the rat, mGluR expression was developmentally regulated, with only mGluR2/3 showing expression at the embryonic day 19 developmental stage. In contrast, mGluR1 alpha, mGluR2/3, mGluR4a, and mGluR7 were expressed in leptomeninges from adult rats. Immunohistochemical analyses showed intense mGluR1 alpha immunoreactivity in the pia mater and blood vessels in the subarachnoid space and in the arachnoid layer of the meninges. mGluR2/3, mGluR4a, mGluR5, and mGluR7 were also expressed in meningeal microvasculature. In addition, the parenchymal microvasculature and choroid plexus were strongly immunoreactive for mGluR1 alpha, mGluR2/3, mGluR4a, mGluR5, and mGluR7. We used antibodies specific for phenotypic markers of microvascular and glial cells to characterize the cell type(s) immunopositive for mGluRs. Comparison of staining with anti-von Willebrand factor antibody and anti-mGluR antibodies revealed that mGluR immunoreactivity was present in cells that surrounded the luminal surface labeled by the endothelial cell marker. In these cells, smooth muscle actin and mGluR immunoreactivity overlapped, suggesting that, in addition to endothelial cells, pericytes within the microvasculature also express mGluRs. Furthermore, expression of mGluR1 alpha was also observed in pure pericyte cultures isolated from bovine retina. These data suggest that glutamate by means of activation of mGluRs may have a broad sphere of physiological influence in the brain which in addition to modulating synaptic transmission may also have a role in determining microvascular function and dysfunction.

摘要

本研究通过蛋白质印迹分析和免疫组织化学方法,调查了代谢型谷氨酸受体(mGluRs)在脑膜和实质微血管以及脉络丛中的分布情况。蛋白质印迹分析表明,大鼠和人类软脑膜组织中均有mGluR表达。在大鼠中,mGluR表达受发育调控,仅mGluR2/3在胚胎第19天发育阶段有表达。相比之下,成年大鼠软脑膜中有mGluR1α、mGluR2/3、mGluR4a和mGluR7表达。免疫组织化学分析显示,软脑膜、蛛网膜下腔血管和脑膜蛛网膜层中有强烈的mGluR1α免疫反应性。mGluR2/3、mGluR4a、mGluR5和mGluR7也在脑膜微血管中表达。此外,实质微血管和脉络丛对mGluR1α、mGluR2/3、mGluR4a、mGluR5和mGluR7有强烈免疫反应性。我们使用针对微血管和神经胶质细胞表型标志物的抗体,来鉴定对mGluRs呈免疫阳性的细胞类型。抗血管性血友病因子抗体染色与抗mGluR抗体染色的比较显示,mGluR免疫反应性存在于被内皮细胞标志物标记的管腔表面周围的细胞中。在这些细胞中,平滑肌肌动蛋白和mGluR免疫反应性重叠,表明除内皮细胞外,微血管内的周细胞也表达mGluRs。此外,在从牛视网膜分离的纯周细胞培养物中也观察到mGluR1α的表达。这些数据表明,谷氨酸通过激活mGluRs可能在大脑中具有广泛的生理影响范围,除了调节突触传递外,还可能在决定微血管功能和功能障碍方面发挥作用。

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