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由两条信号通路传递的星形胶质细胞-内皮细胞钙信号。

Astrocyte-endothelial cell calcium signals conveyed by two signalling pathways.

作者信息

Braet K, Paemeleire K, D'Herde K, Sanderson M J, Leybaert L

机构信息

Department of Physiology and Pathophysiology, Ghent University, De Pintelaan 185 (Blok B), B-9000 Ghent, Belgium.

出版信息

Eur J Neurosci. 2001 Jan;13(1):79-91.

Abstract

Astrocytes and endothelial cells are in close contact with each other at the blood-brain barrier, where important molecular transports take place. Despite these key morphological and functional properties, little is known regarding the dynamic signalling processes that occur between these two cell types. We investigated astrocyte-endothelial cell calcium signalling mechanisms in a coculture model prepared from primary rat cortical astrocytes and ECV304 cells. We used flash photolysis of caged inositol-trisphosphate (IP3) and gentle mechanical stimulation to trigger astrocyte-endothelial cell calcium signals and to investigate the underlying propagation mechanisms. Photolytically releasing IP3 in a single cell triggered increases in cytoplasmic calcium concentration that propagated between astrocytes and endothelial cells in either direction. These propagating calcium signals did not cross cell-free zones and were not affected by fast superfusion or by the purinergic inhibitors apyrase and suramin, indicating that they are communicated through an intracellular pathway in conjunction with gap junctions. Electrophysiological experiments confirmed a low degree of astrocyte-endothelial cell electrical cell-to-cell coupling. Mechanical stimulation of a single cell also triggered astrocyte-endothelial cell calcium signals but, in contrast to the former triggering mode, these signals crossed cell-free zones and were significantly inhibited by apyrase, thus indicating the involvement of an extracellular and purinergic messenger. Astrocyte-endothelial cell calcium signalling also occurred in cocultures prepared with astrocytes and primary rat brain capillary endothelial cells. We conclude that astrocytes and endothelial cells can exchange fast-acting calcium signals (time scale of seconds) that can be communicated through an intracellular/gap junctional pathway and an extracellular purinergic pathway.

摘要

在血脑屏障处,星形胶质细胞和内皮细胞彼此紧密接触,重要的分子转运在此发生。尽管具有这些关键的形态和功能特性,但对于这两种细胞类型之间发生的动态信号传导过程却知之甚少。我们在由原代大鼠皮质星形胶质细胞和ECV304细胞制备的共培养模型中研究了星形胶质细胞 - 内皮细胞钙信号传导机制。我们使用笼锁肌醇三磷酸(IP3)的闪光光解和轻柔的机械刺激来触发星形胶质细胞 - 内皮细胞钙信号,并研究其潜在的传播机制。在单个细胞中光解释放IP3会触发细胞质钙浓度升高,该升高在星形胶质细胞和内皮细胞之间双向传播。这些传播的钙信号不会穿过无细胞区域,并且不受快速灌流或嘌呤能抑制剂腺苷三磷酸双磷酸酶和苏拉明的影响,这表明它们是通过与间隙连接相结合的细胞内途径进行传递的。电生理实验证实星形胶质细胞与内皮细胞之间存在低度的电细胞间耦合。对单个细胞的机械刺激也会触发星形胶质细胞 - 内皮细胞钙信号,但与前一种触发模式不同的是,这些信号会穿过无细胞区域,并被腺苷三磷酸双磷酸酶显著抑制,因此表明涉及细胞外和嘌呤能信使。星形胶质细胞 - 内皮细胞钙信号传导也发生在由星形胶质细胞和原代大鼠脑毛细血管内皮细胞制备的共培养物中。我们得出结论,星形胶质细胞和内皮细胞可以交换快速作用的钙信号(时间尺度为秒),这些信号可以通过细胞内/间隙连接途径和细胞外嘌呤能途径进行传递。

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