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胶质细胞钙波介导海马神经元谷氨酸激活的证据。

Evidence for glutamate-mediated activation of hippocampal neurons by glial calcium waves.

作者信息

Hassinger T D, Atkinson P B, Strecker G J, Whalen L R, Dudek F E, Kossel A H, Kater S B

机构信息

Department of Anatomy and Neurobiology, Colorado State University, Ft. Collins 80523, USA.

出版信息

J Neurobiol. 1995 Oct;28(2):159-70. doi: 10.1002/neu.480280204.

Abstract

Communication from astrocytes to neurons has recently been reported by two laboratories, but different mechanisms were though to underlie glial calcium wave activation of associated neurons. Neuronal calcium elevation by glia observed in the present report is similar to that reported previously, where an increase in neuronal calcium was demonstrated in response to glial stimulation. In the present study hippocampal neurons plated on a confluent glial monolayer displayed a transient increase in intracellular calcium following a short delay after the passage of a wave of increased calcium in underlying glia. Activated cells displayed action potentials in response to glial waves and showed antineurofilament immunoreactivity. Finally, the N-methyl-D-aspartate glutamate receptor antagonist DL-2-amino-5-phosphonovaleric acid and the non-NMDA glutamate receptor antagonist 6,7-dinitroquinoxaline-2,3-dione significantly reduced the responsiveness of neurons to glial calcium waves. Our results indicate that hippocampal neurons growing on hippocampal or cortical astrocytes respond to glial calcium waves with elevations in calcium and increased electrical activity. Furthermore, we show that in most cases this communication appears to be mediated by ionotropic glutamate receptor channels.

摘要

最近,两个实验室报道了星形胶质细胞与神经元之间的通讯,但人们认为相关神经元的胶质钙波激活存在不同机制。本报告中观察到的胶质细胞引起的神经元钙升高与先前报道的情况相似,先前的报道显示,神经元钙会因胶质细胞刺激而增加。在本研究中,接种在汇合胶质细胞单层上的海马神经元,在其下方胶质细胞钙增加波通过后的短暂延迟后,细胞内钙出现短暂增加。被激活的细胞对胶质细胞波产生动作电位,并显示抗神经丝免疫反应性。最后,N-甲基-D-天冬氨酸谷氨酸受体拮抗剂DL-2-氨基-5-磷酸戊酸和非NMDA谷氨酸受体拮抗剂6,7-二硝基喹喔啉-2,3-二酮显著降低了神经元对胶质细胞钙波的反应性。我们的结果表明,生长在海马或皮质星形胶质细胞上的海马神经元会对胶质细胞钙波产生反应,表现为钙升高和电活动增加。此外,我们表明,在大多数情况下,这种通讯似乎是由离子型谷氨酸受体通道介导的。

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