Robinson S R, Noone D F, O'Dowd B S
Vision, Touch & Hearing Research Centre, University of Queensland, St. Lucia, Australia.
Glia. 1996 Aug;17(4):345-8. doi: 10.1002/(SICI)1098-1136(199608)17:4<345::AID-GLIA9>3.0.CO;2-Y.
The cilated ependymocytes that line the ventricles are decorated by a network of serotoninergic supra-ependymal axons, which are thought to regulate their function. The neurones of origin contain both serotonin and phosphate-activated glutaminase, which raises the possibility that the supra-ependymal axons are also glutamatergic. Using immunocytochemistry, the present study has demonstrated the presence of glutamate in many supra-ependymal axons, as well as in the cilia of ependymocytes. We suggest that glutamate in supra-ependymal axons, counterbalances or opposes the action elicited by serotonin. Glutamate taken up by ependymocytes may supplement metabolic pathways in these cells and could be used to fuel the high energy demands of their cilia.
脑室衬里的纤毛室管膜细胞被5-羟色胺能室管膜上轴突网络所修饰,这些轴突被认为可调节其功能。起源神经元同时含有5-羟色胺和磷酸激活谷氨酰胺酶,这增加了室管膜上轴突也是谷氨酸能的可能性。本研究通过免疫细胞化学方法,证实了许多室管膜上轴突以及室管膜细胞的纤毛中存在谷氨酸。我们认为,室管膜上轴突中的谷氨酸可抵消或对抗5-羟色胺引发的作用。室管膜细胞摄取的谷氨酸可能补充这些细胞中的代谢途径,并可用于满足其纤毛对高能量的需求。