AMPA受体
胶质瘤
突触后电位
神经科学
生物
吡仑帕奈
谷氨酸受体
谷氨酸的
癌症研究
细胞生物学
化学
受体
癫痫
生物化学
作者
Varun Venkataramani,Dimitar Ivanov Tanev,Christopher Strahle,Alexander Studier-Fischer,Laura Fankhauser,Tobias Keßler,Christoph Körber,Markus Kardorff,Miriam Ratliff,Ruifan Xie,Heinz Horstmann,Mirko Messer,Sang P. Paik,Johannes Knabbe,Felix Sahm,Felix T. Kurz,Azer Aylin Açıkgöz,Frank Herrmannsdörfer,Amit Agarwal,Dwight E. Bergles
出处
期刊:Nature
[Nature Portfolio]
日期:2019-09-18
卷期号:573 (7775): 532-538
被引量:794
标识
DOI:10.1038/s41586-019-1564-x
摘要
A network of communicating tumour cells that is connected by tumour microtubes mediates the progression of incurable gliomas. Moreover, neuronal activity can foster malignant behaviour of glioma cells by non-synaptic paracrine and autocrine mechanisms. Here we report a direct communication channel between neurons and glioma cells in different disease models and human tumours: functional bona fide chemical synapses between presynaptic neurons and postsynaptic glioma cells. These neurogliomal synapses show a typical synaptic ultrastructure, are located on tumour microtubes, and produce postsynaptic currents that are mediated by glutamate receptors of the AMPA subtype. Neuronal activity including epileptic conditions generates synchronised calcium transients in tumour-microtube-connected glioma networks. Glioma-cell-specific genetic perturbation of AMPA receptors reduces calcium-related invasiveness of tumour-microtube-positive tumour cells and glioma growth. Invasion and growth are also reduced by anaesthesia and the AMPA receptor antagonist perampanel, respectively. These findings reveal a biologically relevant direct synaptic communication between neurons and glioma cells with potential clinical implications.
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