Glioblastoma cells release factors that disrupt blood-brain barrier features

被引:0
作者
Stefan W. Schneider
Thomas Ludwig
Lars Tatenhorst
Stephan Braune
Hans Oberleithner
Volker Senner
Werner Paulus
机构
[1] University Hospital Münster,Institute of Physiology—Nanolab
[2] University Hospital Münster,Institute of Neuropathology
[3] University of Münster,Department of Dermatology
来源
Acta Neuropathologica | 2004年 / 107卷
关键词
Glioma; Transepithelial electrical resistance; Blood-brain barrier; Permeability; Cell culture model;
D O I
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摘要
The blood-brain barrier (BBB), mediated by endothelial tight junctions, is defective in malignant gliomas such as glioblastoma, resulting in cerebral edema and contrast enhancement upon neuroradiological examination. The mechanisms underlying BBB breakdown are essentially unknown. Since non-neoplastic astrocytes are required to induce BBB features of cerebral endothelial cells, it is conceivable that malignant astrocytes have lost this ability due to dedifferentiation. Alternatively, glioma cells might actively degrade previously intact BBB tight junctions. To examine the latter hypothesis, we have employed a transepithelial electrical resistance breakdown assay using monolayers of the C7 subclone of Madin-Darby canine kidney (MDCK-C7) cells forming tight junctions similar to those of BBB endothelial cells. We found that glioblastoma primary cells co-cultured with the MDCK-C7 monolayer (without direct contact of the two cell types) resulted in marked breakdown of electrical resistance, whereas primary cultures derived from low-grade gliomas (fibrillary astrocytoma, oligoastrocytoma) showed delayed or no effects. These results suggest that malignant gliomas have acquired the ability to actively degrade tight junctions by secreting soluble factors, eventually leading to BBB disruption within invaded brain tissue.
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页码:272 / 276
页数:4
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