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血管内皮生长因子受体3(VEGFR3)在胶质瘤血管内皮中的表达与肿瘤分级相关。

Expression of VEGFR3 in glioma endothelium correlates with tumor grade.

作者信息

Grau S J, Trillsch F, Herms J, Thon N, Nelson P J, Tonn J-C, Goldbrunner R

机构信息

Department of Neurosurgery, Klinikum Grosshadern, Ludwig-Maximilians-University Munich, Marchioninistr. 15, 81373 , Munich, Germany,

出版信息

J Neurooncol. 2007 Apr;82(2):141-50. doi: 10.1007/s11060-006-9272-4. Epub 2006 Nov 17.

Abstract

Angiogenic processes are regulated by vascular endothelial growth factors (VEGFs) and their receptors VEGFR1 (Flt-1), 2 (Flk-1) and 3 (Flt-4). While VEGFR2 is thought to play a central role in tumor angiogenesis, anti-angiogenic therapies targeting VEGFR2 in glioma models can show escape phenomena with secondary onset of angiogenesis. The purpose of this study was to find explanations for these processes by searching for alternative pathways regulating glioma angiogenesis and reveal a correlation with tumor grade. Thus, VEGFR3, which is not expressed in normal brain, and its ligands VEGF-C and -D, were assessed in high grade (WHO degrees IV, glioblastomas, GBM) and low grade gliomas [WHO degrees II astrocytomas (AII)]. In all GBM, a strong protein expression of VEGFR3 was found on tumor endothelium, VEGF-C and -D expression was found on numerous cells in areas of high vascularization. On RNA level, a significant up-regulation of VEGFR3 was detected in GBM compared to AII and non-neoplastic brain. In AII, only very moderate VEGFR3, VEGF-C and -D expression was found on protein and RNA level indicating a correlation of VEGFR3 expression with tumor grade. VEGFR3 signal in both grades was found predominantly on endothelial cells, confirmed by VEGFR3 expression on isolated CD31 positive cells and the expression of various endothelial markers on VEGFR3-positive cells isolated from GBM. The demonstration of a complete angiogenic signaling system that is dependent on tumor grade may influence the traditional paradigm of glioma angiogenesis and may provide a basis for more effective anti-angiogenic treatment strategies.

摘要

血管生成过程受血管内皮生长因子(VEGF)及其受体VEGFR1(Flt - 1)、2(Flk - 1)和3(Flt - 4)调控。虽然VEGFR2被认为在肿瘤血管生成中起核心作用,但在胶质瘤模型中靶向VEGFR2的抗血管生成疗法可能会出现逃逸现象,继发血管生成。本研究的目的是通过寻找调节胶质瘤血管生成的替代途径来解释这些过程,并揭示其与肿瘤分级的相关性。因此,对在正常脑组织中不表达的VEGFR3及其配体VEGF - C和 - D在高级别(世界卫生组织IV级,胶质母细胞瘤,GBM)和低级别胶质瘤[世界卫生组织II级星形细胞瘤(AII)]中进行了评估。在所有GBM中,肿瘤内皮上发现VEGFR3有强烈的蛋白表达,在高血管化区域的众多细胞上发现VEGF - C和 - D表达。在RNA水平上,与AII和非肿瘤性脑相比,GBM中检测到VEGFR3显著上调。在AII中,在蛋白和RNA水平上仅发现非常适度的VEGFR3、VEGF - C和 - D表达,表明VEGFR3表达与肿瘤分级相关。在两个级别中,VEGFR3信号主要在内皮细胞上发现,这通过分离的CD31阳性细胞上的VEGFR3表达以及从GBM分离的VEGFR3阳性细胞上各种内皮标志物的表达得到证实。一个完整的依赖于肿瘤分级的血管生成信号系统的证明可能会影响胶质瘤血管生成的传统范式,并可能为更有效的抗血管生成治疗策略提供基础。

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