Decrease of endogenous vascular endothelial growth factor may not affect glioma cell proliferation and invasion.

自分泌信号 转染 血管内皮生长因子 胶质瘤 旁分泌信号 癌症研究 激酶插入结构域受体 生物 细胞生长 细胞培养 基质凝胶 血管生成 血管内皮生长因子A 神经肽1 分子生物学 化学 细胞生物学 受体 血管内皮生长因子受体 生物化学 遗传学
作者
Hong Xin,Feng Jiang,Steven N. Kalkanis,Zheng Gang Zhang,Xuepeng Zhang,Xuguang Zheng,Tom Mikkelsen,Hao Jiang,Michael Chopp
出处
期刊:PubMed [National Institutes of Health]
卷期号:6 (3): 219-29 被引量:15
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摘要

Vascular endothelial growth factor (VEGF) is abundantly produced by glioma cells especially glioblastoma, the most malignant form of astrocytoma. VEGF, a well known angiogenic factor, acts in a paracrine fashion on endothelial cells to develop tumor vasculature. However, recent studies have found that several tumor cells express VEGF receptors, and an autocrine action of VEGF on tumor cells has been suggested. To test this hypothesis, three human glioma cell lines (U251n, U87 and A172) were checked for VEGF and VEGFR expression. These cells express 0.1-0.6 ng/ml VEGF165 in cell culture medium within 24 hours. Western blot analysis showed that these cells express all of the VEGF receptors, VEGFR-1/Flt-1, VEGFR-2/KDR, Neuropilin-1 (NRP-1) and Neuropilin-2(NRP-2), even though tyrosine kinase receptor VEGFR-2/KDR exhibited baseline levels of expression. VEGF expression was significantly down regulated by phosphorothioate oligodeoxynucleotide (PS-ODN) and VEGF RNAi transfection. However, VEGF RNAi transfection as well as VEGF and VEGFR2 neutralization antibody treatment did not decrease cell proliferation detected by MTT and CyQuant NF proliferation assay except that PS-ODN transfection caused a non-specific decrease on cell proliferation. VEGF RNAi transfection did not alter cell invasion, as demonstrated in a matrigel invasion assay. Matrix metalloproteinase-2 (MMP-2) and MMP-9, facilitating cell invasion and over expressed in glioma cells, were not altered by VEGF RNAi transfection, as shown by zymographic assays. Our data indicate that the decrease of endogenous VEGF expression may not affect glioma cell proliferation and invasion.

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