A study of the Distribution and Density of the VEGFR-2 Receptor on Glioma Microvascular Endothelial Cell Membranes

被引:0
作者
Dexiang Zhou
Shengquan Zhan
Dong Zhou
Zhaojie Li
Xiaofeng Lin
Kai Tang
Hang Shu
Guangzhong Chen
Shaojian Zeng
Yingqian Cai
Xiaodan Jiang
机构
[1] Guangdong Academy of Medical Sciences,Department of Neurosurgery
[2] Guangdong General Hospital & Guangdong Institute of Neuroscience,Neurosurgery Institute, Key Laboratory on Brain Function Repair and Regeneration of Guangdong
[3] Zhujiang Hospital,undefined
[4] Southern Medical University,undefined
来源
Cellular and Molecular Neurobiology | 2011年 / 31卷
关键词
Glioma; Endothelial cell; Endothelial cell growth factor receptor 2; Atomic force microscopy; Morphology;
D O I
暂无
中图分类号
学科分类号
摘要
The purpose of the study was to examine the nanoscale distribution and density of the VEGFR-2 membrane receptor on the endothelial cell surface of glioma microvasculature. Immunofluorescence and atomic force microscopy combined with immunogold labeling techniques were used to characterize and determine the position of the glioma microvasculature endothelial cell surface receptor VEGFR-2. We aimed to indirectly detect the distribution of VEGFR-2 on the cell membrane at the nanoscale level and to analyze VEGFR-2 quantitatively. Immunofluorescence imaging showed a large amount of VEGFR-2 scattered across the endothelial cell surface; atomic force microscopy imaging also showed two globular structures of different sizes scattered across the endothelial cell surface. The difference between the average diameter of the small globular structure outside the cell surface (43.67 ± 5.02 nm) and that of IgG (44.61 ± 3.19 nm) was not statistically significant (P > 0.05). The three-dimensional morphologies of the small globular structure outside the cell surface and IgG were similar. The difference between the average diameter of the large globular structure outside the cell surface (74.19 ± 9.10 nm) and that of IgG–SpA-CG (74.54 ± 15.93 nm) was also not statistically significant (P > 0.05). The three-dimensional morphologies of this large globular structure outside the cell surface and IgG–SpA-CG were similar. The total density of these two globular structures within the unit area was 92 ± 19 particles μm2. No globular structures were seen on the cell surface in the control group. The large globular structure on the surface of glioma microvascular endothelial cells was categorized as a VEGFR-2–IgG–SpA-CG immune complex, whereas the small globular structure was categorized as a VEGFR-2–IgG immune complex. The positions of the globular structures were the same as the positions of the VEGFR-2 molecules. A large amount of VEGFR-2 was scattered across glioma microvascular endothelial cell surfaces; the receptor density was about 92 per square micron.
引用
收藏
页码:687 / 694
页数:7
相关论文
共 42 条
[1]  
Almqvist N(2004)Elasticity and adhesion force mapping reveals real-time clustering of growth factor receptors and associated changes in local cellular rheological properties Biophys J 86 1753-1762
[2]  
Bhatia R(2009)Angiogenesis and anti-angiogenic molecularly targeted therapies in malignant gliomas Oncology 77 1-11
[3]  
Primbs G(2006)PET of vascular endothelial growth factor receptor expression J Nucl Med 47 2048-2056
[4]  
Argyriou AA(2009)Antiangiogenic therapy for high-grade gliomas CNS Neurol Disord Drug Targets 8 184-194
[5]  
Giannopoulou E(2008)Assessing the cytoskeletal system and its elements in C6 glioma cells and astrocytes by atomic force microscopy Cell Mol Neurobiol 28 895-905
[6]  
Kalofonos HP(1997)High resolution imaging of native biological sample surfaces using scanning probe microscopy Curr Opin Struct Biol 7 279-284
[7]  
Cai W(2005)Inhibition glioblastoma angiogenesis and invasion by combined treatments directed against vascular endothelial growth factor receptor-2, epidermal growth factor receptor, and vascular endothelial-cadherin Clin Cancer Res 11 4934-4940
[8]  
Chen K(2009)Expression of VEGF and NGF in gliomas of human Sichuan Da Xue Xue Bao Yi Xue Ban 40 408-411
[9]  
Mohamedali KA(2003)Mechanisms of tumor cell invasion and angiogenesis in the central nervous system Front Biosci 8 e289-e304
[10]  
Chamberlain MC(2009)Antiangiogenic therapy for high-grade gliomas Nat Rev Neurol 5 610-620