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低氧环境下转染血管内皮生长因子165对人胃癌细胞体外侵袭转移的影响
引用本文:袁翠林,欧希龙. 低氧环境下转染血管内皮生长因子165对人胃癌细胞体外侵袭转移的影响[J]. 东南大学学报(医学版), 2011, 30(6): 896-900. DOI: 10.3969/j.issn.1671-6264.2011.06.017
作者姓名:袁翠林  欧希龙
作者单位:1. 东南大学医学院,江苏,南京,210009
2. 东南大学医学院,江苏,南京,210009;东南大学附属中大医院,消化科,江苏,南京,210009
摘    要:目的:探讨低氧环境下血管内皮生长因子165(VEGF-165)对人胃癌细胞侵袭转移的影响及可能的机制。方法:实验分为4组:以利用腺病毒作为载体并已构建成功含VEGF-165基因的重组腺病毒(Ad-VEGF-165)进行瞬时转染,同时用低氧诱导剂氯化钴进行低氧干预的人胃癌细胞株BGC-823为低氧转染(D)组;单纯用低氧诱导剂氯化钴进行低氧干预的人胃癌细胞株BGC-823为单纯低氧干预(B)组;以利用腺病毒作为载体并已构建成功含VEGF-165基因的重组腺病毒(Ad-VEGF-165)进行瞬时转染的人胃癌细胞株BGC-823为单纯转染(C)组;以未转染未行低氧干预的正常细胞作为空白对照(A)组。应用Transwell小室分析低氧环境下VEGF165转染前后胃癌细胞迁移能力的变化;利用半定量RT-PCR方法对4组细胞中尿激酶型纤溶酶原激活物(uPA)、基质金属蛋白质酶2(MMP-2)的mRNA表达水平进行分析。结果:D组胃癌细胞的侵袭能力及uPA、MMP-2的mRNA表达明显高于A、B、C组(P<0.05)。结论:低氧环境和VEGF-165因子共同作用能够明显提高人胃癌细胞BGC-823的侵袭能力及细胞中uPA、MMP-2的mRNA的表达,表明低氧环境下VEGF-165促进肿瘤细胞的侵袭转移。

关 键 词:胃癌  血管内皮生长因子165  侵袭能力  尿激酶型纤溶酶原激活物  基质金属蛋白质酶2  氯化钴

Effects of VEGF 165 on the invasion and metastasis of human gastric cancer cells in vitro
YUAN Cui-lin,OU Xi-long. Effects of VEGF 165 on the invasion and metastasis of human gastric cancer cells in vitro[J]. Journal of Southeast Univ: Medical Sci Ed, 2011, 30(6): 896-900. DOI: 10.3969/j.issn.1671-6264.2011.06.017
Authors:YUAN Cui-lin  OU Xi-long
Affiliation:YUAN Cui-lin1,OU Xi-long1,2(1.Clinical Medical College of Southeast University,Nanjing 210009,China,2.Department of Gastroenterology,Zhongda Hospital,Southeast University,China)
Abstract:Objective: To evaluate the effects of VEGF165 on the invasion and metastasis of human gastric cancer cells line BGC-823 under hypoxia.Methods: The BGC-823 cells were divided into 4 groups,transfected with Ad-VEGF165 transiently and induced by hypoxia mimic cobalt chloride as group D,induced by hypoxia mimic cobalt chloride alone as group B,transfected with Ad-VEGF165 alone as group C,group for non-transfected did not interfere with the normal cell line under hypoxic as blank control(A) group.A transwell cel...
Keywords:gastric cancer  vascular epithelial growth factor 165  transfection  urokinase-type plasminogen activator  matrix metalloproteinase-2  cobalt chloride  
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