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rAAV1介导血管内皮生长因子基因表达对大鼠脑缺血新生血管形成及神经功能恢复的影响
引用本文:栗世方,盂庆海,姚维成,扈国杰,李桂林,李照建,魏俊吉,薄勇力,张子衡,王任直.rAAV1介导血管内皮生长因子基因表达对大鼠脑缺血新生血管形成及神经功能恢复的影响[J].中华医学杂志,2009,89(3).
作者姓名:栗世方  盂庆海  姚维成  扈国杰  李桂林  李照建  魏俊吉  薄勇力  张子衡  王任直
作者单位:1. 青岛大学医学院附属医院神经外科,266003
2. 中国医学科学院北京协和医院神经外科
摘    要:目的 探讨血管内皮生长因子(VEGF)基因治疗对大鼠脑缺血的治疗作用及其机制.方法 成年雄性SD大鼠64只,分为对照组和治疗组,每组均32只,采用立体定向微量注射的方法将相同滴度的rAAVl-VEGF(治疗组)和rAAVl-Lacz(对照组)注入大鼠侧脑室,21 d后制作大脑中动脉区缺血再灌注(MCAO)模型,于不同时间点对各组动物进行神经损伤程度评分(NSS),以免疫定量分析法榆测各组大鼠脑组织中VEGF的表达量、以免疫组织化学染色检测脑内VEGF的表达部位和微血管密度(MVD),并行vWF和BrdU的免疫荧光双重标记,采用尾静脉注射FITC-葡聚糖法行脑微血管灌注成像,并对各组缺血半暗带区域的脑微血管灌注情况进行评估.结果 (1)治疗组的NSS评分有明显改善;(2)VEGF可在脑内多个结构表达,其VEGF表达量是对照组的27倍;(3)治疗组MVD为157±13、对照组为89±9(P<0.05),且治疗组半暗带区域可见大量BrdU阳性的内皮细胞,而对照组未见;(4)缺血半暗带区域微血管显影面积为(152 617±13 076)μm2/mm2,对照组为(91 658±6577)μm2/mm2(P<0.05).结论 rAAVI-VEGF可介导VEGF在大脑内表达,并对脑缺血大鼠神经功能的恢复具有促进作用,其治疗机制可能与VEGF促进新生血管形成并改善脑组织供血有关.

关 键 词:脑缺血  重组腺相关病毒  血管内皮生长因子  新生血管形成

Recombinant AAV1 mediated vascular endothelial growth factor gene expression promotes angiogenesis and improves neural function:experiment with rats
Li Shi-fang,MENG Qing-hai,YAO Wei-cheng,HU Guo-jie,LI Gui-lin,Zhao jian,WEI Jun-ji,BO Yong-li,ZHANG Zi-heng,WANG Ren-zhi.Recombinant AAV1 mediated vascular endothelial growth factor gene expression promotes angiogenesis and improves neural function:experiment with rats[J].National Medical Journal of China,2009,89(3).
Authors:Li Shi-fang  MENG Qing-hai  YAO Wei-cheng  HU Guo-jie  LI Gui-lin  Zhao jian  WEI Jun-ji  BO Yong-li  ZHANG Zi-heng  WANG Ren-zhi
Abstract:Objective To investigate the therapeutic effect of vascular endothelial growth factor (VEGF) gene expression mediated by recombinant AAV1 (rAAV1) vector in brain ischemia and the mechanism thereof.Methods Sixty-four SD rats were randomly divided into 2 equal groups and received intra-ventricular injection with rAAV1-VEGF or rAAV1-lacZ as controls.21 days later the rats underwent transient middle cerebral artery occlusion (MCAO).Neurological severity score (NSS) was recorded 1,2,3,7,14,and 21 days after MCAO.48 rats were sacrificed 21 days after MCAO and brains were taken out from 48 rats.Immune quantitative analysis was used to identify the quantity of VEGF expression,lmmunohistochemistry was used to identify the site of VEGF expression.Immunofluorescence double labeling of von Willebrand factor (vWF) and 5-bromodcoxy-uridine (BrdU) was performed to detect the proliferation of endothelial ceils.Fluoreseein isothiocyanate ( FITC ) -dextran was infused into the caudal vein of 8 rats from each group and then the rats were killed with their brains taken out to evaluate the cerebral microvessel perfusion and microvessel density.Results The NSSs of the VEGF group 7,14,and 21 days after MCAO were all significantly lower than those of the control group ( all P <0.05 ),and the VEGF165 protein expression quantity was 27 times as that of the control group (P < 0.05 ).Immunohistochemistry demonstrated that VEGF expression was distributed mainly in the caudate putamen,corpus callosum,choroid plexus,and hippocampas in the VEGF group,while no expression was detected in the control group.The microvessel density of the VEGF group was 157 ± 13,significantly higher than that of the control group ( 89 ± 9),P < 0.05 ].BrdU +/vWF + endothelial cells were detected in the area adjacent to the MCAO.The density of microvessel infused with FITC-dextran was (152 617 ±13 076) μm2/mm2 in the VEGF group,significantly higher than that of the control group (91 658 ± 6577)μm2/mm2,P < 0.05].Conclusion rAAV1 mediates the VEGF gene expression in multiple structures in the brain and attenuates the neurological deficit of MCAO.VEGF gene transfer may stimulate angiogenesis and improves blood supply in brain.Neovascularization may be a therapeutic strategy for brain ischemia.
Keywords:Brain ischemia  Adeno-associated virus  Vascular endothelial growth factor  Angiogenesis
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