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1.
目的探讨人血管内皮生长因子165(hVEGF165)基因转染兔骨髓源性内皮祖细胞(EPCs)及对EPCs增殖的影响。方法体外分离、培养、扩增并鉴定EPCs,脂质体介导转染携带增强型绿色荧光蛋白标记的VEGF166质粒、空白质粒,同时经ELISA法检测转基因EPCs表达VEGF蛋白,并采用CCK-8法检测对其增殖的影响。结果FITC标记剂豆凝集素I和Dil标记的乙酰化低密度脂蛋白荧光双染证实正在分化的EPCs,同时经免疫组化法证实VEGF受体2FLk-1和VIII因子的表达;VEGF165质粒转染组EPCs上清液中表达VEGF166,VEGF165转染EPCs的转染率约22.5%;hVEGF165基因转染促进EPCs增殖。结论hVEGF165基因可成功转染EPCs,且可促进EPCs的增殖,为基因治疗血管性疾病提供了动物实验基础。  相似文献   

2.
目的 探讨人血管内皮生长因子165(hVEGF165)基因转染兔骨髓源性内皮祖细胞(EPCs)及对EPCs增殖的影响.方法 体外分离、培养、扩增并鉴定EPCs,脂质体介导转染携带增强型绿色荧光蛋白标记的VEGF165质粒、空白质粒,同时经ELISA法检测转基因EPCs表达VEGF蛋白,并采用CCK-8法检测对其增殖的影响.结果 FITC标记荆豆凝集素Ⅰ和Dil标记的乙酰化低密度脂蛋白荧光双染证实正在分化的EPCs,同时经免疫组化法证实VEGF受体2 FLk-1和Ⅷ因子的表达;VEGF165质粒转染组EPCs上清液中表达VEGF165,VEGF165转染EPCs的转染率约22.5%;hVEGF165基因转染促进EPCs增殖.结论 hVEGF165基因可成功转染EPCs,且可促进EPCs的增殖,为基因治疗血管性疾病提供了动物实验基础.  相似文献   

3.
赵刚  黄岚  赵延新  朱光绪  方玉强 《重庆医学》2007,36(10):930-932
目的探讨人血管内皮细胞生长因子165(hVEGF165)基因转染骨髓源性内皮祖细胞(EPCs)及对EPCs增殖的影响。方法体外分离、培养、鉴定EPCs,脂质体介导pcDNA3-hVEGF165质粒转染组、pcDNA3空质粒转染组、空白对照组。ELISA检测EPCs表达VEGF蛋白,MTT法检测hVEGF165基因修饰对EPCs增殖的影响。结果FITC-UEA-Ⅰ和DiI-ac-LDL荧光双染证实分化的EPCs,脂质体介导pcDNA3-hVEGF165质粒转染组EPCs培养基上清中表达VEGF,hVEGF165基因转染促进EPCs增殖。结论EPCs可以成功转染hVEGF165基因,并且可促进EPCs的增殖,为进一步研究hVEGF165基因修饰EPCs治疗血管内膜损伤性疾病提供实验依据。  相似文献   

4.
目的 探讨人血管内皮细胞生长因子165(hVEGF165)基因转染骨髓源性内皮祖细胞(EPCs)及对EPCs增殖的影响,在体研究VEGF基因修饰EPCs对内膜损伤血管再内皮化的影响.方法 体外分离、培养、鉴定EPCs,脂质体介导pcDNA3-hVEGF165质粒转染组、pcDNA3空质粒转染组、空白对照组.ELISA法检测EPCs表达VEGF蛋白,MTT法检测hVEGF165基因修饰对EPCs增殖的影响.基因修饰EPCs移植到内膜损伤血管模型中,观察基因修饰对EPCs修复内膜损伤的效应.结果 FITC-UEA-Ⅰ和DiⅠ-acLDL荧光双染证实分化的EPCs,脂质体介导pcDNA3-hVEGF165质粒转染组EPCs培养基上清中表达VEGF,hVEGF165基因转染促进EPCs迁移、黏附和增殖.基因修饰EPCs促进损伤内膜修复.结论 EPCs可以成功转染hVEGF165基因,并且促进EPCs的迁移、黏附和增殖,增强EPCs对损伤内膜修复的能力.  相似文献   

5.
目的:探讨腺相关病毒-2(AAV-2)介导人血管内皮生长因子-165(hVEGF165)转染兔骨髓内皮祖细胞(EPCs)及其对EPCs增殖能力的影响。方法:构建携带hVEGF165基因的重组腺相关病毒(rAAV)载体pAAV-hVEGF165;制备携带hVEGF165基因的rAAV(rAAV-2-hVEGF165)和携带β-半乳糖苷酶(-βgal)基因的rAAV(rAAV-2-LacZ);体外培养和鉴定兔骨髓EPCs;分别用rAAV-2-hVEGF165和rAAV-2-LacZ体外转染EPCs(AAV/VEGF-EPC和AAV/LacZ-EPC);用RT-PCR、免疫细胞化学、流式细胞术等法检测hVEGF165和-βgal的表达,MTT法检测AAV/VEGF-EPC的增殖能力。结果:经酶切鉴定和DNA测序,得到了序列正确的重组质粒pAAV-hVEGF165;AAV/VEGF-EPC能够表达hVEGF165蛋白,AAV/LacZ-EPC能够表达-βgal;rAAV-2-hVEGF165对于EPCs的转染率为64.4%;AAV/VEGF-EPC的增殖能力明显强于AAV/LacZ-EPC和EPCs。结论:EPCs可以被rAAV-2-hVEGF165高效转染,其增殖能力明显增强。本文为进一步探讨AAV/VEGF-EPC用于缺血性血管疾病治疗的可能性奠定了基础。  相似文献   

6.
目的:探讨腺相关病毒-2(AAV-2)介导人血管内皮生长因子-165(hVEGF165)转染兔骨髓内皮祖细胞(EPCs)及其对EPCs增殖能力的影响.方法:构建携带hVEGF165基因的重组腺相关病毒(rAAV)载体pAAV-hVEGF165;制备携带hVEGF165基因的rAAV (rAAV-2-hVEGF165)和携带β-半乳糖苷酶(β-gal)基因的rAAV(rAAV-2-LacZ);体外培养和鉴定兔骨髓EPCs;分别用rAAV-2-hVEGF165和rAAV-2-LacZ体外转染EPCs(AAV/VEGF-EPC和AAV/LacZ-EPC);用RT-PCR、免疫细胞化学、流式细胞术等法检测hVEGF165和β-gal 的表达,MTT法检测AAV/VEGF-EPC的增殖能力.结果:经酶切鉴定和DNA测序,得到了序列正确的重组质粒pAAV-hVEGF165;AAV/VEGF-EPC能够表达hVEGF165蛋白,AAV/LacZ-EPC能够表达β-gal;rAAV-2-hVEGF165对于EPCs的转染率为64.4%;AAV/VEGF-EPC的增殖能力明显强于AAV/LacZ-EPC和EPCs.结论:EPCs可以被rAAV-2-hVEGF165高效转染,其增殖能力明显增强.本文为进一步探讨AAV/VEGF-EPC用于缺血性血管疾病治疗的可能性奠定了基础.  相似文献   

7.
目的:评估VEGF165基因转染的内源性内皮祖细胞(endothelial progenitor cells,EPCs)移植治疗肾脏缺血再灌注损伤(ischemia?reperfusion injury,IRI)的作用,进一步阐明EPCs对肾脏IRI产生保护作用的旁分泌机制。方法:40只成年雄性SD大鼠被随机分成4组,其中包括假手术组、缺血再灌注组、EPC移植组、携带VEGF165基因转染组。利用重组腺病毒载体Ad?VEGF165感染EPCs,并进行转染效率鉴定。并进一步移植治疗大鼠肾脏IRI,术后24 h和72 h分别评估血清肌酐及尿素氮水平;组织病理学检查评估各组大鼠术后肾损伤程度;免疫组化染色评估CD31表达情况;Western blot检测大鼠肾脏IRI中血管内皮生长因子(vascular endothelial growth factor,VEGF)、血管生成素?1(Ang?1)及血管生成素?2(Ang?2)表达情况。结果:研究发现利用重组腺病毒载体Ad?VEGF165转染的EPCs移植治疗后,大鼠肾脏血清肌酐、尿素氮水平和肾脏组织病理学明显改善,术后72 h检测大鼠患肾,其CD31、VEGF、Ang?1以及Ang?2表达水平均明显提升。结论:VEGF165基因转染的EPCs移植治疗可以有效治疗大鼠肾脏IRI,其作用机制可能与EPCs归巢后旁分泌过量VEGF并进一步促进Ang?1、Ang?2等血管新生因子表达,从而促使肾脏血管新生有关。  相似文献   

8.
目的 构建含血管内皮生长因子165基因的重组腺病毒(Ad-VEGF165),转染血管内皮祖细胞(EPCs)后,观察其对阿霉素肾病大鼠肾脏组织学的影响.方法 用细菌内同源重组法构建含VEGF165基因的重组腺病毒Ad-VEGF165,通过PCR和Western blot鉴定所构建的腺病毒.贴壁法体外培养获得大鼠骨髓来源的EPCs,Ad-VEGF165体外转染EPCs,检测转染后目的基因的蛋白表达.大鼠阿霉素肾病模型形成过程中,尾静脉注射转染Ad-VEGF165的EPCs,在第16周时观察肾脏组织学变化.结果 PCR和Western blot证实构建的重组腺病毒含有目的基因,滴度为1.4×1010PFU/ml;培养第6天的EPCs用于Ad-VEGF165转染,转染后24 h,培养上清中VEGF蛋白表达较对照组和转染前增加.转染了VEGF165基因的EPCs移植后第12周(切肾术后16周),转染组的肾小球硬化和肾小管间质纤维化的程度明显较肾病组轻.结论 转染了VEGF165基因的EPCs可以减轻阿霉素肾病的肾小球和肾小管的损伤程度,为VEGF在慢性肾脏病治疗提供了实验基础.  相似文献   

9.
目的:探讨应用人血管内皮生长因子165 (hVEGF165)进行基因修饰的可行性,为血管化组织工程组织的构建及缺血性疾病的治疗奠定实验基础。方法:构建pcDNA3.0-VEGF165真核表达载体,利用脂质体介导转染兔骨髓间充质干细胞(MSCs),ELISA方法检测转基因MSCs的hVEGF蛋白表达情况,MTT法检测转基因MSCs表达物对血管内皮细胞增殖活性的影响,设单纯培养MSCs及pcDNA3.0转染MSCs组为对照组。结果:成功构建hVEGF真核表达载体,并成功地将其转入MSCs中;MSCs细胞在转染 pcDNA3.0-VEGF165 质粒24、48和72 h后,其培养上清中hVEGF蛋白表达量均较对照组显著升高(P<0.05),至G418筛选后12代,转基因MSCs培养上清中仍有hVEGF蛋白的表达,含2%、4%、8%、16%和32%转基因细胞培养上清的培养液均明显增加血管内皮细胞的增殖率,与对照组比较,差异均具有显著性(P<0.05)。 结论: hVEGF165基因成功地转染至MSCs中,并可进行有效地表达。  相似文献   

10.
人VEGF基因转染大鼠骨髓间充质干细胞的实验研究   总被引:2,自引:0,他引:2  
目的:建立人血管内皮生长因子165(hVEGF165)基因转染大鼠骨髓间充质干细胞的方法。方法:采用密度梯度离心-贴壁培养法获Wistar大鼠骨髓间充质干细胞(MSCs),测定其生长曲线和表面标志CD34,CD44,CD45及SH3,检测其向成骨细胞及脂肪细胞诱导分化潜能后;用脂质体介导法将pcDNA3.1-hVEGF165导入MSCs,观察转染后细胞形态和生长状况,通过RT-PCR,Western blot和ELISA鉴定VEGF在MSCs中的表达情况。结果:大鼠MSCs经检测为CD44和SH3阳性,CD45和CD34阴性,可诱导分化为成骨细胞和脂肪细胞;经RT-PCR,Western和ELISA检测证实阳离子脂质体能成功地将hVEGF。转染至大鼠MSCs,并获得有效的表达。结论:真核表达载体pcDNA3.1-VEGF165在MSCs中获有效表达。  相似文献   

11.
Background The organization and recanalization of thrombi is a dynamic and complex process. The aim of this research was to study the cotherapeutic effect of stem cell transplantation and gene transfection on chronic venous thrombosis. Methods We constructed a recombinant adenoviral vector carrying the vascular endothelial growth factor 165 (VEGF165) gene by using the pAdEasy system, which was subsequently identified and amplified. Simultaneously, endothelial progenitor cells (EPCs) were isolated from rat bone marrow using Ficoll, cultured in EBM-2MV medium, and identified. Then, the cells were transfected with the recombinant Ad-VEGF165. The EPCs were labeled with 1 ,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine (Dil) before transplantation. A rat model of chronic vein thrombosis was developed by partial ligation of the inferior vena cava. The rats were randomly divided into 4 groups (n=25, each): A, Ad-VEGF165/EPC-transplantation group received 1 ml (10^6) of Ad-VEGF165/EPCs; B, EPC-transplantation group received 1 ml (10^6) of EPCs; C, Ad/EPC-transplantation group received 1 ml (10^6) of Ad/EPCs; D, control group received 1 ml of the transplantation medium. The thrombi and adjacent caval walls were harvested 28 days after transplantation; real-time quantitative polymerase chain reaction was used to detect the expression level of vascular endothelial growth factor (VEGF) mRNA; and western blotting was used to measure changes in VEGF protein expression. Hematoxylin-eosin staining and immunohistochemical staining were performed to detect recanalization. Neovascularization was detected by immunohistochemical staining using the antibody for von Willebrand factor (vWF), which is a component of endothelial cells.The capillary density was quantitatively determined by counting the capillaries under a high-power microscope. Results The Ad-VEGF165 was constructed, and bone-marrow-derived EPCs were cultivated and successfully identified. We determined the optimum transfection ratio that promoted the growth of EPCs. After transfection, the EPCs secreted the VEGF protein. After transplantation, the in vivo survival of EPCs and their differentiation into endothelial cells were determined by detecting the fluorescence associated with the Dil stain. VEGF mRNA was expressed in groups A, B, C and D after transplantation, and the VEGF mRNA level in group A was significantly higher than those in groups B, C and D (P〈0.05); the VEGF mRNA levels in groups B and C were significantly higher than those in group D (P〈0.05), and there was no statistical significance between the VEGF mRNA levels in groups B and C. The recanalization capillary density in group A was significantly higher than those in groups B, C (P 〈0.05) and D (P 〈0.01); the recanalization capillary densities in groups B and C were significantly higher than that in group D (P 〈0.05). Moreover, there was no statistical significant difference between the values for groups B and C. Conclusions The EPCs were successfully transfected by Ad-VEGF165. A suitable transfection ratio can improve the efficiency of EPCs and the possibility of promotion of angiogenesis after transplantation. Transfected EPCs caused accelerated organization and recanalization of vein thrombi.  相似文献   

12.
评估VEGF165基因转染的内源性内皮祖细胞(EPCs)移植治疗肾脏缺血再灌注损伤(IRI)的作用,进一步完善EPCs对肾脏IRI产生保护作用的旁分泌机制。利用重组腺病毒载体Ad-VEGF165感染EPCs,并进行转染效率鉴定。并进一步移植治疗大鼠肾脏IRI,术后24h和72h分别评估血清肌酐及尿素氮水平;组织病理学检查评估各组大鼠术后肾损伤程度;Western blot检测大鼠肾脏IRI中血管内皮生长因子 (VEGF)、血管生成素-1 (Ang-1)及血管生成素-2 (Ang-2) 表达情况。结果发现利用重组腺病毒载体Ad-VEGF165转染的EPCs移植治疗后,大鼠肾脏功能明显改善,术后72h检测大鼠患肾,其内VEGF、Ang-1以及Ang-2表达水平均明显提升。因此,VEGF165基因转染的EPCs移植治疗可以有效的治疗大鼠肾脏IRI,其作用机制可能与EPCs归巢后旁分泌过量VEGF并进一步促进Ang-1、Ang-2等血管新生因子表达,从而促使肾脏血管新生有关。  相似文献   

13.
VEGF165反义RNA表达对人胃癌细胞恶性生物学行为的影响   总被引:12,自引:4,他引:8  
目的利用本室构建的反义VEGF165(血管内皮生长因子,vascular endothelial growth factor)真核表达载体,研究VEGF反义RNA表达对人胃癌细胞生物学表型的影响. 方法用阳性脂质体介导的基因转染技术,将VEGF反义RNA重组体转入人胃癌细胞系,观察转染细胞的细胞周期、增殖能力及致瘤生长情况等生物学表现. 结果 VEGF反义RNA重组体转染胃癌细胞后,斑点杂交、间接免疫荧光等分析显示,反义RNA基因转染技术可使VEGF的表达明显减弱;与未转染的细胞相比,G2/M期细胞增加(0.39),而S期细胞减少(0.54);克隆形成率(2.2%)低于未转染细胞(4.0%);肿瘤细胞接种裸鼠后33 d时,VEGF反义RNA表达人胃癌细胞所致的移植瘤体积(345±136) mm3明显小于未转染细胞所致的移植瘤体积(1534±363) mm3. 结论 VEGF反义RNA可以通过抑制肿瘤组织血管生成而防治肿瘤的生长,另外VEGF的表达可能与细胞增殖能力有关.  相似文献   

14.
Yi CG  Guo SZ  Zhang LX  Liu Z  Han Y  Xia W  Shu MG  Ai WB  Wu JH 《中华医学杂志》2005,85(7):473-478
目的探讨VEGF165基因转染血管内皮祖细胞(EPCs)移植促进缺血皮瓣的血管新生,提高皮瓣存活率。方法体外分离、培养人脐血中EPCs,利用脂质体介导血管内皮细胞生长因子165(VEGF165)基因体外转染EPCs,然后移植于裸鼠随意皮瓣,皮瓣早期断蒂。结果脐血中分离培养的EPCs表达CD34、KDR及CD133,VEGF165基因转染EPCs体外及体内检测均有VEGF165蛋白的表达。转染VEGF165基因的EPCs组和EPCs组移植裸鼠皮瓣后,EPCs整合到缺血部位新生血管中,与对照组的皮瓣存活率分别为97 2% ±2 8%、60 3% ±2 1%、34 2% ±1 8% (P<0 05 ),而且前二组毛细血管密度、血流灌注差异均有统计学意义(P<0 05),较对照组均有明显改善(P<0 05)。术后第7d时三组皮瓣中的EPCs密度分别为136个/mm2 ±10个/mm2、75个/mm2 ±6个/mm2、0个/mm2 (P<0 05 ); 第11天时EPCs密度分别为305个/mm2 ±26个/mm2、199个/mm2 ±18个/mm2、0个/mm2 (P<0 05)。结论脐血中的EPCs体外培养后移植体内可促进缺血皮瓣的血管新生,提高存活率,而转染VEGF165基因的EPCs具有更强大的促血管新生的作用。  相似文献   

15.
目的 体外诱导兔骨髓间充质干细胞向肌源性细胞分化,并观察血管内皮生长因子AdTrackCMV-hVEGF165真核表达质粒转染骨髓间充质干细胞(mesenchymal stem cells, MSCs)后的表达。方法 将20只兔随机分为对照组和实验组,从骨髓液中分离MSCs,对照组以低糖DMEM培养,实验组加用5-氮胞苷(10 mmol/L)诱导培养,第28天进行肌钙蛋白I免疫组化染色。另构建AdTrackCMV-hVEGF165真核表达质粒,通过脂质体转染对照组MSCs,用Northern blotting和Western blotting鉴定血管内皮生长因子(VEGF)的表达,并用ELISA法测定培养上清液中VEGF的浓度。结果 成功分离培养出兔MSCs,实验组经5-氮胞苷诱导后MSCs向肌源性细胞分化,肌钙蛋白I免疫组化染色阳性。成功构建AdTrackCMV-hVEGF165真核表达质粒并通过脂质体转染MSCs,Northern blotting示转染的MSCs VEGF165表达信号明显强于未转染细胞,Western blotting 示转染VEGF165基因的MSC表达VEGF,ELISA法测定培养上清液中VEGF的浓度在转染后第3天(1 011 pg/ml)和第5天(1 027 pg/ml)达高峰,此后逐渐下降,但至第13天(349 pg/ml)仍显著高于空白对照(116 pg/ml)和pAdTrackCMV组(125 pg/ml),P<0.01。结论 兔骨髓间充质干细胞可在体外向肌源性细胞分化,转染VEGF基因可表达VEGF,有望将干细胞移植和基因治疗结合以治疗缺血性心脏病。  相似文献   

16.
骨髓间充质干细胞的肌源性诱导分化及转染VEGF基因的表达   总被引:12,自引:0,他引:12  
OBJECTIVE: To induce the differentiation of rabbit bone marrow mesenchymal stem cells (MSCs) into myogenic cells in vitro, and to investigate the expression of vascular endothelial growth factor (VEGF) gene in AdTrackCMV-hVEGF165- transfected MSCs. METHODS: Twenty rabbits were divided equally into control group and experimental group, and MSCs were isolated and purified from their bone marrow by Percoll (1.073 g/ml) followed by cell culture in low-glucose DMEM supplemented with 10% fetal bovine serum. 5-azacytidine (5-Aza) was added into the cell culture of the experimental group on the third day. The expression of troponin I in MSCs was assayed by immunohistochemistry on the 28th day. AdTrackCMV- hVEGF165 eukaryotic expression vector was constructed and transfected into the MSCs, and subsequent VEGF expression was detected by Northern blotting and Western blotting while enzyme-linked immunosorbent assay (ILISA) was employed to examine the VEGF concentration in the supernatant of the culture medium. RESULTS: Following successful isolation and culture of the MSCs from rabbit bone marrow, 5-Aza-induced differentiation of the cells into myogenic cells was demonstrated by their positive staining for cardiac troponin I (cTnI). Northern blotting showed that the expression of VEGF 165 mRNA was much higher in the VEGF165 gene-transfected cells than in the control cells. Western blotting showed VEGF expression in the transfected cells. The concentration of VEGF in the supernatant mounted to the peak level 3-5 d after VEGF165 gene transfection (1,011-1,027 pg/ml) and decreased gradually thereafter, but still maintaining higher levels than those in the control group and pAdTrackCMV group (349 pg/ml vs 116 pg/ml and 125pg/ml, respectively, P<0.01). CONCLUSION: MSCs can be induced to differentiate into myogenic cells in vitro and express VEGF after VEGF gene transfection, and this success may provided a basis for combining MSC transplantation with gene therapy for regeneration of the damaged myocardial cells.  相似文献   

17.
目的: 研究血管内皮细胞生长因血管内皮细胞生长因子基因在骨髓间充质干细胞中的表达子(VEGF)基因转染兔骨髓间充质干细胞(MSCs)后的表达和分泌情况,为构建一种血供丰富、成骨能力及骨块存活能力更强的组织工程化人工颅骨奠定实验室基础。方法: 应用基因重组技术,将VEGF165基因全长片段克隆于真核表达载体pcDNA3中,构建pcDNA3-VEGF165真核表达质粒;应用阳离子脂质体介导的基因转染技术,将pcDNA3-VEGF165真核表达质粒转染进入兔骨髓间充质干细胞中;利用RT-PCR及Western blotting方法检测VEGF基因在MSCs中的表达情况。结果: 构建的真核表达质粒-pcDNA3-VEGF165经双酶切后分别在5 400 bp和600 bp处出现条带,证实其构建成 功;成功进行了兔MSCs的原代及传代培养,并建立兔MSCs库,原代细胞初为淋巴细胞样小圆细胞,此后逐渐变为圆形、梭形或不规则形,而传代细胞则变为形态更均一、排列更有序的成纤维细胞样细胞;RT-PCR及Western blotting检测到瞬时转染后的细胞有VEGF mRNA及VEGF蛋白的表达。结论: pcDNA3-VEGF165真核表达质粒通过脂质体能够有效转染兔MSCs,转染后的细胞具有表达VEGF蛋白的能力。  相似文献   

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