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碱性成纤维细胞生长因子与血管内皮生长因子在基于微载体的体外定量三维纤维蛋白血管生成系统中的血管生成协同效应

Angiogenic synergistic effect of basic fibroblast growth factor and vascular endothelial growth factor in an in vitro quantitative microcarrier-based three-dimensional fibrin angiogenesis system.

作者信息

Sun Xi-Tai, Ding Yi-Tao, Yan Xiao-Gui, Wu Ling-Yun, Li Qiang, Cheng Ni, Qiu Yu-Dong, Zhang Min-Yue

机构信息

Department of Hepatobiliary Surgery, Affiliated Gu Lou Hospital of Medical College, Hepatobiliary Research Institute, Nanjing, Jiangsu Province, China.

出版信息

World J Gastroenterol. 2004 Sep 1;10(17):2524-8. doi: 10.3748/wjg.v10.i17.2524.

Abstract

AIM

To develop an in vitro three-dimensional (3-D) angiogenesis system to analyse the capillary sprouts induced in response to the concentration ranges of basic fibroblast growth factor (bFGF) and vascular endothelial growth factor (VEGF) and to quantify their synergistic activity.

METHODS

Microcarriers (MCs) coated with human microvascular endothelial cells (HMVECs) were embedded in fibrin gel and cultured in 24-well plates with assay media. The growth factors bFGF, or VEGF, or both were added to the system. The wells (n = 8/group) were digitally photographed and the average length of capillary-like sprouts (ALS) from each microcarrier was quantitated.

RESULTS

In aprotinin-stabilized fibrin matrix, human microvascular endothelial cells on the MCs invaded fibrin, forming sprouts and capillary networks with lumina. The angiogenic effects of bFGF or VEGF were dose-dependent in the range from 10 to 40 ng/mL. At d 1, 10 ng/mL of bFGF and VEGF induced angiogenesis with an ALS of 32.13 +/- 16.6 microm and 43.75 +/- 27.92 microm, respectively, which were significantly higher than that of the control (5.88 +/- 4.45 microm, P<0.01), and the differences became more significant as the time increased. In addition, the combination of 10 ng/mL of bFGF and VEGF each induced a more significant effect than the summed effects of bFGF (10 ng/mL) alone and VEGF (10 ng/mL) alone when analyzed using SPSS system for general linear model (GLM) (P = 0.011), and that also exceeded the effects by 20 ng/mL of either bFGF or VEGF.

CONCLUSION

A microcarrier-based in vitro three-dimensional angiogenesis model can be developed in fibrin. It offers a unique system for quantitative analysis of angiogenesis. Both bFGF and VEGF exert their angiogenic effects on HMVECs synergistically and in a dose-dependent manner.

摘要

目的

建立一种体外三维(3-D)血管生成系统,以分析在不同浓度范围的碱性成纤维细胞生长因子(bFGF)和血管内皮生长因子(VEGF)作用下诱导产生的毛细血管芽,并量化它们的协同活性。

方法

将包被有人微血管内皮细胞(HMVECs)的微载体(MCs)嵌入纤维蛋白凝胶中,置于24孔板中,用测定培养基培养。向该系统中添加生长因子bFGF、VEGF或两者。对各孔(每组n = 8)进行数码拍照,并对每个微载体上类毛细血管芽的平均长度(ALS)进行定量分析。

结果

在抑肽酶稳定的纤维蛋白基质中,微载体上的人微血管内皮细胞侵入纤维蛋白,形成带有管腔的芽和毛细血管网络。bFGF或VEGF的血管生成作用在10至40 ng/mL范围内呈剂量依赖性。在第1天,10 ng/mL的bFGF和VEGF分别诱导血管生成,ALS分别为32.13±16.6微米和43.75±27.92微米,显著高于对照组(5.88±4.45微米,P<0.01),且随着时间延长差异更加显著。此外,当使用SPSS系统的一般线性模型(GLM)分析时,10 ng/mL的bFGF和VEGF联合使用诱导的效果比单独使用bFGF(10 ng/mL)和单独使用VEGF(10 ng/mL)的累加效果更显著(P = 0.011),并且也超过了20 ng/mL的bFGF或VEGF的效果。

结论

可在纤维蛋白中建立基于微载体的体外三维血管生成模型。它为血管生成的定量分析提供了一个独特的系统。bFGF和VEGF均以剂量依赖性方式协同发挥对HMVECs的血管生成作用。

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