Sheng Xiao-gang, Feng Jian-zhang, Wu Shulin, Jin Li-jun, Yu Xi-yong, Zhang Bin
Department of Cardiology, Guangdong Provincial Cardiovascular Institute, Guangzhou 510100, China.
Di Yi Jun Yi Da Xue Xue Bao. 2004 Mar;24(3):290-4.
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.
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.
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).
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.
体外诱导兔骨髓间充质干细胞(MSCs)向成肌细胞分化,并研究AdTrackCMV-hVEGF165转染的MSCs中血管内皮生长因子(VEGF)基因的表达。
将20只兔平均分为对照组和实验组,采用Percoll(1.073 g/ml)从兔骨髓中分离并纯化MSCs,然后在添加10%胎牛血清的低糖DMEM中进行细胞培养。实验组在培养第3天加入5-氮杂胞苷(5-Aza)。第28天采用免疫组织化学法检测MSCs中肌钙蛋白I的表达。构建AdTrackCMV-hVEGF165真核表达载体并转染入MSCs,随后采用Northern印迹法和Western印迹法检测VEGF的表达,同时采用酶联免疫吸附测定(ELISA)检测培养基上清液中VEGF的浓度。
成功从兔骨髓中分离培养出MSCs后,5-Aza诱导的细胞向成肌细胞分化表现为心肌肌钙蛋白I(cTnI)染色阳性。Northern印迹法显示,VEGF165基因转染细胞中VEGF 165 mRNA的表达明显高于对照细胞。Western印迹法显示转染细胞中有VEGF表达。VEGF165基因转染后3-5 d,上清液中VEGF浓度达到峰值水平(1011-1027 pg/ml),此后逐渐下降,但仍维持在高于对照组和pAdTrackCMV组的水平(分别为349 pg/ml、116 pg/ml和125 pg/ml,P<0.01)。
MSCs可在体外诱导分化为成肌细胞,VEGF基因转染后可表达VEGF,这一成功可能为MSCs移植与基因治疗相结合用于受损心肌细胞再生提供依据。