Li Ke-qiang, Li Wen-lin, Peng Shu-you, Shi Xiao-yu, Tang Hong-lin, Liu Ying-bin
Department of General Surgery, Second Affiliated Hospital, College of Medicine, Zhejiang University, Hangzhou 310009, China.
Chin Med J (Engl). 2004 Sep;117(9):1364-9.
This study was designed to obtain a recombinant retroviral vector containing the human hepatocellular carcinoma-related gene ANGPTL4 (angiopoietin-like 4) cDNA and to evaluate the anti-tumor effect of recombinant retroviral vector-mediated human ANGPTL4 gene transfection.
ANGPTL4 cDNA was cloned in vitro from normal human liver cells HL-7702 by using RT-PCR, and then subcloned into the plasmid vector pMSCV and sequenced. The retroviral plasmid vectors pMSCV-ANGPTL4, pVSV, and pGAG-POL were co-transfected into the packaging cell line 293 EBNA under mediation of lipofectamine. A high-titer retrovirus was obtained as a result, and HepG2 cells were infected with this retrovirus in vitro. Flow cytometry and fluorescence microscopy were used to detect expression of green fluorescence protein (GFP). The expression of ANGPTL4 mRNA in HepG2-ANGPTL4 cells was investigated using RT-PCR. The formation of tumors in nude mice and MTT assays were used to detect the growth of HepG2-ANGPTL4 cells in vivo and in vitro, respectively.
The cDNA sequence of the cloned ANGPTL4 gene was consistent with the recently reported sequence. Thus, the recombinant retroviral vector pMSCV-ANGPTL4 was constructed successfully. The titer of the packaged recombinant retrovirus was 1.4 x 10(6) infective viral grains/ml, and the rate of HepG2-ANGPTL4 cells expressing GFP was 68.45%, with an average intensity of fluorescence 31.67 times greater in HepG2-ANGPTL4 cells than in HepG2 cells. The expression of ANGPTL4 mRNA in HepG2-ANGPTL4 cells was higher than in HepG2-pMSCV cells (154% higher) or HepG2 cells (161% higher). The proliferation rate of HepG2-ANGPTL4 cells in vitro was obviously lower than those of HepG2-pMSCV cells and HepG2 cells (P <0.01). The mean volume and weight of tumors seeded from HepG2-ANGPTL4 cells were obviously lower than the mean volume or weight of tumors seeded from HepG2 cells and HepG2-pMSCV cells (P <0.01).
A stable ANGPTL4-transfected human liver cancer cell line HepG2-ANGPTL4 has been created. The transfer of the human ANGPTL4 gene mediated by a retroviral vector is a possibly effective approach for liver cancer therapy.
本研究旨在获得一种含有人类肝细胞癌相关基因ANGPTL4(血管生成素样4)cDNA的重组逆转录病毒载体,并评估重组逆转录病毒载体介导的人类ANGPTL4基因转染的抗肿瘤作用。
采用RT-PCR从正常人肝细胞HL-7702体外克隆ANGPTL4 cDNA,然后亚克隆至质粒载体pMSCV并测序。在脂质体介导下,将逆转录病毒质粒载体pMSCV-ANGPTL4、pVSV和pGAG-POL共转染至包装细胞系293 EBNA。结果获得了高滴度的逆转录病毒,并在体外将其感染HepG2细胞。采用流式细胞术和荧光显微镜检测绿色荧光蛋白(GFP)的表达。用RT-PCR研究HepG2-ANGPTL4细胞中ANGPTL4 mRNA的表达。分别用裸鼠体内成瘤实验和MTT法检测HepG2-ANGPTL4细胞在体内和体外的生长情况。
克隆的ANGPTL4基因的cDNA序列与最近报道的序列一致。成功构建了重组逆转录病毒载体pMSCV-ANGPTL4。包装的重组逆转录病毒滴度为1.4×10(6)感染性病毒颗粒/ml,HepG2-ANGPTL4细胞中GFP的表达率为68.45%,HepG2-ANGPTL4细胞的平均荧光强度比HepG2细胞高31.67倍。HepG2-ANGPTL4细胞中ANGPTL4 mRNA的表达高于HepG2-pMSCV细胞(高154%)或HepG2细胞(高161%)。HepG2-ANGPTL4细胞在体外的增殖率明显低于HepG2-pMSCV细胞和HepG2细胞(P<0.01)。HepG2-ANGPTL4细胞接种形成的肿瘤的平均体积和重量明显低于HepG2细胞和HepG2-pMSCV细胞接种形成的肿瘤的平均体积或重量(P<0.01)。
已建立稳定转染ANGPTL4的人肝癌细胞系HepG2-ANGPTL4。逆转录病毒载体介导的人类ANGPTL4基因转移可能是一种有效的肝癌治疗方法。