Cheng Hai, Xu Kai-Lin, Sun Hai-Ying, Lu Qun-Xian, He Xu-Peng, Pan Xiu-Ying
Department of Hematology, Affiliated Hospital of Xuzhou Medical College, Xuzhou 221002, China.
Zhonghua Xue Ye Xue Za Zhi. 2009 Mar;30(3):166-70.
To construct a recombinant lentiviral vector (pXZ208-BDDhFVIII) mediating B-domain-deleted human coagulation factor VIII (BDDhFVIII) gene and investigate its expression in HLF, Chang-Liver and MSC cells.
BDDhFVIII gene fragment was separated by endonuclease digestion and was cloned into the multiple cloning sites of pXZ208 to construct a recombinant lentiviral vector pXZ208-BDDhFVIII. Viral particles were prepared by means of three-plasmid cotransfection of 293T package cells by calcium phosphate precipitation. After infection, the coagulant activity of human FVIII in the culture medium of 293T, HLF, Chang-Liver and MSC cells was assayed by one-stage method. The gene transduction efficiency was assayed by flow cytometry (FCM). Furthermore, PCR was performed to test the integration of BDDhFVIII.
The infection rates of HLF, Chang-Liver and MSC were (74.52 +/- 7.57)%, (27.24 +/- 6.53)% and (42.34 +/- 5.84)% respectively. The activities of FVIII in supernatants of HLF, Chang-Liver and MSC were (54.1 +/- 5.6)%, (22.5 +/- 2.9)% and (12.5 +/- 2.7)% respectively. BDDhFVIII gene integration was detected in all the infected cells.
The recombinant lentiviral vector pXZ208-BDDhFVIII was successfully constructed and efficiently integrated into target cells to express human FVIII activity in vitro.
构建介导B结构域缺失的人凝血因子VIII(BDDhFVIII)基因的重组慢病毒载体(pXZ208-BDDhFVIII),并研究其在人肺成纤维细胞(HLF)、Chang-Liver细胞和间充质干细胞(MSC)中的表达情况。
通过内切酶消化分离BDDhFVIII基因片段,并将其克隆到pXZ208的多克隆位点,构建重组慢病毒载体pXZ208-BDDhFVIII。采用磷酸钙沉淀法对293T包装细胞进行三质粒共转染制备病毒颗粒。感染后,采用一步法检测293T、HLF、Chang-Liver和MSC细胞培养基中人FVIII的凝血活性。通过流式细胞术(FCM)检测基因转导效率。此外,进行PCR检测BDDhFVIII的整合情况。
HLF、Chang-Liver和MSC的感染率分别为(74.52±7.57)%、(27.24±6.53)%和(42.34±5.84)%。HLF、Chang-Liver和MSC上清液中FVIII的活性分别为(54.1±5.6)%、(22.5±2.9)%和(12.5±2.7)%。在所有感染细胞中均检测到BDDhFVIII基因整合。
成功构建了重组慢病毒载体pXZ208-BDDhFVIII,其能有效整合到靶细胞中并在体外表达人FVIII活性。