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首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >A novel approach for gene transduction with adenovirus vector and the fibrin glue system.
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A novel approach for gene transduction with adenovirus vector and the fibrin glue system.

机译:用腺病毒载体和纤维蛋白胶系统进行基因转导的新方法。

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摘要

BACKGROUND: The fibrin glue system (FGS) consists of liquid forms of fibrinogen and thrombin and is used widely in surgery for hemostasis. In this study, as a novel and unique approach, the possibility and efficacy of locoregional gene transfer using the FGS containing an adenoviral vector was determined. MATERIALS AND METHODS: The optimum concentration of the adenoviral vector mixed with the FGS (AxCALacZ/FGS) for gene transduction was evaluated in vitro by X-gal (beta-galactosidase) staining and NIH (National Institute of Health) imaging in RCN-9, a rat colon carcinoma cell line. To determine the survival period of the adenoviral vector in the fibrin glue, RCN-9 cells were exposed to AxCALacZ/FGS after it had been incubated for various periods and the transduction efficiencies were evaluated by beta-galactosidase (beta-gal) assay. AxCALacZ/FGS was also applied in vivo to the resected site of rat liver. AxCALacZ diluted in PBS (AxCALacZ/PBS) was used as the control. The transduction efficiencies in the liver were compared by X-gal staining and beta-gal assay. RESULTS: Almost 100% transgene expression was demonstrated by the X-gal staining and NIH imaging at a concentration level greater than 1 multiplicity of infection. LacZ expression (as beta-galactosidase) revealed gene-transduced RCN-9 cells when the AxCALacZ/FGS was held for a period of less than 96 hours. The treatment with the AxCALacZ/FGS in vivo resulted in greater transgene expression than the treatment with AxCALacZ/PBS. CONCLUSION: The adenoviral vector survives and remains stable in the FGS for sufficient time for transduction to occur and AxCALacZ/FGS can efficiently transduce the target gene both in vitro and vivo.
机译:背景:纤维蛋白胶系统(FGS)由液体形式的纤维蛋白原和凝血酶组成,广泛用于止血手术。在这项研究中,作为一种新颖而独特的方法,确定了使用含有腺病毒载体的FGS进行局部基因转移的可能性和功效。材料与方法:通过X-gal(β-半乳糖苷酶)染色和NIH(美国国立卫生研究院)成像在RCN-9中体外评估与FGS(AxCALacZ / FGS)混合的腺病毒载体的最佳浓度,是大鼠结肠癌细胞系。为了确定纤维蛋白胶中腺病毒载体的存活期,将RCN-9细胞孵育了多个时期后,将其暴露于AxCALacZ / FGS中,并通过β-半乳糖苷酶(β-gal)分析评估转导效率。 AxCALacZ / FGS还体内应用到大鼠肝脏的切除部位。将在PBS中稀释的AxCALacZ(AxCALacZ / PBS)用作对照。通过X-gal染色和β-gal测定比较了肝脏中的转导效率。结果:X-gal染色和NIH成像在浓度水平大于1感染复数时证明了几乎100%的转基因表达。当将AxCALacZ / FGS保持少于96小时时,LacZ表达(作为β-半乳糖苷酶)显示了基因转导的RCN-9细胞。与用AxCALacZ / PBS处理相比,体内AxCALacZ / FGS处理导致更高的转基因表达。结论:腺病毒载体能够在FGS中存活并保持稳定,并有足够的时间进行转导,并且AxCALacZ / FGS可以在体内外有效地转导目标基因。

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