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首页> 外文期刊>Acta Biochimica Polonica >Construction of a bicistronic proangiogenic expression vector and its application in experimental angiogenesis in vivo
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Construction of a bicistronic proangiogenic expression vector and its application in experimental angiogenesis in vivo

机译:双顺反子促血管生成表达载体的构建及其在体内实验性血管生成中的应用

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摘要

Manipulation of angiogenesis in vivo is an example of successful gene therapy strategies. Overexpression of angiogenic genes like VEGF, FGF or PDGF causes new vessel formation and improves the clinical state of patients. Gene therapy is a very promising procedure but requires large amounts of pharmaceutical-grade plasmid DNA. In this regard we have constructed a bicistronic plasmid DNA vector encoding two proangiogenic factors, VEGF165 and FGF-2. The construct (pVIF) contains the internal ribosome entry site (IRES) of the encephalomyocarditis virus (ECMV) which permits both genes to be translated from a single bicistronic mRNA. The IRES sequence allows for a high efficiency of gene expression in vivo. The pVIF vector was characterized in vitro and in vivo. In vivo angiogenesis studies showed that the bicistronic vector encoding two proangiogenic factors induces the formation of new vessels significantly more than pVEGF165 or pFGF-2 alone. In our opinion the combined proangiogenic approach with VEGF165 and FGF-2 is more powerful and efficient than single gene therapy. We also postulate that IRES sequence can serve as a useful device improving efficiency of gene therapy.
机译:体内血管生成的操纵是成功的基因治疗策略的一个例子。血管生成基因如VEGF,FGF或PDGF的过度表达会导致新的血管形成,并改善患者的临床状态。基因疗法是非常有前途的方法,但是需要大量的药物级质粒DNA。在这方面,我们已经构建了编码两个促血管生成因子VEGF165和FGF-2的双顺反子质粒DNA载体。构建体(pVIF)包含脑心肌炎病毒(ECMV)的内部核糖体进入位点(IRES),该位点允许两个基因从单个双顺反子mRNA进行翻译。 IRES序列允许体内高效基因表达。在体外和体内对pVIF载体进行了表征。体内血管生成研究表明,编码两个促血管生成因子的双顺反子载体比单独的pVEGF165或pFGF-2诱导新血管形成的能力要大得多。我们认为与VEGF165和FGF-2组合的促血管生成方法比单基因治疗更有效。我们还假定IRES序列可以用作提高基因治疗效率的有用设备。

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