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Long term expression of bicistronic vector driven by the FGF-1 IRES in mouse muscle

机译:FGF-1 IRES驱动的双顺反子载体在小鼠肌肉中的长期表达

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摘要

BackgroundElectrotransfer of plasmid DNA into skeletal muscle is a promising strategy for the delivery of therapeutic molecules targeting various muscular diseases, cancer and lower-limb ischemia. Internal Ribosome Entry Sites (IRESs) allow co-expression of proteins of interest from a single transcriptional unit. IRESs are RNA elements that have been found in viral RNAs as well as a variety of cellular mRNAs with long 5' untranslated regions. While the encephalomyocarditis virus (EMCV) IRES is often used in expression vectors, we have shown that the FGF-1 IRES is equally active to drive short term transgene expression in mouse muscle. To compare the ability of the FGF-1 IRES to drive long term expression against the EMCV and FGF-2 IRESs, we performed analyses of expression kinetics using bicistronic vectors that express the bioluminescent renilla and firefly luciferase reporter genes. Long term expression of bicistronic vectors was also compared to that of monocistronic vectors. Bioluminescence was quantified ex vivo using a luminometer and in vivo using a CCD camera that monitors luminescence within live animals.
机译:背景技术将质粒DNA电转移到骨骼肌中是一种有前景的策略,可用于靶向多种肌肉疾病,癌症和下肢缺血的治疗分子的递送。内部核糖体进入位点(IRESs)允许从单个转录单位共表达目的蛋白。 IRES是在病毒RNA以及具有长5'非翻译区的各种细胞mRNA中发现的RNA元件。尽管脑心肌炎病毒(EMCV)IRES通常用于表达载体,但我们已经证明FGF-1 IRES同样具有驱动小鼠肌肉中短期转基因表达的活性。为了比较FGF-1 IRES驱动针对EMCV和FGF-2 IRES的长期表达的能力,我们使用表达生物发光性海肾和萤火虫荧光素酶报道基因的双顺反子载体进行了表达动力学分析。还比较了双顺反子载体的长期表达与单顺反子载体的长期表达。使用发光计离体定量生物发光,使用监控活体动物发光的CCD照相机在体内定量生物发光。

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