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Enhancement of plasmid-mediated gene therapy for muscular dystrophy by directed plasmid integration

机译:通过定向质粒整合增强肌营养不良症的质粒介导的基因治疗

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Plasmid-mediated gene therapy can restore dystrophin expression in skeletal muscle in the mdx mouse, a model of Duchenne muscular dystrophy. However, sufficient long-term expression and distribution of dystrophin remain a hurdle for translating this technology into a viable treatment for Duchenne muscular dystrophy. To improve plasmid-mediated gene therapy for muscle diseases, we studied the effects of targeted plasmid integration using a phage integrase (φC31) that can mediate the integration of suitably modified plasmids into the mammalian genome. Using a luciferase expression plasmid, we monitored plasmid gene expression noninvasively in living mice by bioluminescence imaging. Coinjection of an integrase plasmid resulted in 5- to 10-fold higher levels of sustained luciferase expression. Likewise, plasmid-mediated dystrophin expression in mdx muscle was enhanced by integration. Using a combination of dystrophin and luciferase plasmids, we analyzed the functional benefit of dystrophin expression in the dystrophic muscle. The expression of dystrophin slowed the loss of luciferase expression associated with muscle degeneration, and that protection was enhanced by targeted integration of the dystrophin plasmid. In the presence of integrase, dystrophin expression was distributed along a much greater length of individual fibers, and this was associated with increased protection against degenerative changes. These data demonstrate the importance of both the level and distribution of dystrophin expression to achieve therapeutic efficacy, and that the efficacy can be enhanced by targeted plasmid integration.
机译:质粒介导的基因疗法可恢复mdx小鼠骨骼肌营养不良蛋白的表达,mdx小鼠是Duchenne肌肉营养不良的模型。然而,肌营养不良蛋白的充分长期表达和分布仍然是将该技术转化为杜兴氏肌营养不良症的可行治疗方法的障碍。为了改善针对肌肉疾病的质粒介导的基因治疗,我们研究了使用噬菌体整合酶(φC31)靶向质粒整合的效果,该噬菌体整合酶可介导适当修饰的质粒整合入哺乳动物基因组。使用荧光素酶表达质粒,我们通过生物发光成像无创地监测了活体小鼠中质粒基因的表达。整合酶质粒的共注射导致持续的荧光素酶表达水平提高了5至10倍。同样,整合后增强了质粒介导的肌营养不良蛋白在mdx肌肉中的表达。使用肌营养不良蛋白和荧光素酶质粒的组合,我们分析了肌营养不良蛋白在营养不良性肌肉中表达的功能优势。肌营养不良蛋白的表达减缓了与肌肉变性相关的荧光素酶表达的丧失,并且通过肌营养不良蛋白质粒的靶向整合增强了保护作用。在整合酶的存在下,肌营养不良蛋白的表达沿着单个纤维的更长的长度分布,这与对变性的保护作用增强有关。这些数据证明了肌营养不良蛋白表达的水平和分布对于实现治疗功效的重要性,并且可以通过靶向质粒整合来增强功效。

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