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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Electrotransfection and Lipofection Show Comparable Efficiency for In Vitro Gene Delivery of Primary Human Myoblasts
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Electrotransfection and Lipofection Show Comparable Efficiency for In Vitro Gene Delivery of Primary Human Myoblasts

机译:电转染和脂质转染显示人类原代成肌细胞体外基因传递的可比效率。

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摘要

Transfection of primary human myoblasts offers the possibility to study mechanisms that are important for muscle regeneration and gene therapy of muscle disease. Cultured human myoblasts were selected here because muscle cells still proliferate at this developmental stage, which might have several advantages in gene therapy. Gene therapy is one of the most sought-after tools in modern medicine. Its progress is, however, limited due to the lack of suitable gene transfer techniques. To obtain better insight into the transfection potential of the presently used techniques, two non-viral transfection methods-lipofection and electroporation-were compared. The parameters that can influence transfection efficiency and cell viability were systematically approached and compared. Cultured myoblasts were transfected with the pEGFP-N1 plasmid either using Lipofectamine 2000 or with electroporation. Various combinations for the preparation of the lipoplexes and the electroporation media, and for the pulsing protocols, were tested and compared. Transfection efficiency and cell viability were inversely proportional for both approaches. The appropriate ratio of Lipofectamine and plasmid DNA provides optimal conditions for lipofection, while for electroporation, RPMI medium and a pulsing protocol using eight pulses of 2 ms at E = 0.8 kV/cm proved to be the optimal combination. The transfection efficiencies for the optimal lipofection and optimal electrotransfection protocols were similar (32 vs. 32.5 %, respectively). Both of these methods are effective for transfection of primary human myoblasts; however, electroporation might be advantageous for in vivo application to skeletal muscle.
机译:人类原代成肌细胞的转染提供了研究对肌肉再生和肌肉疾病的基因治疗很重要的机制的可能性。在这里选择培养的人类成肌细胞是因为肌肉细胞在这个发育阶段仍在增殖,这可能在基因治疗中具有许多优势。基因治疗是现代医学中最受欢迎的工具之一。然而,由于缺乏合适的基因转移技术,其进展受到了限制。为了更好地了解当前使用的技术的转染潜力,比较了两种非病毒转染方法(脂质转染和电穿孔)。系统地研究和比较了影响转染效率和细胞活力的参数。使用Lipofectamine 2000或电穿孔将pEGFP-N1质粒转染培养的成肌细胞。测试并比较了用于制备脂质体和电穿孔介质以及用于脉冲方案的各种组合。两种方法的转染效率和细胞活力成反比。 Lipofectamine和质粒DNA的适当比例为脂质转染提供了最佳条件,而对于电穿孔,RPMI培养基和使用E = 0.8 kV / cm的8个2 ms脉冲的脉冲方案被证明是最佳组合。最佳脂质转染和最佳电转染方案的转染效率相似(分别为32%对32.5%)。这两种方法均有效转染原代人成肌细胞。然而,电穿孔对于体内应用于骨骼肌可能是有利的。

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