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Nanomagnetic Gene Transfection for Non-Viral Gene Delivery in NIH 3T3 Mouse Embryonic Fibroblasts

机译:NIH 3T3小鼠胚胎成纤维细胞中非病毒基因递送的纳米磁性基因转染

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The objective of this work was to examine the potential of oscillating nanomagnetic gene transfection systems (magnefect-nano™) for improving the transfection efficiency of NIH3T3 mouse embryonic fibroblasts (MEFs) in comparison to other non-viral transfection techniques—static magnetofection™ and the cationic lipid agent, Lipofectamine 2000™. Magnetic nanoparticles (MNPs) associated with the plasmid coding for green fluorescent protein (GFP) were used to transfect NIH3T3 cells. The magnefect-nano system was evaluated for transfection efficiency, and any potential associated effects on cell viability were investigated. MNPs associated with the plasmid coding for GFP were efficiently delivered into NIH3T3 cells, and the magnefect-nano system significantly enhanced overall transfection efficiency in comparison to lipid-mediated gene delivery. MNP dosage used in this work was not found to affect the cell viability and/or morphology of the cells. Non-viral transfection using MNPs and the magnefect-nano system can be used to transfect NIH3T3 cells and direct reporter gene delivery, highlighting the wide potential of nanomagnetic gene transfection in gene therapy.
机译:该作品的目的是检查振荡纳米磁性基因转染系统的潜力(磁性纳米™),以改善NIH3T3小鼠胚胎成纤维细胞(MEFS)的转染效率与其他非病毒转染技术 - 静态磁铁™及其相比阳离子脂质剂,Lipofectamine 2000™。与用于绿色荧光蛋白(GFP)的质粒相关的磁性纳米颗粒(MNP)用于转染NiH3T3细胞。评价镁酰纳米系统进行转染效率,并研究了对细胞活力的任何潜在的相关效果。与GFP的质粒相关联的MNP有效地递送到NIH3T3细胞中,并且与脂质介导的基因递送相比,磁性纳米系统显着提高了总转染效率。未发现该作品中使用的MNP剂量影响细胞的活力和/或细胞形态。使用MNP和磁性纳米系统的非病毒转染可用于转染NiH3T3细胞和直接报告基因递送,突出纳米磁性基因转染在基因治疗中的宽大潜力。

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