nanoTherics Limited, Keele University Science and Business Park, Newcastle under Lyme, Staffordshire, United Kingdom.
PLoS One. 2013 Jul 31;8(7):e69812. doi: 10.1371/journal.pone.0069812. Print 2013.
Magnetic nanoparticle-based gene transfection has been shown to be an effective, non-viral technique for delivery of both plasmid DNA and siRNA into cells in culture. It has several advantages over other non-viral delivery techniques, such as short transfection times and high cell viability. These advantages have been demonstrated in a number of primary cells and cell lines. Here we report that oscillating magnet array-based nanomagnetic transfection significantly improves transfection efficiency in both human prenatal cardiac progenitor cells and adult cardiomyocytes when compared to static magnetofection, cationic lipid reagents and electroporation, while maintaining high cell viability. In addition, transfection of adult cardiomyocytes was improved further by seeding the cells onto Collagen I-coated plates, with transfection efficiencies of up to 49% compared to 24% with lipid reagents and 19% with electroporation. These results demonstrate that oscillating nanomagnetic transfection far outperforms other non-viral transfection techniques in these important cells.
基于磁性纳米粒子的基因转染已被证明是一种有效的非病毒技术,可将质粒 DNA 和 siRNA 递送到培养细胞中。与其他非病毒递送技术相比,它具有许多优势,例如转染时间短和细胞活力高。这些优势已在许多原代细胞和细胞系中得到证实。在这里,我们报告说,与静态磁转染、阳离子脂质试剂和电穿孔相比,基于振荡磁阵列的纳米磁转染可显著提高人前体心脏祖细胞和成年心肌细胞的转染效率,同时保持高细胞活力。此外,通过将细胞接种到胶原 I 包被的平板上,可进一步提高成年心肌细胞的转染效率,与脂质试剂相比,转染效率高达 49%,而电穿孔为 19%。这些结果表明,在这些重要的细胞中,振荡纳米磁转染的效果远远优于其他非病毒转染技术。