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首页> 外文期刊>International Journal of Pharmaceutics >Insights into the mechanism of magnetofection using MNPs-PEI/pDNA/free PEI magnetofectins.
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Insights into the mechanism of magnetofection using MNPs-PEI/pDNA/free PEI magnetofectins.

机译:使用MNPS-PEI / PDNA /自由磁性型磁性磁光探讨磁场机理。

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Magnetofection is an efficient new physical gene transfection technology. Despite its effective gene delivery capability, till now relatively little work has been conducted on the mechanism of magnetofection, especially the intracellular fates of the components of magnetofectins and their effects on magnetofection. In this study, we investigated the mechanism of magnetofection using magnetofectins that were prepared via electrostatic self-assembly of the three components: polyethyleneimine (PEI)-coated magnetic nanoparticles (MNPs-PEI), plasmid DNA (pDNA) and PEI in the free form (free PEI). TEM observation and agarose gel electrophoresis assays have indicated MNPs play the role of driving magnetofectins to the cell surface without entering into the nucleus. Confocal microscopic tracking of fluorescence-labeled PEI has shown that the free PEI (green) can be found in the nucleus but almost all of the MNPs-PEI (red) are confined in the cytoplasm in COS-7 cells 30 min post-transfection or in SPC-A1 cells 90 min post-transfection, implying that the pDNA/PEI complex must separate from MNPs-PEI before entering into the nucleus. In addition, reporter gene assays showed the magnetofectins, in which the free PEI was absent, failed to transfect SPC-A1 or COS-7 cell lines; and there was an optimal ratio of the constituents of magnectofectins to achieve optimal transfection efficiency by balancing stable complex formation and facile release of PEI/pDNA from the complex. In summary, our findings further the knowledge of magnetofection and can be helpful for the design and preparation of gene delivery vehicles for effective magnetofection.
机译:磁法是一种有效的新物理基因转染技术。尽管其有效的基因递送能力,但直到现在磁倾斜机制的工作,尤其是磁代素组分的细胞内射流及其对磁法的影响。在这项研究中,我们研究了通过三种组分的静电自组装制备的磁代理的磁倾斜机制:聚乙烯亚胺(PEI)涂覆的磁性纳米粒子(MNPS-PEI),质粒DNA(PDNA)和PEI以自由形式进行(免费PEI)。 TEM观察和琼脂糖凝胶电泳测定表明MNPS在不进入细胞核的情况下发挥驱动磁代素到细胞表面的作用。荧光标记PEI的共聚焦微观跟踪表明,可以在核中发现游离PEI(绿色),但几乎所有的MNPS-PEI(红色)被限制在COS-7细胞中的细胞质中30分钟后转染或在SPC-A1细胞中,转染后90分钟,暗示PDNA / PEI复合物必须在进入细胞核之前与MNPS-PE分开。此外,记者基因测定显示出磁代素,其中不存在游离PEI,未能转染SPC-A1或COS-7细胞系;并且通过平衡稳定的复合物形成和来自复合物的PEI / PDNA的释放来实现最佳转染效率的最佳比率。总之,我们的研究结果进一步了解磁法,并且有助于对有效磁料的基因递送车辆的设计和制备有所帮助。

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