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Improving Magnetofection of Magnetic Polyethylenimine Nanoparticles into MG-63 Osteoblasts Using a Novel Uniform Magnetic Field

机译:使用新型均匀磁场改善磁性聚乙烯亚胺纳米粒子磁化成MG-63成骨细胞。

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摘要

This study aimed to improve the magnetofection of MG-63 osteoblasts by integrating the use of a novel uniform magnetic field with low molecular weight polyethylenimine modified superparamagnetic iron oxide nanoparticles (PEI-SPIO-NPs). The excellent characteristics of PEI-SPIO-NPs such as size, zeta potential, the pDNA binding and protective ability were determined to be suitable for gene delivery. The novel uniform magnetic field enabled polyethylenimine-modified superparamagnetic iron oxide nanoparticles/pDNA complexes (PEI-SPIO-NPs/pDNA complexes) to rapidly and uniformly distribute on the surface of MG-63 cells, averting local transfection and decreasing disruption of the membrane caused by the centralization of positively charged PEI-SPIO-NPs, thereby increasing the effective coverage of magnetic gene carriers during transfection, and improving magnetofection efficiency. This innovative uniform magnetic field can be used to determine the optimal amount between PEI-SPIO-NPs and pDNA, as well as screen for the optimal formulation design of magnetic gene carrier under the homogenous conditions. Most importantly, the novel uniform magnetic field facilitates the transfection of PEI-SPIO-NPs/pDNA into osteoblasts, thereby providing a novel approach for the targeted delivery of therapeutic genes to osteosarcoma tissues as well as a reference for the treatment of other tumors.
机译:这项研究旨在通过将新型均匀磁场与低分子量聚乙烯亚胺修饰的超顺磁性氧化铁纳米粒子(PEI-SPIO-NPs)整合使用,改善MG-63成骨细胞的磁化效应。确定PEI-SPIO-NP的优异特性,例如大小,ζ电位,pDNA结合和保护能力适合于基因递送。新颖的均匀磁场使聚乙烯亚胺修饰的超顺磁性氧化铁纳米颗粒/ pDNA复合物(PEI-SPIO-NPs / pDNA复合物)迅速且均匀地分布在MG-63细胞的表面上,避免了局部转染并减少了引起的膜破坏通过使带正电的PEI-SPIO-NPs集中化,从而增加了转染过程中磁性基因载体的有效覆盖范围,并提高了磁转染效率。这种创新的均匀磁场可用于确定PEI-SPIO-NP和pDNA之间的最佳量,以及在同质条件下筛选磁性基因载体的最佳制剂设计。最重要的是,新颖的均匀磁场有助于将PEI-SPIO-NPs / pDNA转染到成骨细胞中,从而为靶向治疗基因向骨肉瘤组织的靶向递送提供了一种新颖的方法,并为其他肿瘤的治疗提供了参考。

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