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Intracellular Delivery of siRNA by Polycationic Superparamagnetic Nanoparticles

机译:聚阳离子超顺磁性纳米粒子在细胞内递送siRNA

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The siRNA transfection efficiency of nanoparticles (NPs), composed of a superparamagnetic iron oxide core modified with polycationic polymers (poly(hexamethylene biguanide) or branched polyethyleneimine), were studied in CHO-K1 and HeLa cell lines. Both NPs demonstrated to be good siRNA transfection vehicles, but unmodified branched polyethyleneimine (25 kD) was superior on both cell lines. However, application of an external magnetic field during transfection (magnetofection) increased the efficiency of the superparamagnetic NPs. Furthermore, our results reveal that these NPs are less toxic towards CHO-K1 cell lines than the unmodified polycationic-branched polyethyleneimine (PEI). In general, the external magnetic field did not alter the cell’s viability nor it disrupted the cell membranes, except for the poly(hexamethylene biguanide)-modified NP, where it was observed that in CHO-K1 cells application of the external magnetic field promoted membrane damage. This paper presents new polycationic superparamagnetic NPs as promising transfection vehicles for siRNA and demonstrates the advantages of magnetofection.
机译:在CHO-K1和HeLa细胞系中研究了由聚阳离子聚合物(聚六亚甲基双胍或支链聚乙烯亚胺)修饰的超顺磁性氧化铁核组成的纳米颗粒(NPs)的siRNA转染效率。两种NP均证明是良好的siRNA转染载体,但未修饰的支链聚乙烯亚胺(25 kD)在两种细胞系中均优于。但是,在转染(磁转染)过程中施加外部磁场会提高超顺磁性NP的效率。此外,我们的结果表明,这些NP对CHO-K1细胞系的毒性要小于未修饰的聚阳离子支化聚乙烯亚胺(PEI)。通常,除了聚六亚甲基双胍修饰的NP,外部磁场不会改变细胞的生存能力,也不会破坏细胞膜,在那里,可以观察到在CHO-K1细胞中应用外部磁场促进了膜损伤。本文介绍了新的聚阳离子超顺磁性NPs作为有希望的siRNA转染载体,并证明了磁转染的优势。

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