Institute of Genomics and Integrative Biology, Delhi University Campus, Delhi, India.
Nanomedicine. 2010 Apr;6(2):344-54. doi: 10.1016/j.nano.2009.07.007. Epub 2009 Aug 20.
Branched polyethylenimine (PEI; 25 kDa) as a nonviral vector exhibits high transfection efficiency and is a potential candidate for efficient gene delivery. However, the cytotoxicity of PEI limits its application in vivo. PEI was ionically interacted with hexametaphosphate, a compact molecule with high anionic charge density, to obtain nanoparticles (PEI-HMP). Nanoparticles were assessed for their efficacy in protecting complexed DNA against nucleases. The intracellular trafficking of nanoparticles was monitored by confocal microscopy. The cytotoxicity and transfection efficiency of PEI-HMP nanoparticles were evaluated in vitro. In vitro transfection efficiency of PEI-HMP (7.7%) was approximately 1.3- to 6.4-folds higher than that of the commercial reagents GenePORTER 2, Fugene, and Superfect. Also, PEI-HMP (7.7%) delivered green fluorescent protein (GFP)-specific small interfering ribonucleic acid (siRNA) in culture cells leading to >80% suppression in GFP gene expression. PEI-HMP nanoparticles protected complexed DNA against DNase for at least 2 hours. A time-course uptake of PEI-HMP (7.7%) nanoparticles showed the internalization of nanoparticles inside the cell nucleus in 2 hours. Thus, PEI-HMP nanoparticles efficiently transfect cells with negligible cytotoxicity and show great promise as nonviral vectors for gene delivery.
Branched polyethylenimine (PEI) as a non-viral vector exhibits high transfection efficiency for gene delivery, but its cytotoxicity limits its applications. PEI hexametaphosphate nanoparticles (PEI-HMP) demonstrated a 1.3-6.4 folds higher transfection rate compared to commercial reagents. Overall, PEI-HMP nanoparticles efficiently transfect cells with negligible cytotoxicity and show great promise as non-viral vectors for gene delivery.
支化聚乙烯亚胺(PEI;25 kDa)作为一种非病毒载体,具有很高的转染效率,是一种很有前途的高效基因传递载体。然而,PEI 的细胞毒性限制了其在体内的应用。PEI 与六偏磷酸钠(一种具有高阴离子电荷密度的紧凑分子)离子相互作用,得到纳米颗粒(PEI-HMP)。评估了纳米颗粒保护复合物 DNA 免受核酸酶作用的效果。通过共焦显微镜监测纳米颗粒的细胞内运输。评估了 PEI-HMP 纳米颗粒的细胞毒性和转染效率。体外转染效率约为 7.7%,比商业试剂 GenePORTER 2、Fugene 和 Superfect 高 1.3-6.4 倍。此外,PEI-HMP(7.7%)在培养细胞中递送绿色荧光蛋白(GFP)特异性小干扰核糖核酸(siRNA),导致 GFP 基因表达抑制超过 80%。PEI-HMP 纳米颗粒至少可保护复合物 DNA 免受 DNase 作用 2 小时。PEI-HMP(7.7%)纳米颗粒的摄取时间进程显示,纳米颗粒在 2 小时内被内化到细胞核内。因此,PEI-HMP 纳米颗粒可有效地转染细胞,且细胞毒性可忽略不计,有望成为非病毒基因传递载体。
支化聚乙烯亚胺(PEI)作为一种非病毒载体,具有很高的基因传递转染效率,但细胞毒性限制了其应用。PEI 六偏磷酸钠纳米颗粒(PEI-HMP)的转染率比商业试剂高 1.3-6.4 倍。总的来说,PEI-HMP 纳米颗粒可有效地转染细胞,且细胞毒性可忽略不计,有望成为非病毒基因传递载体。