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首页> 外文期刊>Soft matter >Polyethylenimine-polyethyleneglycol-bis(aminoethylphosphate) nanoparticles mediated efficient DNA and siRNA transfection in mammalian cells
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Polyethylenimine-polyethyleneglycol-bis(aminoethylphosphate) nanoparticles mediated efficient DNA and siRNA transfection in mammalian cells

机译:Polyethylenimine-polyethyleneglycol-bis(aminoethylphosphate) nanoparticles mediated efficient DNA and siRNA transfection in mammalian cells

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摘要

In an attempt to circumvent toxic effects of branched polyethylenimine (bPEI, 25 kDa), it was crosslinked with varying proportions of a novel linker, PEG600-bis(aminoethylphosphate) (PaP), which resulted in the formation of nanoparticles (PPaP) in the range of 61-99 nm. These nanoparticles were found to have significantly lower toxicity in vitro than the native PEI. GFP expression in cells mediated by PPaP (8.1%)/DNA complex was found to be ~1.1-4.8 folds higher compared to GenePORTER 2?, Lipofectamine?, Superfect? and native PEI in HeLa, HEK293 and CHO cells. FACS analysis on HeLa cells revealed ~62% transfected cells, whereas, in the case of the GenePORTER 2? transfection reagent, transfected cells were found to be ~36%. Intracellular trafficking in HeLa cells showed a significant population of PPaP (8.1%) nanoparticles and their DNA complex in nucleus after 1 h of treatment. Also, efficient delivery of GFP specific siRNA resulted in ~71% suppression of the target gene. DNase protection assay revealed that ~78% of complexed DNA was protected by PPaP(8.1%) nanoparticles even after 2 h of treatment. In vivo transgene expression studies in Balb/c mice showed significantly higher expression in the spleen. The results advocate the potential of PPaP nanoparticles as efficient carriers of nucleic acids in vivo.
机译:为了规避有毒的影响25支表面(bPEI kDa)交联与不同比例的一部小说链接器,PEG600-bis (aminoethylphosphate) (PaP),导致纳米粒子的形成(PPaP)在61 - 99纳米的范围。纳米粒子被发现明显体外毒性低于本地裴。表达在细胞由PPaP (8.1%) / DNA复杂的被发现高-4.8 ~ 1.1倍相比GenePORTER 2 ?Superfect吗?细胞。转染细胞,然而,在的情况下GenePORTER 2 ?细胞被发现~ 36%。贩卖海拉细胞表现出显著PPaP(8.1%)纳米粒子及其人口在治疗后1 h核DNA复杂。同时,高效的GFP特定核交付导致~ 71%目标基因的抑制。DNase化验显示~ 78%的保护包裹DNA保护PPaP (8.1%)纳米粒子即使治疗2 h。在Balb / c小鼠体内转基因表达研究显示显著高表达脾脏。PPaP纳米颗粒的有效载体核酸在体内。

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