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首页> 外文期刊>RSC Advances >Enhancement of nucleic acid delivery to hard-to-transfect human colorectal cancer cells by magnetofection at laminin coated substrates and promotion of the endosomal/lysosomal escape
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Enhancement of nucleic acid delivery to hard-to-transfect human colorectal cancer cells by magnetofection at laminin coated substrates and promotion of the endosomal/lysosomal escape

机译:通过在层粘连蛋白涂覆的底物中通过磁料加强核酸输送到硬质染色人结肠直肠癌细胞的促进剂/溶酶体逸出

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摘要

Despite a great diversity of nanomaterials, such as cationic lipid, polymers or inorganic nanoparticles, that have been developed in order to carry nucleic acids across plasma membranes, these methodologies have still insufficient efficacy in cells named hard-to-transfect cells, such as the colorectal HT29 and Caco-2 cell lines. This paper describes the improvement of plasmid DNA (pDNA) and small interfering RNA (siRNA) transfer in these cells through the combination of magnetofection, a simplified extracellular matrix of laminin and endosomal/lysosomal escape promotion using the endosome-disruptive peptide INF-7. Magnetofection of pDNA complexes using selected vector formulations resulted in up to 2-fold enhancement in luciferase expression, as compared to lipofection. Further enhances in pDNA transfer in HT29 cells was obtained when magnetofection was applied on cells grown on laminin coated substrates, increasing 6-fold the luciferase expression compared to lipofection at uncoated substrates. This technique was also applied to siRNA delivery in cells expressing stably luciferase (Caco-2Luc and HT29Luc) and selected magnetic vector formulations resulted in 61 +/- 5% and 50 +/- 5% of luciferase silencing in HT29Luc and Caco-2Luc, respectively. Further improvement in reporter gene silencing was obtained when the magnetic complexes were modified with INF-7, reaching more than 95% of luciferase silencing in Caco-2Luc cells, while pre-treatment of HT29Luc cells by chloroquine resulted in 80 +/- 4% of down regulation of luciferase expression. Thus, magnetofection applied on cells grown over laminin coated substrates and the optimization of endosomal escape of magnetic complexes would be a good alternative to enhance nucleic acid transfer in hard-to-transfect colorectal cancer cells.
机译:尽管已经为了跨越质膜携带核酸被开发的纳米材料,如阳离子脂质,聚合物或无机纳米颗粒,有很大的多样性,这些方法在名为难以转染细胞的细胞,例如功效仍不够结肠HT29和Caco-2细胞系。本文描述的质粒DNA(pDNA的),并在这些细胞中的小干扰RNA(siRNA)转移的改进通过磁转的结合,使用内体破坏性肽INF-7层粘连蛋白和胞内体/溶酶体逃逸促进简化细胞外基质。使用所选择的矢量制剂pDNA复合的磁转导致高达2倍的增强在萤光素酶表达,与脂转染。当生长在层粘连蛋白涂布的基底细胞施加磁转得到了在HT29细胞中的pDNA转印进一步提高,增加了相对于未涂覆在基材脂转染6倍的荧光素酶表达。这种技术也适用于siRNA递送在稳定地表达荧光素酶(的Caco-2Luc和HT29Luc)细胞和选定的磁矢量的制剂导致61 +/- 5%和荧光素酶沉默的50 +/- 5%的HT29Luc和的Caco-2Luc,分别。当磁性复合物用INF-7修饰的,达到的Caco-2Luc细胞荧光素酶沉默的95%以上而获得的报道基因沉默进一步的改进,同时通过氯喹预处理HT29Luc细胞的结果为80 +/- 4%的荧光素酶表达的下调。因此,磁转施加在生长在层粘连蛋白涂布的基底细胞和磁性复合物的内体逃逸的优化将是一个很好的选择,以提高在难以转染结肠直肠癌细胞的核酸转移。

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  • 来源
    《RSC Advances》 |2015年第72期|共10页
  • 作者单位

    Natl Atom Energy Commiss Lab Nanomed Buenos Aires DF Argentina;

    Natl Atom Energy Commiss Lab Nanomed Buenos Aires DF Argentina;

    Tech Univ Munich Inst Expt Oncol &

    Therapy Res Munich Germany;

    Consejo Nacl Invest Cient &

    Tecn CONICET Buenos Aires DF Argentina;

    Consejo Nacl Invest Cient &

    Tecn CONICET Buenos Aires DF Argentina;

    Tech Univ Munich Inst Expt Oncol &

    Therapy Res Munich Germany;

    Tech Univ Munich Inst Expt Oncol &

    Therapy Res Munich Germany;

    Natl Atom Energy Commiss Lab Nanomed Buenos Aires DF Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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