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Amphiphilic core–shell nanoparticles containing dense polyethyleneimine shells for efficient delivery of microRNA to Kupffer cells

机译:两亲核壳纳米颗粒,包含致密的聚乙烯亚胺壳,可有效将microRNA传递至Kupffer细胞

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摘要

Efficient and targeted delivery approach to transfer exogenous genes into macrophages is still a great challenge. Current gene delivery methods often result in low cellular uptake efficiency in vivo in some types of cells, especially for the Kupffer cells (KCs). In this article, we demonstrate that amphiphilic core–shell nanoparticles (NPs) consisting of well-defined hydrophobic poly(methyl methacrylate) (PMMA) cores and branched polyethyleneimine (PEI) shells (denoted as PEI@PMMA NPs) are efficient nanocarriers to deliver microRNA (miRNA)-loaded plasmid to the KCs. Average hydrodynamic diameter of PEI@ PMMA NPs was 279 nm with a narrow size distribution. The NPs also possessed positive surface charges up to +30 mV in water, thus enabling effective condensation of negatively charged plasmid DNA. Gel electrophoresis assay showed that the resultant PEI@PMMA NPs were able to completely condense miRNA plasmid at a weight ratio of 25:1 (N/P ratio equal to 45:1). The Cell Counting Kit-8 assay and flow cytometry results showed that the PEI@PMMA/miRNA NPs displayed low cytotoxicity and cell apoptosis activity against the KCs. The maximum cell transfection efficiency reached 34.7% after 48 hours, which is much higher than that obtained by using the commercial Lipofectamine™ 2000 (1.7%). Bio-transmission electron microscope observation revealed that the PEI@PMMA NPs were mainly distributed in the cytoplasm of the KCs. Furthermore, when compared to the control groups, the protein expression of target nuclear factor κB P65 was considerably inhibited (P<0.05) both in vitro and in vivo. These results demonstrate that the PEI@PMMA NPs with a unique amphiphilic core–shell nanostructure are promising nanocarriers for delivering miRNA plasmid to KCs.
机译:将外源基因转移到巨噬细胞中的有效的靶向递送方法仍然是巨大的挑战。当前的基因递送方法在某些类型的细胞中,特别是对于库普弗细胞(KCs),常常导致体内细胞吸收效率低下。在本文中,我们证明了由明确定义的疏水性聚甲基丙烯酸甲酯(PMMA)核和支链聚乙烯亚胺(PEI)壳(表示为PEI @ PMMA NP)组成的两亲核壳纳米粒子(NP)是有效的纳米载体microRNA(miRNA)加载质粒到KC。 PEI @ PMMA NP的平均流体动力学直径为279 nm,尺寸分布较窄。 NP在水中也具有高达+30 mV的正表面电荷,因此能够使负电荷的质粒DNA有效凝结。凝胶电泳分析表明,所得的PEI @ PMMA NP能够以25:1的重量比(N / P比等于45:1)完全浓缩miRNA质粒。 Cell Counting Kit-8检测和流式细胞仪分析结果表明,PEI @ PMMA / miRNA NPs对KCs的细胞毒性和细胞凋亡活性较低。 48小时后,最大细胞转染效率达到了34.7%,远高于使用商业化Lipofectamine™2000所获得的转染效率(1.7%)。生物透射电子显微镜观察表明,PEI @ PMMA NPs主要分布在KCs的细胞质中。此外,与对照组相比,在体外和体内均显着抑制了靶核因子κBP65的蛋白表达(P <0.05)。这些结果表明,具有独特的两亲核-壳纳米结构的PEI @ PMMA NP是将miRNA质粒递送至KC的有前途的纳米载体。

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