Department of Medicine, Imperial College London, Hammersmith Hospital, Du Cane Road, London, W12 0NN, UK.
Department of Materials, Royal School of Mines, Prince Consort Road, London, SW7 2AZ, UK.
Adv Mater. 2019 Mar;31(12):e1806788. doi: 10.1002/adma.201806788. Epub 2019 Jan 24.
Owing to their ability to efficiently deliver biological cargo and sense the intracellular milieu, vertical arrays of high aspect ratio nanostructures, known as nanoneedles, are being developed as minimally invasive tools for cell manipulation. However, little is known of the mechanisms of cargo transfer across the cell membrane-nanoneedle interface. In particular, the contributions of membrane piercing, modulation of membrane permeability and endocytosis to cargo transfer remain largely unexplored. Here, combining state-of-the-art electron and scanning ion conductance microscopy with molecular biology techniques, it is shown that porous silicon nanoneedle arrays concurrently stimulate independent endocytic pathways which contribute to enhanced biomolecule delivery into human mesenchymal stem cells. Electron microscopy of the cell membrane at nanoneedle sites shows an intact lipid bilayer, accompanied by an accumulation of clathrin-coated pits and caveolae. Nanoneedles enhance the internalization of biomolecular markers of endocytosis, highlighting the concurrent activation of caveolae- and clathrin-mediated endocytosis, alongside macropinocytosis. These events contribute to the nanoneedle-mediated delivery (nanoinjection) of nucleic acids into human stem cells, which distribute across the cytosol and the endolysosomal system. This data extends the understanding of how nanoneedles modulate biological processes to mediate interaction with the intracellular space, providing indications for the rational design of improved cell-manipulation technologies.
由于其高效传递生物货物和感知细胞内环境的能力,垂直排列的高纵横比纳米结构,即纳米针,正被开发为用于细胞操作的微创工具。然而,对于货物穿过细胞膜-纳米针界面的转移机制知之甚少。特别是,膜穿孔、膜通透性调节和胞吞作用对货物转移的贡献在很大程度上仍未得到探索。在这里,通过结合最先进的电子和扫描离子电导显微镜与分子生物学技术,表明多孔硅纳米针阵列同时刺激独立的胞吞途径,有助于增强生物分子递送到人骨髓间充质干细胞中。在纳米针位点的细胞膜的电子显微镜显示出完整的脂质双层,伴随着网格蛋白包被的陷窝和小窝的积累。纳米针增强了胞吞作用的生物分子标记物的内化,突出了小窝和网格蛋白介导的胞吞作用的同时激活,以及巨胞饮作用。这些事件有助于纳米针介导的(纳米注射)将核酸递送到人干细胞中,这些核酸分布在细胞质和内体溶酶体系统中。该数据扩展了对纳米针如何调节生物过程以介导与细胞内空间相互作用的理解,为改进细胞操作技术的合理设计提供了指示。