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Poking cells for efficient vector-free intracellular delivery

机译:戳细胞以实现有效的无载体细胞内递送

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Techniques for introducing foreign molecules and materials into living cells are of great value in cell biology research. A major barrier for intracellular delivery is to cross the cell membrane. Here we demonstrate a novel platform utilizing diamond nanoneedle arrays to facilitate efficient vector-free cytosolic delivery. Using our technique, cellular membrane is deformed by an array of nanoneedles with a force on the order of a few nanonewtons. We show that this technique is applicable to deliver a broad range of molecules and materials into different types of cells, including primary neurons in adherent culture. Especially, for delivering plasmid DNAs into neurons, our technique produces at least eightfold improvement (~45% versus ~1–5%) in transfection efficiency with a dramatically shorter experimental protocol, when compared with the commonly used lipofection approach. It is anticipated that our technique will greatly benefit basic research in cell biology and also a wide variety of clinical applications.
机译:将异物和材料引入活细胞的技术在细胞生物学研究中具有重要价值。细胞内传递的主要障碍是穿过细胞膜。在这里,我们演示了利用金刚石纳米针阵列来促进有效的无载体胞质递送的新型平台。使用我们的技术,细胞膜通过纳米针阵列以几纳米牛顿的力变形。我们表明,该技术适用于将各种分子和材料输送到不同类型的细胞中,包括贴壁培养中的原代神经元。尤其是,为了将质粒DNA传递到神经元中,与常用的脂质转染方法相比,我们的技术在转染效率方面提高了至少八倍(〜45%对〜1-5%),并且实验步骤大大缩短。预计我们的技术将极大地有益于细胞生物学的基础研究以及广泛的临床应用。

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