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Nanostraw-electroporation system for highly efficient intracellular delivery and transfection

机译:纳米秸秆电穿孔系统可实现高效的细胞内递送和转染

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摘要

Nondestructive introduction of genes, proteins, and small molecules into mammalian cells with high efficiency is a challenging, yet critical, process. Here we demonstrate a simple nanoelectroporation platform to achieve highly efficient molecular delivery and high transfection yields with excellent uniformity and cell viability. The system is built on alumina nanostraws extending from a track-etched membrane, forming an array of hollow nanowires connected to an underlying microfluidic channel. Cellular engulfment of the nanostraws provides an intimate contact, significantly reducing the necessary electroporation voltage and increasing homogeneity over a large area. Biomolecule delivery is achieved by diffusion through the nanostraws and enhanced by electrophoresis during pulsing. The system was demonstrated to offer excellent spatial, temporal, and dose control for delivery, as well as providing high-yield cotransfection and sequential transfection.
机译:将基因,蛋白质和小分子无损地高效导入哺乳动物细胞是一个具有挑战性但至关重要的过程。在这里,我们展示了一个简单的纳米电穿孔平台,可实现高效的分子递送和高转染率,并具有出色的均匀性和细胞活力。该系统建立在从轨迹蚀刻膜延伸的氧化铝纳米吸管上,形成连接到下面的微流体通道的空心纳米线的阵列。纳米吸管的细胞吞噬提供了紧密的接触,显着降低了必需的电穿孔电压并在大面积上提高了均一性。通过穿过纳米吸管的扩散来实现生物分子的输送,并在脉冲过程中通过电泳来增强生物分子的输送。该系统被证明可以为递送提供出色的空间,时间和剂量控制,并提供高产量的共转染和顺序转染。

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