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Nanofountain probe electroporation (NFP-E) of single cells

机译:单细胞纳米喷泉探针电穿孔(NFP-E)

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The ability to precisely deliver molecules into single cells is of great interest to biotechnology researchers for advancing applications in therapeutics, diagnostics, and drug delivery toward the promise of personalized medicine. The use of bulk electroporation techniques for cell transfection has increased significantly in the past decade, but the technique is nonspecific and requires high voltage, resulting in variable efficiency and low cell viability. We have developed a new tool for electroporation using nanofountain probe (NFP) technology, which can deliver molecules into cells in a manner that is highly efficient and gentler to cells than bulk electroporation or microinjection. Here we demonstrate NFP electroporation (NFP-E) of single HeLa cells within a population by transfecting them with fluorescently labeled dextran and imaging the cells to evaluate the transfection efficiency and cell viability. Our theoretical analysis of the mechanism of NFP-E reveals that application of the voltage creates a localized electric field between the NFP cantilever tip and the region of the cell membrane in contact with the tip. Therefore, NFP-E can deliver molecules to a target cell with minimal effect of the electric potential on the cell. Our experiments on HeLa cells confirm that NFP-E offers single cell selectivity, high transfection efficiency (>95%), qualitative dosage control, and very high viability (92%) of transfected cells.
机译:生物技术研究人员非常关注将分子精确地递送到单个细胞中的能力,以促进其在治疗,诊断和药物递送方面的应用,从而实现个性化医学的承诺。在过去的十年中,大量电穿孔技术用于细胞转染的使用显着增加,但是该技术是非特异性的,需要高电压,导致可变效率和低细胞活力。我们开发了一种使用纳米喷泉探针(NFP)技术进行电穿孔的新工具,该工具可以以比批量电穿孔或显微注射更为高效和温和的方式将分子递送到细胞中。在这里,我们通过用荧光标记的葡聚糖转染单个HeLa细胞并对其进行成像以评估转染效率和细胞生存力,证明了群体中单个HeLa细胞的NFP电穿孔(NFP-E)。我们对NFP-E机理的理论分析表明,施加电压会在NFP悬臂尖端和与尖端接触的细胞膜区域之间产生局部电场。因此,NFP-E可以将分子传递到目标细胞的电势对细胞的影响最小。我们对HeLa细胞的实验证实,NFP-E具有单细胞选择性,高转染效率(> 95%),定性剂量控制以及转染细胞极高的生存力(92%)。

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