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Electroporation of single cells and tissues with an electrolyte-filled capillary

机译:用电解质填充的毛细管对单细胞和组织进行电穿孔

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We show how an electrolyte-filled capillary (EFC) coupled to a high-voltage power supply can be used as a versatile electroporation tool for the delivery of dyes, drugs, and biomolecules to the cytoplasm of single cells and cells in tissues. A large-voltage pulse applied across the EFC (fused silica, 30 cm long, 375-mum o.d., 30-mum i.d.) gives rise to a small electric field outside the terminus of the EFC, which causes pore formation in cell membranes and induces an electroosmotic flow of electrolyte. When the EFC contains cell-loading agents, then the electroosmotic flow delivers the agents at the site of pore formation. The combination of pore formation and delivery enables loading of materials into the cytoplasm. By patch-clamp and fluorescence microscopy, formation of pores was observed at estimated transmembrane voltages of < 85 mV with half-maximum values around 206 mV. The electroporation protocol was demonstrated by introduction of fluorogenic dyes into single NG108-15 cells, cellular processes, and small populations of cells in organotypic hippocampal cultures. Preliminary results are shown in which this protocol was employed for in vivo electroporation of ventral mesencephalon in rat brains. The technique was also used to access organelle-based detection systems inside cells. As a demonstration, 1,4,5-inositoltriphosphate was added to the electrolyte and detected by intracellular organelles in electroporated cells.
机译:我们展示了如何将填充有电解质的毛细管(EFC)与高压电源耦合,用作将染料,药物和生物分子输送到单个细胞和组织中细胞质的多功能电穿孔工具。在EFC两端施加大电压脉冲(熔融石英,长30厘米,外径375微米,内径30毫米),在EFC末端外产生一个小的电场,这会在细胞膜上形成孔并诱导电解质的电渗流。当EFC包含细胞加载剂时,电渗流会在孔形成部位递送这些试剂。孔形成和递送的结合使得能够将材料加载到细胞质中。通过膜片钳和荧光显微镜观察,在估计的跨膜电压<85 mV时观察到孔的形成,其半最大值约为206 mV。通过将荧光染料引入器官型海马培养物中的单个NG108-15细胞,细胞过程和少量细胞中,证明了电穿孔方案。显示了初步结果,其中该方案用于大鼠脑中脑中脑的体内电穿孔。该技术还用于访问细胞内部基于细胞器的检测系统。作为演示,将1,4,5-肌醇三磷酸添加到电解质中,并通过电穿孔细胞中的细胞内细胞器进行检测。

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