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Nanocapillary electrophoretic electrochemical chip: towards analysis of biochemicals released by single cells

机译:纳米毛细管电泳电化学芯片:用于分析单细胞释放的生物化学物质

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摘要

A novel nanocapillary electrophoretic electrochemical (Nano-CEEC) chip has been developed to demonstrate the possibility of zeptomole-level detection of neurotransmitters released from single living cells. The chip integrates three subunits to collect and concentrate scarce neurotransmitters released from single PC-12 cells, including a pair of targeting electrodes for single cells captured by controlling the surface charge density; a dual-asymmetry electrokinetic flow device for sample collection, pre-concentration and separation in a nanochannel; and an online electrochemical detector for zeptomole-level sample detection. This Nano-CEEC chip integrates a polydimethylsiloxane microchannel for cell sampling and biomolecule separation and a silicon dioxide nanochannel for sample pre-concentration and amperometric detection. The cell-capture voltage ranges from 0.1 to 1.5 V with a frequency of 1–10 kHz for PC-12 cells, and the single cell-capture efficiency is optimized by varying the duration of the applied field. All of the processes, from cell sampling to neurotransmitter detection, can be completed within 15 min. Catecholamines, including dopamine and norepinephrine (noradrenaline) released from coupled single cells, have been successfully detected using the Nano-CEEC chip. A detection limit of 30–75 zeptomoles was achieved, which is close to the levels released by a single neuron in vitro.
机译:已开发出一种新型的纳米毛细管电泳电化学(Nano-CEEC)芯片,以证明从单个活细胞释放的神经递质的分子水平检测的可能性。该芯片集成了三个亚基,以收集和浓缩从单个PC-12细胞释放的稀有神经递质,包括一对通过控制表面电荷密度捕获单个细胞的靶向电极。用于在纳米通道中收集,预浓缩和分离样品的双不对称电动流动装置;在线化学检测仪,用于检测分子水平的样品。该Nano-CEEC芯片集成了用于细胞采样和生物分子分离的聚二甲基硅氧烷微通道以及用于样品预浓缩和安培检测的二氧化硅纳米通道。对于PC-12电池,电池捕获电压的范围为0.1至1.5 V,频率为1-10 kHz,并且通过改变施加电场的持续时间来优化单电池捕获效率。从细胞采样到神经递质检测的所有过程都可以在15分钟内完成。使用Nano-CEEC芯片已成功检测到从耦合单细胞释放的儿茶酚胺,包括多巴胺和去甲肾上腺素(去甲肾上腺素)。检出限为30-75个Zeptomoles,接近单个神经元在体外释放的水平。

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