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首页> 外文期刊>Analytical and Bioanalytical Chemistry >A microchip-based endothelium mimic utilizing open reservoirs for cell immobilization and integrated carbon ink microelectrodes for detection
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A microchip-based endothelium mimic utilizing open reservoirs for cell immobilization and integrated carbon ink microelectrodes for detection

机译:基于微芯片的内皮细胞模拟物,利用开放式储存池进行细胞固定,并使用集成的碳墨水微电极进行检测

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This paper describes the fabrication and characterization of a microfluidic device that utilizes a reservoir-based approach for endothelial cell immobilization and integrated embedded carbon ink microelectrodes for the amperometric detection of extracellular nitric oxide (NO) release. The design utilizes a buffer channel to continuously introduce buffer or a plug of stimulant to the reservoir as well as a separate sampling channel that constantly withdraws buffer from the reservoir and over the microelectrode. A steel pin is used for both the fluidic connection to the sampling channel and to provide a quasi-reference electrode for the carbon ink microelectrode. Characterization of the device was performed using NO standards produced from a NONOate salt. Finally, NO release from a layer of immobilized endothelial cells was monitored and quantified using the system. This system holds promise as a means to electrochemically detect extracellular NO release from endothelial cells in either an array of reservoirs or concurrently with fluorescence-based intracellular NO measurements.
机译:本文介绍了微流控设备的制造和表征,该设备利用基于储层的内皮细胞固定方法和集成的嵌入式碳墨水微电极进行安培检测细胞外一氧化氮(NO)释放。该设计利用缓冲液通道将缓冲液或刺激物塞连续引入储液罐,并利用独立的采样通道不断从储液罐和微电极上方抽出缓冲液。钢销既用于与采样通道的流体连接,又用于为碳墨微电极提供准参比电极。使用由NONOate盐制得的NO标准品对设备进行表征。最后,使用该系统监测并定量从固定化内皮细胞层释放的NO。该系统有望以电化学方式检测一系列储库中的内皮细胞释放的细胞外NO,或与基于荧光的细胞内NO测量同时进行。

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