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首页> 外文期刊>Journal of Laboratory Automation >Coupling Microdialysis Sampling to Microchip Electrophoresis in a Reversibly Sealed Device
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Coupling Microdialysis Sampling to Microchip Electrophoresis in a Reversibly Sealed Device

机译:在可逆密封设备中将微透析采样与微芯片电泳耦合

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In this article, we describe the fabrication and characterization of a reversibly sealed microchip device that is used to couple microdialysis sampling to microchip electrophoresis. The ability to interface microdialysis sampling and microchip electrophoresis in a device that is amenable to reversible sealing is advantageous from a repeated use standpoint. Commercially, available tubing coming from the microdialysis probe is directly inserted into the chip and flow from the probe is interfaced to the electrophoresis portion of the device through integrated pneumatic valves. Fluorescence detection was used to characterize the poly(dimethylsiloxane)-based device in terms of injection reproducibility. It was found that the entire system (microdialysis probe and microchip device) has a concentration response lag time of 170 s. Microdialysis sampling followed by an electrophoretic separation of amino acids derivatized with naphthalene-2,3-dicarboxaldehyde/cyanide was also demonstrated.
机译:在本文中,我们描述了可逆密封微芯片设备的制造和表征,该设备用于将微透析样品耦合到微芯片电泳。从可重复使用的观点出发,在适于可逆密封的装置中使微透析取样和微芯片电泳对接的能力是有利的。商业上,来自微透析探针的可用管直接插入芯片中,并且来自探针的流通过集成的气动阀与设备的电泳部分连接。荧光检测被用来表征基于注射重现性的聚二甲基硅氧烷基器件。发现整个系统(微透析探针和微芯片设备)的浓度响应滞后时间为170 s。还证明了微透析取样,然后电泳分离了用萘-2,3-二二甲醛/氰化物衍生的氨基酸。

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