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DNA separations in microfabricated devices with automated capillary sample introduction

机译:微型设备中的DNA分离和自动毛细管样品引入

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摘要

A novel method is presented for automated injection of DNA samples into microfabricated separation devices via capillary electrophoresis. A single capillary is used to electrokinetically inject discrete plugs of DNA into an array of separation lanes on a glass chip. A computer-controlled micromanipulator is used to automate this injection process and to repeat injections into five parallel lanes several times over the course of the experiment. After separation, labeled DNA samples are detected by laser-induced fluorescence. Five serial separations of g-carboxyfluorescein (FAM)-labeled oligonucleotides in five parallel lanes are shown, resulting in the analysis of 25 samples in 25 min. It is estimated that approximately 550 separations of these same oligonucleotides could be performed in one hour by increasing the number of lanes to 37 and optimizing the rate of the manipulator movement. Capillary sample introduction into chips allows parallel separations to be continuously performed in serial, yielding high throughput and minimal need for operator intervention. [References: 20]
机译:提出了一种通过毛细管电泳自动将DNA样品注入微型分离设备的新方法。单个毛细管用于将DNA的离散塞子电动注入玻璃芯片上的分离通道阵列中。在实验过程中,使用计算机控制的微操纵器来自动执行该注射过程,并多次重复注射到五个平行泳道中。分离后,通过激光诱导的荧光检测标记的DNA样品。显示了在五个平行泳道中对g-羧基荧光素(FAM)标记的寡核苷酸进行的五个序列分离,从而在25分钟内分析了25个样品。据估计,通过将泳道数量增加到37个并优化操纵器的移动速度,可以在一小时内完成大约550个这些相同寡核苷酸的分离。将毛细管样品引入芯片后,可以连续连续进行平行分离,从而实现了高通量和极少的操作员干预。 [参考:20]

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