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用于超高通量基因分析的微制造384通道毛细管阵列电泳生物分析仪。

Microfabricated 384-lane capillary array electrophoresis bioanalyzer for ultrahigh-throughput genetic analysis.

作者信息

Emrich Charles A, Tian Huijun, Medintz Igor L, Mathies Richard A

机构信息

Department of Chemistry, University of California, Berkeley 94720, USA.

出版信息

Anal Chem. 2002 Oct 1;74(19):5076-83. doi: 10.1021/ac020236g.

Abstract

A microfabricated 384-lane capillary array electrophoresis device is developed and utilized for massively parallel genetic analysis. The 384 capillary lanes, arrayed radially about the center of a 200-mm-diameter glass substrate sandwich, are constructed using scalable microfabrication techniques derived from the semiconductor industry. Samples are loaded into reservoirs on the perimeter of the wafer, separated on the 8-cm-long poly(dimethylacrylamide) gel-filled channels, and detected with a four-color rotary confocal fluorescence scanner. The performance and throughput of this bioanalyzer are demonstrated by simultaneous genotyping 384 individuals for the common hemochromatosis-linked H63D mutation in the human HFE gene in only 325 s. This lab-on-a-chip device thoroughly exploits the power of microfabrication to produce high-density capillary electrophoresis arrays and to use them for high-throughput bioanalysis.

摘要

一种微制造的384通道毛细管阵列电泳装置被开发出来并用于大规模平行基因分析。384个毛细管通道围绕着一个直径200毫米的玻璃基板夹层的中心呈放射状排列,采用源自半导体行业的可扩展微制造技术构建而成。样品被加载到晶圆周边的储液器中,在8厘米长的填充有聚(二甲基丙烯酰胺)凝胶的通道上进行分离,并用四色旋转共聚焦荧光扫描仪进行检测。仅在325秒内就对384名个体进行了人类HFE基因中常见的血色素沉着症相关H63D突变的基因分型,从而证明了这种生物分析仪的性能和通量。这种芯片实验室装置充分利用了微制造的能力,以生产高密度毛细管电泳阵列并将其用于高通量生物分析。

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