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微型DNA分析装置中聚合酶链式反应扩增与毛细管电泳的功能集成。

Functional integration of PCR amplification and capillary electrophoresis in a microfabricated DNA analysis device.

作者信息

Woolley A T, Hadley D, Landre P, deMello A J, Mathies R A, Northrup M A

机构信息

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

出版信息

Anal Chem. 1996 Dec 1;68(23):4081-6. doi: 10.1021/ac960718q.

DOI:10.1021/ac960718q
PMID:8946790
Abstract

Microfabricated silicon PCR reactors and glass capillary electrophoresis (CE) chips have been successfully coupled to form an integrated DNA analysis system. This construct combines the rapid thermal cycling capabilities of microfabricated PCR devices (10 degrees C/s heating, 2.5 degrees C/s cooling) with the high-speed (< 120 s) DNA separations provided by microfabricated CE chips. The PCR chamber and the CE chip were directly linked through a photolithographically fabricated channel filled with hydroxyethylcellulose sieving matrix. Electrophoretic injection directly from the PCR chamber through the cross injection channel was used as an "electrophoretic valve" to couple the PCR and CE devices on-chip. To demonstrate the functionality of this system, a 15 min PCR amplification of a beta-globin target cloned in M13 was immediately followed by high-speed CE chip separation in under 120 s, providing a rapid PCR-CE analysis in under 20 min. A rapid assay for genomic Salmonella DNA was performed in under 45 min, demonstrating that challenging amplifications of diagnostically interesting targets can also be performed. Real-time monitoring of PCR target amplification in these integrated PCR-CE devices is also feasible. Amplification of the beta-globin target as a function of cycle number was directly monitored for two different reactions starting with 4 x 10(7) and 4 x 10(5) copies of DNA template. This work establishes the feasibility of performing high-speed DNA analyses in microfabricated integrated fluidic systems.

摘要

微制造的硅聚合酶链式反应(PCR)反应器与玻璃毛细管电泳(CE)芯片已成功耦合,形成了一个集成DNA分析系统。这种结构将微制造PCR设备的快速热循环能力(加热速度为10℃/秒,冷却速度为2.5℃/秒)与微制造CE芯片提供的高速(<120秒)DNA分离能力结合在一起。PCR腔室和CE芯片通过一个填充有羟乙基纤维素筛分基质的光刻制造通道直接相连。通过交叉注入通道直接从PCR腔室进行的电泳进样被用作“电泳阀”,以在芯片上耦合PCR和CE设备。为了证明该系统的功能,对克隆在M13中的β-珠蛋白靶标进行15分钟的PCR扩增后,紧接着在120秒内通过高速CE芯片进行分离,从而在20分钟内完成了快速的PCR-CE分析。在45分钟内完成了对基因组沙门氏菌DNA的快速检测,表明对于具有诊断意义的靶标的挑战性扩增也能够进行。在这些集成的PCR-CE设备中对PCR靶标扩增进行实时监测也是可行的。针对分别以4×10⁷和4×10⁵个DNA模板拷贝起始的两个不同反应,直接监测了β-珠蛋白靶标作为循环数函数的扩增情况。这项工作确立了在微制造的集成流体系统中进行高速DNA分析的可行性。

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