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用于同时进行DNA扩增和检测的微制造PCR电化学装置。

Microfabricated PCR-electrochemical device for simultaneous DNA amplification and detection.

作者信息

Lee Thomas Ming-Hung, Carles Maria C, Hsing I-Ming

机构信息

Department of Chemical Engineering, Hong Kong University of Science and Technology, Hong Kong, SAR.

出版信息

Lab Chip. 2003 May;3(2):100-5. doi: 10.1039/b300799e. Epub 2003 Apr 17.

Abstract

Microfabricated silicon/glass-based devices with functionalities of simultaneous polymerase chain reaction (PCR) target amplification and sequence-specific electrochemical (EC) detection have been successfully developed. The microchip-based device has a reaction chamber (volume of 8 microl) formed in a silicon substrate sealed by bonding to a glass substrate. Electrode materials such as gold and indium tin oxide (ITO) were patterned on the glass substrate and served as EC detection platforms where DNA probes were immobilized. Platinum temperature sensors and heaters were patterned on top of the silicon substrate for real-time, precise and rapid thermal cycling of the reaction chamber as well as for efficient target amplification by PCR. DNA analyses in the integrated PCR-EC microchip start with the asymmetric PCR amplification to produce single-stranded target amplicons, followed by immediate sequence-specific recognition of the PCR product as they hybridize to the probe-modified electrode. Two electrochemistry-based detection techniques including metal complex intercalators and nanogold particles are employed in the microdevice to achieve a sensitive detection of target DNA analytes. With the integrated PCR-EC microdevice, the detection of trace amounts of target DNA (as few as several hundred copies) is demonstrated. The ability to perform DNA amplification and EC sequence-specific product detection simultaneously in a single reaction chamber is a great leap towards the realization of a truly portable and integrated DNA analysis system.

摘要

具有同时进行聚合酶链反应(PCR)靶标扩增和序列特异性电化学(EC)检测功能的微制造硅基/玻璃基器件已成功开发出来。基于微芯片的器件在硅基片中形成一个反应腔(体积为8微升),该硅基片通过与玻璃基片键合进行密封。诸如金和氧化铟锡(ITO)等电极材料被图案化在玻璃基片上,并用作固定DNA探针的EC检测平台。铂温度传感器和加热器被图案化在硅基片顶部,用于反应腔的实时、精确和快速热循环,以及通过PCR进行高效的靶标扩增。集成PCR-EC微芯片中的DNA分析首先进行不对称PCR扩增以产生单链靶标扩增子,然后在PCR产物与探针修饰电极杂交时立即进行序列特异性识别。该微器件采用了两种基于电化学的检测技术,包括金属络合物嵌入剂和纳米金颗粒,以实现对靶标DNA分析物的灵敏检测。利用集成的PCR-EC微器件,实现了对痕量靶标DNA(低至几百个拷贝)的检测。在单个反应腔中同时进行DNA扩增和EC序列特异性产物检测的能力是朝着实现真正便携式和集成化DNA分析系统迈出的一大步。

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