Dettloff Roger, Yang Esther, Rulison Aaron, Chow Andrea, Farinas Javier
Caliper Life Sciences, 605 Fairchild Drive, Mountain View, California 94024, USA.
Anal Chem. 2008 Jun 1;80(11):4208-13. doi: 10.1021/ac800339w. Epub 2008 May 7.
A microfluidic device was developed that enabled rapid polymerase chain reaction (PCR) analysis of individual DNA molecules. The device combined a means for accessing samples serially from a microtiter plate, channels for assembling eight parallel PCR reactions, and integrated resistive heaters for rapid thermocycling (>5 degrees C/s heating, >7 degrees C/s cooling) of samples as they flowed continuously through PCR channels. Amplification was monitored by fluorescence detection of Taqman probes. The long, narrow channels (10 microm x 180 microm x 40 mm) allowed sufficient separation between neighboring DNA templates to enable amplification of discreet DNA molecules. The functionality of the device was demonstrated by reproducibly amplifying a 2D6.6 CYP450 template and distinguishing between wild-type and mutant sequences using Taqman probes. A comparison of the rate of individual amplification events to the expected Poisson distribution confirmed that the device could reliably analyze individual DNA molecules. This work establishes the feasibility of rapid, single-molecule interrogation of nucleic acids.
开发了一种微流控装置,可对单个DNA分子进行快速聚合酶链反应(PCR)分析。该装置结合了一种从微量滴定板连续获取样品的方法、用于组装八个平行PCR反应的通道以及集成电阻加热器,以便在样品连续流过PCR通道时对其进行快速热循环(加热速率>5℃/秒,冷却速率>7℃/秒)。通过Taqman探针的荧光检测监测扩增情况。狭长的通道(10微米×180微米×40毫米)允许相邻DNA模板之间有足够的分离,从而能够扩增离散的DNA分子。通过可重复地扩增2D6.6 CYP450模板并使用Taqman探针区分野生型和突变序列,证明了该装置的功能。将单个扩增事件的速率与预期的泊松分布进行比较,证实该装置能够可靠地分析单个DNA分子。这项工作确立了对核酸进行快速单分子检测的可行性。