Ueberfeld Jörn, McKenna Brian, Rubin-Bejerano Ifat, Verstrepen Kevin, Ehrlich Daniel J
Whitehead Institute for Biomedical Research, Nine Cambridge Center, Cambridge, Massachusetts 02142, USA.
Anal Chem. 2008 Oct 1;80(19):7430-6. doi: 10.1021/ac801131c. Epub 2008 Sep 4.
We have applied multiple-time-point reaction mapping to generate high-dynamic-range quantitative data from PCR multiplexes. The approach measures, then compensates, numerous PCR slope nonidealities across the multiplex without prejudice. A multilane microelectophoresis device with a novel scanning detector that reports redundantly over more than six decades in signal strength was used to collect data with multiple readings for each amplification point and with double internal calibration (lane standards and gene standards). We investigated scaling properties and sensitivity for readout of 12plex PCR reactions. The sensitive detection, stemming from confocal optics, allowed reduction of the PCR cycle number by approximately five cycles compared to commercial fluorometric readout. This increased sensitivity appears to allow quantitative PCR over a dynamic range of >9 log2 abundance ratio in multiplex reactions exceeding 20plexes. We argue that the combination of mapping, multiplexing, and an internal standard, improves the per-well efficiency of quantitative expression analysis by a factor of 50-100 relative to fluorometric qPCR readout. Therefore, the approach is attractive for analysis of large gene networks at reduced cost.
我们已应用多次时间点反应图谱法从聚合酶链反应(PCR)多重反应中生成高动态范围的定量数据。该方法可测量并补偿多重反应中众多PCR斜率的非理想情况,且毫无偏见。我们使用了一种具有新型扫描检测器的多通道微电泳装置,该检测器可在超过六个数量级的信号强度范围内进行冗余报告,以收集每个扩增点的多次读数数据,并进行双重内部校准(泳道标准品和基因标准品)。我们研究了12重PCR反应读数的缩放特性和灵敏度。源于共聚焦光学的灵敏检测,与商业荧光读数相比,可使PCR循环数减少约五个循环。这种提高的灵敏度似乎允许在超过20重的多重反应中,在大于9个以2为底的丰度比的动态范围内进行定量PCR。我们认为,图谱法、多重反应法和内标法相结合,相对于荧光定量PCR读数,可将定量表达分析的每孔效率提高50至100倍。因此,该方法对于以降低成本分析大型基因网络具有吸引力。