Department of Physics, Mathematics, and Astronomy, California Institute of Technology, Pasadena, CA, 91125, USA.
ChromaCode, Inc., Carlsbad, CA, 92008, USA.
Sci Rep. 2019 Jan 31;9(1):1053. doi: 10.1038/s41598-018-37732-y.
The real time polymerase chain reaction (rtPCR) is an essential method for detecting nucleic acids that has a wide range of clinical and research applications. Current multiplexed rtPCR is capable of detecting four to six nucleic acid targets in a single sample. However, advances in clinical medicine are driving the need to measure many more targets at once. We demonstrate a novel method which significantly increases the multiplexing capability of any existing rtPCR instrument without new hardware, software, or chemistry. The technique works by varying the relative TaqMan probe concentrations amongst targets that are measured in a single fluorometric channel. Our fluorescent amplitude modulation method generates a unique rtPCR signature for every combination of targets present in a reaction. We demonstrate this technique by measuring nine different targets across three color channels with TaqMan reporting probes, yielding a detection accuracy of 98.9% across all combinations of targets. In principle this method could be extended to measure 6 or more targets per color channel across any number of color channels without loss in specificity.
实时聚合酶链反应(rtPCR)是一种检测核酸的重要方法,具有广泛的临床和研究应用。目前的多重实时 PCR 能够在单个样本中同时检测四个到六个核酸靶标。然而,临床医学的进步推动了需要同时测量更多靶标的需求。我们展示了一种新颖的方法,无需新的硬件、软件或化学物质,即可显著提高任何现有 rtPCR 仪器的多重检测能力。该技术通过在单个荧光检测通道中测量的靶标之间改变 TaqMan 探针的相对浓度来实现。我们的荧光幅度调制方法为反应中存在的每一种靶标组合生成独特的 rtPCR 特征。我们通过使用 TaqMan 报告探针在三个荧光通道中测量九个不同的靶标来证明该技术,在所有靶标组合下的检测准确性达到 98.9%。原则上,该方法可以扩展到在任意数量的荧光通道中每个通道测量 6 个或更多靶标,而不会特异性降低。