协议(科学)
底漆(化妆品)
注意事项
计算机科学
仪表(计算机编程)
变性(裂变材料)
计算生物学
实时聚合酶链反应
纳米技术
生化工程
化学
生物
材料科学
工程类
医学
生物化学
病理
替代医学
有机化学
基因
核化学
操作系统
作者
Stephen A. Bustin,Sara Kirvell,Tania Nolan,Gregory L. Shipley
摘要
Versatility, sensitivity, and accuracy have made the real-time polymerase chain reaction (qPCR) a crucial tool for research, as well as diagnostic applications. However, for point-of-care (PoC) use, traditional qPCR faces two main challenges: long run times mean results are not available for half an hour or more, and the requisite high-temperature denaturation requires more robust and power-demanding instrumentation. This study addresses both issues and revises primer and probe designs, modified buffers, and low ∆T protocols which, together, speed up qPCR on conventional qPCR instruments and will allow for the development of robust, point-of-care devices. Our approach, called “FlashPCR”, uses a protocol involving a 15-second denaturation at 79 °C, followed by repeated cycling for 1 s at 79 °C and 71 °C, together with high Tm primers and specific but simple buffers. It also allows for efficient reverse transcription as part of a one-step RT-qPCR protocol, making it universally applicable for both rapid research and diagnostic applications.
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