Kralik Petr, Ricchi Matteo
Department of Food and Feed Safety, Veterinary Research Institute Brno, Czechia.
Istituto Zooprofilattico Sperimentale della Lombardia e dell'Emilia Romagna "Bruno Ubertini," National Reference Centre for Paratuberculosis Piacenza, Italy.
Front Microbiol. 2017 Feb 2;8:108. doi: 10.3389/fmicb.2017.00108. eCollection 2017.
Real time PCR (quantitative PCR, qPCR) is now a well-established method for the detection, quantification, and typing of different microbial agents in the areas of clinical and veterinary diagnostics and food safety. Although the concept of PCR is relatively simple, there are specific issues in qPCR that developers and users of this technology must bear in mind. These include the use of correct terminology and definitions, understanding of the principle of PCR, difficulties with interpretation and presentation of data, the limitations of qPCR in different areas of microbial diagnostics and parameters important for the description of qPCR performance. It is not our intention in this review to describe every single aspect of qPCR design, optimization, and validation; however, it is our hope that this basic guide will help to orient beginners and users of qPCR in the use of this powerful technique.
实时PCR(定量PCR,qPCR)如今在临床诊断、兽医诊断和食品安全领域,已成为检测、定量以及鉴定不同微生物病原体的成熟方法。尽管PCR的概念相对简单,但qPCR存在一些特定问题,该技术的开发者和使用者必须牢记。这些问题包括正确术语和定义的使用、对PCR原理的理解、数据解读和呈现方面的困难、qPCR在微生物诊断不同领域的局限性以及描述qPCR性能的重要参数。在本综述中,我们无意描述qPCR设计、优化和验证的每一个方面;然而,我们希望这份基础指南将有助于指导qPCR初学者和使用者运用这项强大的技术。