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Optimization of primer sets and detection protocols for SARS-CoV-2 of coronavirus disease 2019 (COVID-19) using PCR and real-time PCR

机译:使用PCR和实时PCR的SARS-COV-2对SARS-COV-2的底漆和检测方案的优化

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SARS-CoV-2 is very contagious and has rapidly spread globally. Due to various symptomatic and asymptomatic cases and the possibility of asymptomatic transmission, there is a pressing need for a fast and sensitive detection protocol to diagnose asymptomatic people. Various SARS-CoV-2 diagnostic kits are already available from many companies and national health agencies. However, publicly available information on these diagnostic kits is lacking. In response to the growing need and the lack of information, we developed and made available a low-cost, easy-access, real-time PCR-based protocol for the early detection of the virus in a previous study. During the development of the detection protocol, we found that unoptimized primer sets could inadvertently show false-positive results, raising the possibility that commercially available diagnostic kits might also contain primer sets that produce false-positive results. Here, we provide three-step guidelines for the design and optimization of specific primer sets. The three steps include (1) the selection of primer sets for target genes ( RdRP , N , E , and S ) in the genome of interest (SARS-CoV-2), (2) the in silico validation of primer and amplicon sequences, and (3) the optimization of PCR conditions (i.e., primer concentrations and annealing temperatures) for specific hybridization between the primers and target genes, and the elimination of spurious primer dimers. Furthermore, we have expanded the previously developed real-time PCR-based protocol to more conventional PCR-based protocols and applied a multiplex PCR-based protocol that allows the simultaneous testing of primer sets for RdRP , N , E , and S all in one reaction. Our newly optimized protocol should be helpful for the large-scale, high-fidelity screening of asymptomatic people, even without any high-specification equipment, for the further prevention of transmission, and to achieve early intervention and treatment for the rapidly propagating virus. Diagnostic microbiology: Boosting confidence in COVID-19 detection A design strategy for virus detection tests could lead to improved detection of SARS-CoV-2 coronavirus. Laboratories currently perform SARS-CoV-2 diagnostic assays based on a technique called the polymerase chain reaction (PCR), which enables targeted amplification of viral nucleic acids. PCR assays are sensitive but can be plagued by false positives or false negatives. C. Justin Lee of the Institute for Basic Science, Daejon, Republic of Korea, and coworkers have devised a protocol for optimizing assay performance. The success of a PCR assay is determined by the selection of ‘primers’, short DNA strands that determine which genomic sequence gets amplified. The researchers identify a strategy for designing effective primer sets, and selecting reaction conditions that make best use of those primers. Although the focus here is on SARS-CoV-2, this approach should be applicable to other viruses.
机译:SARS-COV-2非常具有传染性,在全球范围内迅速传播。由于各种症状和无症状的病例和无症状传播的可能性,需要一种快速敏感的检测方案来诊断无症状的人。各种SARS-COV-2诊断套件已从许多公司和国家卫生机构提供。但是,缺乏有关这些诊断套件的公开信息。为了应对越来越多的需求和缺乏信息,我们开发并提供了低成本,易于访问的基于PCR的基于PCR的基于PCR,以便在先前的研究中检测病毒。在检测协议的发展期间,我们发现未优化的引物集可能会无意地显示出假阳性结果,提高市售诊断试剂盒也可能含有产生假阳性结果的底漆的可能性。在这里,我们为特定底漆集的设计和优化提供了三步指导。三个步骤包括(1)在感兴趣的基因组(SARS-COV-2)的基因组中为靶基因(RDRP,N,E和S)的引物组的选择,(2)在底漆和扩增子序列的硅验证中[(3)(3)优化PCR条件(即引物浓度和退火温度),用于引物和靶基因之间的特异性杂交,以及消除寄生底漆二聚体。此外,我们已经将先前开发的基于PCR的协议扩展到了更多传统的PCR基协议,并应用了基于多路复用PCR的协议,该协议允许同时测试RDRP,N,E和S的底漆集合反应。我们的新优化协议应该有助于对无症状人民的大规模,高保真筛查,即使没有任何高规格的设备,也可以进一步预防传播,并为快速繁殖的病毒实现早期干预和治疗。诊断微生物学:提升对Covid-19的信心检测病毒检测试验的设计策略可能导致SARS-CoV-2冠状病毒的检测得到改善。实验室目前基于称为聚合酶链式反应(PCR)的技术进行SARS-COV-2诊断测定,这使得病毒核酸的靶向扩增。 PCR测定是敏感的,但可以被误报或假底片困扰。 C. Justin Lee基础科学研究所,大教堂,大韩民国,同事制定了优化测定性能的协议。 PCR测定的成功通过选择“引物”,短DNA链来确定,所述短DNA链确定哪种基因组序列被扩增。研究人员确定了设计有效底漆组的策略,并选择充分利用这些引物的反应条件。虽然这里的重点是SARS-COV-2,但这种方法应该适用于其他病毒。

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