首页> 美国卫生研究院文献>The Journal of Molecular Diagnostics : JMD >Single Nucleotide Polymorphism-Based System Improves the Applicability of Quantitative PCR for Chimerism Monitoring
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Single Nucleotide Polymorphism-Based System Improves the Applicability of Quantitative PCR for Chimerism Monitoring

机译:基于单核苷酸多态性的系统提高了定量PCR在嵌合体监测中的适用性

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摘要

Recently, several studies demonstrated the feasibility of a real-time quantitative PCR (qPCR) approach for chimerism monitoring. qPCR offers a fast, sensitive, and elegant quantification of genotypes. However, before it becomes an established method for routine chimerism monitoring, a qPCR marker set for every transplant pair should be available. This requirement poses a major challenge since the genetic markers for qPCR— short insertions/deletions (Indels) and single nucleotide polymorphisms (SNPs)—published to-date do not guarantee applicability for every transplant pair. The aim of our study was to design and validate a new SNP allele-specific system to supplement an already existing Indel primer panel and improve applicability of the qPCR approach for chimerism status monitoring. Here, we present an approach for an economical in-house design of SNP allele-specific qPCR primers/probe sets with a locus-individualized reference system that allows for the accurate quantification of the respective informative locus using a simple ΔΔCt method. We designed primers/probe sets specific for seven biallelic SNP loci and validated them in a population of 30 transplant pairs. Repeatability varied depending on the amount of quantifiable genotype. The combination of our SNP-qPCR system and Indel primers increased recipient genotype identification from 86.6% to 96.6% when tested in a population of our transplant pairs. These results demonstrate the feasibility of our SNP-based qPCR approach to improve the applicability of a qPCR for chimerism monitoring.
机译:最近,一些研究证明了实时定量PCR(qPCR)方法用于嵌合体监测的可行性。 qPCR提供了快速,灵敏且优雅的基因型定量方法。但是,在成为常规嵌合体监测的既定方法之前,应该为每个移植对提供一套qPCR标记。迄今为止,由于qPCR的遗传标记-短插入/缺失(Indels)和单核苷酸多态性(SNPs)-不能保证每个移植对的适用性,因此这一要求构成了重大挑战。我们研究的目的是设计和验证新的SNP等位基因特异性系统,以补充已经存在的Indel引物板并提高qPCR方法在嵌合状态监测中的适用性。在这里,我们介绍了一种经济的内部设计方法,可利用基因座个性化参考系统对SNP等位基因特异性qPCR引物/探针组进行经济的内部设计,该系统可使用简单的ΔΔCt方法对各个信息基因座进行精确定量。我们设计了针对7个双等位基因SNP位点的特异性引物/探针集,并在30对移植对中进行了验证。重复性取决于可量化基因型的数量。当在我们的移植对中进行测试时,我们的SNP-qPCR系统和Indel引物的结合使受体基因型鉴定从86.6%增加到96.6%。这些结果证明了我们基于SNP的qPCR方法可提高qPCR在嵌合体监测中的适用性。

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