Institute of Biomedical Engineering, Qilu University of Technology (Shandong Academy of Sciences), No.3501, Daxue Road, Jinan, 250353, China.
Department of Laboratory Medicine, Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan, 250000, China.
Sci Rep. 2024 Jan 9;14(1):880. doi: 10.1038/s41598-024-51458-0.
Genotyping of gDNA rs12041331 (PEAR1), rs6065 (GP1BA), and rs730012 (LTC4S) can provide systematic guidance on the use of aspirin. However, an accurate, reliable and economical approach to simultaneous detection of the above single nucleotide polymorphisms (SNPs) is not reported. Herein, we designed and substantiated an allele-specific (AS) forward primer-superposed amplification analysis for measurement of the SNPs in PEAR1, GP1BA and LTC4S genes, in which the values of ∆Cq (differences in threshold cycles between the wild-type forward primer-based assay and the mutated-type forward primer-based assay) were employed to decide genotype. Mismatch AS forward primers were screened with the singleplex amplification analysis. Moreover, Cq extension optimized by AS forward primer superposition was observed in the selected forward primer-based triplex analysis. Further, robustness assessment of the triplex analysis showed the amplification efficiency ranging from 0.9 to 1.1. Precision test demonstrated the coefficient of variation of less than 2%. And the detective results of 189 DNA samples was completely concordant with that of commercial Sanger sequencing. In summary, we developed a simple, accurate and economical approach to genotyping of rs12041331 (PEAR1), rs6065 (GP1BA) and rs730012 (LTC4S) to provide a valuable pharmacogenomics tool for guidance of aspirin delivery.
gDNA rs12041331(PEAR1)、rs6065(GP1BA)和 rs730012(LTC4S)的基因分型可为阿司匹林的使用提供系统指导。然而,目前尚未报道一种准确、可靠且经济的方法来同时检测上述单核苷酸多态性(SNP)。在此,我们设计并验证了一种等位基因特异性(AS)正向引物叠加扩增分析,用于测量 PEAR1、GP1BA 和 LTC4S 基因中的 SNP,其中 ∆Cq(野生型正向引物检测和突变型正向引物检测之间的阈值循环差异)值用于决定基因型。通过单重扩增分析筛选错配 AS 正向引物。此外,在选定的基于正向引物的三重扩增分析中观察到 Cq 延伸通过 AS 正向引物叠加进行优化。进一步的稳健性评估显示扩增效率在 0.9 到 1.1 之间。精密度测试表明变异系数小于 2%。189 个 DNA 样本的检测结果与商业 Sanger 测序完全一致。总之,我们开发了一种简单、准确且经济的方法来对 rs12041331(PEAR1)、rs6065(GP1BA)和 rs730012(LTC4S)进行基因分型,为指导阿司匹林的应用提供了一种有价值的药物基因组学工具。