首页> 美国卫生研究院文献>The Journal of Molecular Diagnostics : JMD >Genotyping of Human Platelet Antigens 1 to 6 and 15 by High-Resolution Amplicon Melting and Conventional Hybridization Probes
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Genotyping of Human Platelet Antigens 1 to 6 and 15 by High-Resolution Amplicon Melting and Conventional Hybridization Probes

机译:高分辨率扩增子融合和常规杂交探针对人血小板抗原1至6和15的基因分型

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摘要

High-resolution melting techniques are a simple and cost-effective alternative to other closed-tube genotyping methods. Here, we genotyped human platelet antigens (HPAs) 1 to 6 and 15 by high-resolution melting methods that did not require labeled probes. Conventional melting analysis with hybridization probes (HybProbes) was also performed at each locus. HybProbe assays were performed individually, whereas amplicon melting (HPAs 1 to 5 and 16) and unlabeled probe (HPA 6) assays were duplexed when possible. At all loci for each method, both homozygous and heterozygous genotypes were easily identified. We analyzed 100 blinded clinical samples (33 amniotic fluid, 12 cultured amniocytes, and 55 blood samples) for all 7 single-nucleotide polymorphisms (SNPs) by each method. Genotype assignments could be made in 99.0% of the SNPs by high-resolution melting and in 98.7% of the SNPs with HybProbes with an overall genotype concordance of 98.8%. Errors included two sample misidentifications and six incorrect assignments that were all resolved by repeating the analysis. Advantages of high-resolution melting include rapid assay development and execution, no need for modified oligonucleotides, and similar accuracy in genotyping compared with other closed-tube melting methods.
机译:高分辨率熔解技术是其他封闭管基因分型方法的一种简单且经济高效的替代方法。在这里,我们通过不需要标记探针的高分辨率熔解方法对人血小板抗原(HPA)1至6和15进行了基因分型。在每个基因座也进行了杂交探针(HybProbes)的常规熔解分析。 HybProbe分析分别进行,而扩增子融解(HPA 1至5和16)和未标记探针(HPA 6)分析则尽可能进行双工。在每种方法的所有基因座上,均易于鉴定纯合和杂合基因型。我们通过每种方法分析了所有7种单核苷酸多态性(SNP)的100个盲临床样品(33个羊水,12个培养的羊细胞和55个血液样品)。可以通过高分辨率熔解在99.0%的SNP中进行基因型分配,使用HybProbes在98.7%的SNP中进行基因型分配,总体基因型一致性为98.8%。错误包括两个样本错误标识和六个不正确的分配,这些都通过重复分析得以解决。高分辨率熔解的优势包括快速的测定开发和执行,不需要修饰的寡核苷酸以及与其他闭管熔解方法相比在基因分型方面的准确性。

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