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Single PCR Multiplex SNaPshot Reaction for Detection of Eleven Blood Group Nucleotide Polymorphisms: Optimization, Validation, and One Year of Routine Clinical Use

机译:单PCR多重SNaPshot反应检测十一种血型核苷酸多态性:优化,验证和一年的常规临床使用。

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摘要

Hemagglutination-based assays have several clinical shortcomings. To overcome this difficulty, we have developed a multiplex-PCR SNaPshot assay adapted to the Southern French population, which includes individuals from sub-Saharan Africa and the Comoros archipelago. Single nucleotide polymorphisms (SNPs) associated with clinically relevant blood antigens as well as with null phenotypes were profiled (i.e., K/k, Fya/Fyb/Fybw/Fynull, S/s/U–/U+var, Jka/Jkb, Doa/Dob, Yta/Ytb, and Coa/Cob). A single multiplex-PCR reaction was used to amplify nine gene regions encompassing 11 SNPs. Identification was obtained by incorporation of the complementary dye-conjugated single base at the 3′ end of each probe primer annealed proximal to the target SNP. After optimization, the SNaPshot assay was validated with 265 known allele or phenotype pairs. Results were found fully concordant with those of hemagglutination, allele-specific PCR, and/or sequencing. The assay was then evaluated on 227 blood samples in a clinical context. A total of 203 derived-phenotypes were generated, including 82 atypical phenotypes [i.e., Fy(b+w) (n = 32); K+ (n = 22); Co(b+) (n = 8); Yt(b+) (n = 18); S–s+U+var (n = 2), 105 null phenotypes, i.e., Fy(a–b–) (n = 97); S–s–U– (n = 6); S–s–U+var (n = 2)] and sixteen Fy-positive samples carried a FY*Fy allele. The findings show that this assay can provide a low-cost and fast genotyping tool well adapted to local ethnically mixed populations.
机译:基于血凝的测定具有几个临床缺陷。为了克服这一困难,我们开发了一种适用于法国南部人群的多重PCR SNaPshot测定方法,该方法包括来自撒哈拉以南非洲和科摩罗群岛的个体。对与临床相关的血液抗原以及无效表型相关的单核苷酸多态性(SNP)进行了分析(例如,K / k,Fya / Fyb / Fybw / Fynull,S / s / U– / U + var,Jka / Jkb, Doa / Dob,Yta / Ytb和Coa / Cob)。单次多重PCR反应用于扩增涵盖11个SNP的9个基因区域。通过在与靶SNP近端退火的每个探针引物的3'末端掺入互补的染料共轭单碱基来获得鉴定。优化后,用265个已知的等位基因或表型对验证SNaPshot分析。发现结果与血凝,等位基因特异性PCR和/或测序结果完全一致。然后在临床背景下对227个血液样本进行评估。总共产生了203种衍生表型,包括82种非典型表型[即Fy(b + w)(n = 32); K +(n = 22); Co(b +)(n = 8); Yt(b +)(n = 18); S–s + U + var(n = 2),105个无效表型,即Fy(a–b–)(n = 97); S–U–U(n = 6); S–U–U + var(n = 2)]和16个Fy阳性样本携带FY * Fy等位基因。研究结果表明,该检测方法可提供一种低成本,快速的基因分型工具,非常适合当地的种族混合人群。

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