首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Blood group genotyping for Jk(a)/Jk(b), Fy(a)/Fy(b), S/s, K/k, Kp(a)/Kp(b), Js(a)/Js(b), Co(a)/Co(b), and Lu(a)/Lu(b) with microarray beads.
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Blood group genotyping for Jk(a)/Jk(b), Fy(a)/Fy(b), S/s, K/k, Kp(a)/Kp(b), Js(a)/Js(b), Co(a)/Co(b), and Lu(a)/Lu(b) with microarray beads.

机译:Jk(a)/ Jk(b),Fy(a)/ Fy(b),S / s,K / k,Kp(a)/ Kp(b),Js(a)/ Js(b)的血型基因分型),Co(a)/ Co(b)和Lu(a)/ Lu(b)以及微阵列珠。

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BACKGROUND: Traditionally, blood group typing has been performed with serologic techniques, the classical method being the hemagglutination test. Serotyping, however, may present important limitations such as scarce availability of rare antisera, typing of recently transfused patients, and those with a positive direct antiglobulin test. Consequently, serologic tests are being complemented with molecular methods. The aim of this study was to develop a low-cost, high-throughput method for large-scale genotyping of red blood cells (RBCs). STUDY DESIGN AND METHODS: Single-nucleotide polymorphisms associated with some clinically important blood group antigens, as well as with certain rare blood antigens, were evaluated: Jk(a)/Jk(b), Fy(a)/Fy(b), S/s, K/k, Kp(a)/Kp(b), Js(a)/Js(b), Co(a)/Co(b), and Lu(a)/Lu(b). Polymerase chain reaction (PCR)-amplified targets were detected by direct hybridization to microspheres coupled to allele-specific oligonucleotides. Cutoff values for each genotype were established with phenotyped and/or genotyped samples. RESULTS: The method was validated with a blind panel of 92 blood donor samples. The results were fully concordant with those provided by hemagglutination assays and/or sequence-specific primer (SSP)-PCR. The method was subsequently evaluated with approximately 800 blood donor and patient samples. CONCLUSION: This study presents a flexible, quick, and economical method for complete genotyping of large donor cohorts for RBC alleles.
机译:背景:传统上,血型分型是通过血清学技术进行的,经典方法是血凝试验。但是,血清分型可能存在重要的局限性,例如稀有抗血清的稀缺性,最近输血患者的类型以及直接抗球蛋白测试阳性的患者。因此,血清学检测正在用分子方法进行补充。这项研究的目的是开发一种低成本,高通量的红细胞大规模基因分型方法。研究设计和方法:对与某些临床上重要的血型抗原以及某些稀有血液抗原相关的单核苷酸多态性进行了评估:Jk(a)/ Jk(b),Fy(a)/ Fy(b), S / s,K / k,Kp(a)/ Kp(b),Js(a)/ Js(b),Co(a)/ Co(b)和Lu(a)/ Lu(b)。通过与与等位基因特异性寡核苷酸偶联的微球直接杂交来检测聚合酶链反应(PCR)扩增的靶标。用表型和/或基因型样本确定每种基因型的临界值。结果:该方法在92个献血者样品的盲板中得到了验证。结果与血凝测定和/或序列特异性引物(SSP)-PCR提供的结果完全一致。随后用大约800个献血者和患者样本评估了该方法。结论:这项研究提出了一种灵活,快速,经济的方法,可以对RBC等位基因的大型供者群体进行完整的基因分型。

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