partial D

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  • 文章类型: Journal Article
    背景:RhD表达随人口和种族而变化。献血者中RhD抗原的准确分型对于防止输血受血者中抗D的发展很重要。我们旨在筛选献血者的变异D表型,并通过基因分型对其进行准确表征。
    方法:我们通过使用三种不同的商业单克隆抗D试剂通过柱凝集和常规管技术进行RhD分型,对献血者进行了前瞻性研究。用Bio-Rad部分RhD分型试剂盒进一步筛选显示不明确结果的样品。C的次要表型,C,E,进行e抗原。使用Sanger测序对所有RHD外显子进行多重PCR和测序,以进行变体D的分子表征。
    结果:在研究期间共筛选了16,974名献血者。其中,发现31个(0.18%)供体具有RhD变体表型。男女比例为10:1。在所有RhD变体样品中都注意到存在“C”抗原。血清学分型将两个样品鉴定为DV表型,其余样品无法表征。分子基因分型将90.3%的样品表征为印度特异性弱D型150变体。对三个样品进行Sangers测序并显示野生型模式。
    结论:本研究表明,该人群中最常见的变异是弱D型150。这项研究强调,血清学方法可以作为一种筛选工具,然而,分子技术对于RhD变体的表征至关重要。
    BACKGROUND: RhD expression varies with population and ethnicity. Accurate typing of RhD antigen among blood donors is important to prevent development of anti-D among recipients of blood transfusion. We aimed to screen blood donors for variant D phenotypes and accurately characterize them by genotyping.
    METHODS: We have done prospective study on blood donors by performing RhD typing using three different commercial monoclonal anti-D reagents by both column agglutination and conventional tube techniques. Samples that showed ambiguous results were further screened with the Bio-Rad Partial RhD typing kit. Minor phenotyping for C, c, E, e antigens was performed. Multiplex PCR and Sequencing of all RHD exons with Sanger\'s sequencing was performed for molecular characterization of variant D.
    RESULTS: A total of 16,974 blood donors were screened during the study period. Among them, 31 (0.18 %) donors were found to have a RhD variant phenotype. The male to female ratio was 10:1. The presence of \'C\' antigen was noted among all RhD variant samples. Serological typing identified two samples as DV phenotype and the rest could not be characterized. Molecular genotyping characterized 90.3 % of the samples as Indian specific weak D type 150 variants. Three samples were subjected to Sangers sequencing and showed wild type pattern.
    CONCLUSIONS: The present study showed that the most common variant in this population was Weak D type 150. This study highlights that serological methods may serve as a screening tool, however, molecular techniques are essential for characterization of RhD variants.
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