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Human Leukocyte Antigen Typing Using a Knowledge Base Coupled with a High-Throughput Oligonucleotide Probe Array Analysis

机译:使用知识库与高通量寡核苷酸探针阵列分析相结合的人类白细胞抗原分型

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摘要

Human leukocyte antigens (HLA) are important biomarkers because multiple diseases, drug toxicity, and vaccine responses reveal strong HLA associations. Current clinical HLA typing is an elimination process requiring serial testing. We present an alternative in situ synthesized DNA-based microarray method that contains hundreds of thousands of probes representing a complete overlapping set covering 1,610 clinically relevant HLA class I alleles accompanied by computational tools for assigning HLA type to 4-digit resolution. Our proof-of-concept experiment included 21 blood samples, 18 cell lines, and multiple controls. The method is accurate, robust, and amenable to automation. Typing errors were restricted to homozygous samples or those with very closely related alleles from the same locus, but readily resolved by targeted DNA sequencing validation of flagged samples. High-throughput HLA typing technologies that are effective, yet inexpensive, can be used to analyze the world’s populations, benefiting both global public health and personalized health care.
机译:人类白细胞抗原(HLA)是重要的生物标志物,因为多种疾病,药物毒性和疫苗反应显示出强烈的HLA关联。当前的临床HLA分型是消除过程,需要进行串行测试。我们提出了另一种基于DNA的原位合成微阵列方法,该方法包含成千上万个代表完全重叠集的探针,涵盖1610个临床相关的I类I等位基因,并伴有将HLA类型分配给4位分辨率的计算工具。我们的概念验证实验包括21个血液样本,18个细胞系和多个对照。该方法准确,可靠且易于自动化。键入错误仅限于纯合子样品或来自相同基因座的具有非常相关等位基因的样品,但可以通过标记样品的靶向DNA测序验证轻松解决。有效而廉价的高通量HLA分型技术可用于分析世界人口,从而有益于全球公共卫生和个性化医疗保健。

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