HLA typing: Conventional techniques v. next-generation sequencing

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HLA typing: Conventional techniques v. next-generation sequencing.

BACKGROUND The large number of population-specific polymorphisms present in the HLA complex in the South African (SA) population reduces the probability of finding an adequate HLA-matched donor for individuals in need of an unrelated haematopoietic stem cell transplantation (HSCT). Next-generation sequencing (NGS) has numerous advantages compared with conventional typing techniques. OBJECTIVE...

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OptiType: precision HLA typing from next-generation sequencing data

MOTIVATION The human leukocyte antigen (HLA) gene cluster plays a crucial role in adaptive immunity and is thus relevant in many biomedical applications. While next-generation sequencing data are often available for a patient, deducing the HLA genotype is difficult because of substantial sequence similarity within the cluster and exceptionally high variability of the loci. Established approache...

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HLA Typing for the Next Generation

Allele-level resolution data at primary HLA typing is the ideal for most histocompatibility testing laboratories. Many high-throughput molecular HLA typing approaches are unable to determine the phase of observed DNA sequence polymorphisms, leading to ambiguous results. The use of higher resolution methods is often restricted due to cost and time limitations. Here we report on the feasibility o...

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Strategies and Clinical Applications of Next Generation Sequencing

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ژورنال

عنوان ژورنال: South African Medical Journal

سال: 2015

ISSN: 2078-5135

DOI: 10.7196/samj.2016.v106i1.9571