Denomme Gregory A, Schanen Michael J
PhD, FCSMLS(D) (corresponding author), Director, Immunohematology and Transfusion Services, Diagnostic Laboratories, Blood Center of Wisconsin, and Senior Investigator, Blood Research Institute.
Manager, Immunohematology and Transfusion Services, Blood Center of Wisconsin, 638 North 18th Street, P.O. Box 2178, Milwaukee, WI 53201-2178.
Immunohematology. 2015;31(2):69-74.
Blood centers are in the unique position to evaluate large numbers of blood donations for antigen-negative blood types. The limitations with the use of hemagglutination, however, can be circumvented with red cell genotyping. The reagents used for genotyping are synthesized and can be designed for any of the known blood group antigen single nucleotide polymorphisms that are associated with blood group antigen expression. There is interest in the application of mass-scale red cell genotyping of blood donors to find rare phenotypes and rare combinations of antigens. When performed on donors who are predicted to donate again after testing, integrating the genotype information with existing donor data and demographics provides the blood center with real-time information to identify the common clinically relevant blood group antigens demanded by hospital transfusion services. This review outlines a red cell genotype methodology using TaqMan chemistry and existing algorithms and data handling to gain the full value of mass-scale red cell genotyping of blood donors.
血液中心处于独特地位,能够对大量献血进行抗原阴性血型评估。然而,血凝试验使用上的局限性可通过红细胞基因分型来规避。用于基因分型的试剂是合成的,可针对与血型抗原表达相关的任何已知血型抗原单核苷酸多态性进行设计。人们对大规模献血者红细胞基因分型在寻找罕见表型和罕见抗原组合方面的应用很感兴趣。对预计检测后会再次献血的献血者进行基因分型时,将基因型信息与现有献血者数据及人口统计学信息相结合,可为血液中心提供实时信息,以确定医院输血服务所需的常见临床相关血型抗原。本综述概述了一种使用TaqMan化学方法以及现有算法和数据处理的红细胞基因分型方法,以充分利用大规模献血者红细胞基因分型的价值。