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本文引用的文献

1
Performance evaluation study of ID CORE XT, a high throughput blood group genotyping platform.ID CORE XT 高通量血型基因分型平台的性能评估研究。
Blood Transfus. 2018 Feb;16(2):193-199. doi: 10.2450/2016.0146-16. Epub 2016 Nov 25.
2
Genotyping of 22 blood group antigen polymorphisms and establishing a national recipient registry in the Korean population.韩国人群中22种血型抗原多态性的基因分型及建立全国受者登记系统。
Ann Hematol. 2016 May;95(6):985-91. doi: 10.1007/s00277-016-2645-7. Epub 2016 Mar 28.
3
Evaluation of red blood cell and platelet antigen genotyping platforms (ID CORE XT/ID HPA XT) in routine clinical practice.常规临床实践中红细胞和血小板抗原基因分型平台(ID CORE XT/ID HPA XT)的评估
Blood Transfus. 2016 Mar;14(2):160-7. doi: 10.2450/2015.0124-15. Epub 2015 Oct 29.
4
An overview of the Progenika ID CORE XT: an automated genotyping platform based on a fluidic microarray system.普罗吉尼卡ID CORE XT概述:一种基于微流控芯片系统的自动化基因分型平台。
Immunohematology. 2015;31(2):62-8.
5
Identification of six new RHCE variant alleles in individuals of diverse racial origin.在不同种族来源的个体中鉴定出六个新的RHCE变异等位基因。
Transfusion. 2016 Jan;56(1):244-8. doi: 10.1111/trf.13357. Epub 2015 Oct 4.
6
Extended blood group molecular typing and next-generation sequencing.扩展血型分子分型与下一代测序
Transfus Med Rev. 2014 Oct;28(4):177-86. doi: 10.1016/j.tmrv.2014.08.003. Epub 2014 Aug 29.
7
How we incorporate molecular typing of donors and patients into our hospital transfusion service.我们如何将供体和患者的分子分型纳入我们医院的输血服务中。
Transfusion. 2014 May;54(5):1212-9. doi: 10.1111/trf.12582. Epub 2014 Mar 13.
8
DNA biosensor/biochip for multiplex blood group genotyping.用于多重血型基因分型的 DNA 生物传感器/生物芯片。
Methods. 2013 Dec 15;64(3):241-9. doi: 10.1016/j.ymeth.2013.09.011. Epub 2013 Sep 27.

韩国利用分子分型技术根据父母种族确定红细胞抗原频率。

Frequency of Red Blood Cell Antigens According to Parent Ethnicity in Korea Using Molecular Typing.

机构信息

Department of Laboratory Medicine, Pusan National University School of Medicine, Busan, Korea.

BioMedical Informatics Unit, Pusan National University School of Medicine, Busan, Korea.

出版信息

Ann Lab Med. 2018 Nov;38(6):599-603. doi: 10.3343/alm.2018.38.6.599.

DOI:10.3343/alm.2018.38.6.599
PMID:30027705
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6056381/
Abstract

Frequencies of red blood cell (RBC) blood group antigens differ by ethnicity. Since the number of immigrants is increasing in Korea, RBC antigens should be assessed in children/youths with parents of different ethnicities to ensure safe transfusions. We investigated the frequency of RBC antigens, except for ABO and RhD, in 382 children and youths with parents having Korean and non-Korean ethnicities. Subjects were divided into those with ethnically Korean parents (Korean group; N=252) and those with at least one parent of non-Korean ethnicity (non-Korean group; N=130). The 37 RBC antigens were genotyped using the ID CORE XT system (Progenika Biopharma-Grifols, Bizkaia, Spain). The frequencies of the Rh (E, C, e, hr(S), and hr(B)), Duffy (Fy(a)), MNS (Mi(a)), and Cartwright (Yt(b)) antigens differed significantly between the two groups. Eight and 11 subjects in the Korean and non-Korean groups, respectively, exhibited negative expression of high-frequency antigens, whereas 14 subjects in the non-Korean group showed positive expression of low-frequency antigens. The frequency of RBC antigens has altered alongside demographic changes in Korea and might lead to changes in distribution of RBC antibodies that cause acute or delayed hemolytic transfusion reaction.

摘要

红细胞(RBC)血型抗原的频率因种族而异。由于韩国的移民数量不断增加,应对具有不同族裔父母的儿童/青少年进行 RBC 抗原评估,以确保安全输血。我们调查了 382 名父母具有韩国和非韩国族裔的儿童和青少年中除 ABO 和 RhD 以外的 RBC 抗原的频率。将受试者分为具有韩国族裔父母的组(韩国组;N=252)和至少有一位非韩国族裔父母的组(非韩国组;N=130)。使用 ID CORE XT 系统(Progenika Biopharma-Grifols,Bizkaia,西班牙)对 37 种 RBC 抗原进行基因分型。两组之间 Rh(E、C、e、hr(S) 和 hr(B))、Duffy(Fy(a))、MNS(Mi(a))和 Cartwright(Yt(b))抗原的频率存在显著差异。韩国组和非韩国组中分别有 8 名和 11 名受试者表现出高频抗原的阴性表达,而非韩国组中有 14 名受试者表现出低频抗原的阳性表达。随着韩国人口结构的变化,RBC 抗原的频率发生了变化,这可能导致引起急性或迟发性溶血性输血反应的 RBC 抗体分布发生变化。