Wu Fan, Liang Shuang, Zhuang Nai-Bao, Liang Yan-Lian, Su Yu-Qing, Hong Wen-Xu
Shenzhen Blood Center, Shenzhen 518035, Guangdong Province, China.
Shenzhen Blood Center, Shenzhen 518035, Guangdong Province, China,E-mail:
Zhongguo Shi Yan Xue Ye Xue Za Zhi. 2020 Oct;28(5):1733-1739. doi: 10.19746/j.cnki.issn.1009-2137.2020.05.050.
To explore a method for rapidly screening the Duffy blood group genotypes and to establish an information bank of rare blood type donors.
The microfluidic capillary electrophoresis system and PCR-SSP method were used to analyze the Duffy genotype of 3 936 unrelated O-type blood donors in our center from December 2014 to September 2018. The serologic identification and typing of other blood type system phenotypes for FY-negative specimen were performed. The Fy (a-b-) specimen was sequenced for genotyping.
The phenotypes of FY-negative specimens were consistent with the genotyping results of the microfluidic capillary electrophoresis system. The results of Duffy phenotyping in 3 936 specimens were follows: Fy (a+b-) 3 564 (90.54%), Fy(a+b+) 353 (8.97%), Fy(a-b+) 18 (0.46%), Fy (a-b-) 1 (0.03%). The gene frequency was FYA (95.03%), FYB (4.94%), and FY*Null (0.03%). The bank of rare blood types of 19 FY-negative specimens was established.
Microfluidic capillary electrophoresis system is suitable for Duffy blood group genotyping screening. It can be used to establish a bank of rare blood type, so as to solve the problem of urgent blood transfusion in patients with rare blood type, and to improve blood transfusion safety.
探索快速筛查达菲血型基因型的方法并建立稀有血型献血者信息库。
采用微流控毛细管电泳系统及聚合酶链反应-序列特异性引物(PCR-SSP)方法,对2014年12月至2018年9月本中心3936名无血缘关系的O型献血者的达菲基因型进行分析。对FY阴性标本进行其他血型系统表型的血清学鉴定及分型。对Fy(a-b-)标本进行测序以确定基因型。
FY阴性标本的表型与微流控毛细管电泳系统的基因分型结果一致。3936份标本的达菲血型分型结果如下:Fy(a+b-)3564例(90.54%),Fy(a+b+)353例(8.97%),Fy(a-b+)18例(0.46%),Fy(a-b-)1例(0.03%)。基因频率为FYA(95.03%),FYB(4.94%),FY*Null(0.03%)。建立了19份FY阴性标本的稀有血型库。
微流控毛细管电泳系统适用于达菲血型基因分型筛查。可用于建立稀有血型库,以解决稀有血型患者紧急输血问题,提高输血安全性。