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1.
Korean Journal of Blood Transfusion ; : 147-154, 2013.
Article in Korean | WPRIM | ID: wpr-117794

ABSTRACT

BACKGROUND: Alloimmunization of human platelet antigens (HPA) is associated with clinically significant disease, such as platelet refractoriness, neonatal alloimmune thrombocytopenia, or posttransfusion purpura. It is determined by single nucleotide polymorphism of genes for platelet membrane glycoprotein. To date, approximately 27 HPAs have been discovered, and their frequencies differ depending on ethnicity and country. METHODS: We conducted an investigation of prevalence of HPA in the Korean population using a multiplex single-base primer extension reaction (SNaPshot). With 84 specimens from healthy donors, HPA genotyping was performed on 11 different HPAs, including HPA-1, -2, -3, -4, -5, -6, -7, -8, -9, -13, and -15. RESULTS: A total of 90 blood samples were genotyped. The genotype frequencies of HPA were as follows: HPA-1a/1a: 100.0%, -2a/2a: 83.3%, -2a/2b: 14.3%, -2b/2b: 2.4%, -3a/3a: 39.3%, -3a/3b: 52.4%, -3b/3b: 8.3%, -4a/4a: 100.0%, -5a/5a: 95.2%, -5a/5b: 4.8%, -6a/6a: 94.0%, -6a/6b: 6.0%, -7a/7a: 100.0%, -8a/8a: 100.0%, -9a/9a: 97.6%, -9a/9b: 2.4%, -13a/13a: 100.0%, -15a/15a: 23.8%, -15a/15b: 51.2%, and -15b/15b: 25.0%. CONCLUSION: The SNaPshot assay was employed for detection of SNPs in various clinically significant HPA genes. In addition to well-known frequencies of previously reported HPA-1 to -8, this study showed frequencies of HPA-9, -13, and -15 in Koreans for the first time. The SNaPshot technique might be suitable for use in actual clinical testing in patients with platelet alloimmunization.


Subject(s)
Humans , Antigens, Human Platelet , Blood Platelets , Genotype , Membrane Glycoproteins , Polymorphism, Single Nucleotide , Prevalence , Purpura , Purpura, Thrombocytopenic , Thrombocytopenia, Neonatal Alloimmune , Tissue Donors
2.
Korean Journal of Blood Transfusion ; : 79-88, 2007.
Article in Korean | WPRIM | ID: wpr-206315

ABSTRACT

BACKGROUND: ABO genotyping is being widely used in the case of ABO discrepancies and in forensic medicine. We have designed a method using a multiplex single-base primer extension reaction that has allowed us to detect six single nucleotide polymorphism (SNP) sites in the ABO gene and to determine ABO genotypes. METHODS: Genomic DNA was isolated from the peripheral blood of 75 unrelated Korean subjects. Exon 6 containing nucleotides 261 and 297 and exon 7 containing nucleotides 703, 802, 803 and 1059 were amplified using two pairs of primers. Using the products as templates, a multiplex single-base primer extension reaction was performed with six typing primers of different lengths for the six SNP sites. These reactions were performed on a PTC-200 thermal cycler (MJ Research, Waltham, MA, USA) using the SNaPshot multiplex kit (Applied Biosystems, Foster City, CA, USA), and the products were analyzed using an ABI 3130xl Genetic Analyzer (Applied Biosystems). RESULTS: The ABO genotypes determined by this method (75/75) all matched the genotypes that were determined by the use of the polymerase chain reaction using sequence-specific priming (PCR-SSP). We analyzed the peak pattern detected at each of the six SNP sites for each sample. For the smaller-sized primers, peaks were shifted to the right-side compared with the expected site and for the larger-sized primers peaks was close to the expected site. In addition, the coefficients of variation (CVs) of the smaller-sized primers were higher than the CVs of the larger-sized primers. CONCLUSIONS: We are able to detect six SNP sites in the ABO gene and to determine ABO genotypes using a multiplex single-base primer extension reaction.


Subject(s)
DNA , Exons , Forensic Medicine , Genotype , Nucleotides , Polymerase Chain Reaction , Polymorphism, Single Nucleotide
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