1.Identification of a rare platelet-specific antigen HPA-10bw allele among ethnic Han Chinese population in Shandong.
Jingru SHAO ; Wenchao LI ; Yingfang PAN ; Wenben QIAO ; Chuanfu ZHU ; Xiangmin NIE ; Yan LIU
Chinese Journal of Medical Genetics 2022;39(2):231-233
OBJECTIVE:
To study the polymorphism of human platelet antigen (HPA) system 10 among ethnic Han Chinese from Shandong, China so as to supplement the data of platelet donor bank in the region.
METHODS:
Peripheral blood samples of platelet donors from the region were genotyped for HPA-10 alleles by PCR-sequence specific primer (PCR-SSP) and direct sequencing.
RESULTS:
Among 1401 donors, a rare heterozygote carrier of HPA-10w (a+b+) was identified, which gave an allelic frequency of approximately 0.035%.
CONCLUSION
The detection of rare HPA-10bw antigen allele among ethnic Han Chinese from Shandong is useful for the diagnosis and prevention of neonatal alloimmune thrombocytopenia and post-transfusion purpura in the region.
Alleles
;
Antigens, Human Platelet/genetics*
;
Asians/genetics*
;
Gene Frequency
;
Genotype
;
Humans
;
Infant, Newborn
;
Polymorphism, Genetic
2.Platelet HPA Typing of Platelet Donors in Zhangjiakou Area.
Wen-Jing JIANG ; Yun-Peng XU ; Fei LI ; Ping LI ; Shao-Ping KANG ; Li-Hong LI ; Yi-Hao WANG
Journal of Experimental Hematology 2021;29(1):233-238
OBJECTIVE:
To analyze the polymorphism of the HPA1-5,15 system of the donors in Zhangjiakou area.
METHODS:
DNA was extracted from the blood samples of the donors, PCR- SSP method was used to divide HPA1-6, 15 genotype. The gene frequency and genotype frequency were calculated, compared with the difference and regiahal specificity of the populations in our country and foregiens was compared other populations.
RESULTS:
The gene expression in the HPA-1, HPA-2 and HPA-4 systems were all homozygous aa, and the donors who expressed homozygous bb was not exessed. Among them, one heterozygous ab expression was found in both HPA-1 and HPA-4 systems (1%), and 14 cases of heterozygous ab expression were found in HPA-2 system (14%). The gene expression in the HPA-5 system was mainly homozygous aa (98%), and a very few expressed homozygous bb (2%) was found. The degree of heterozygosity of gene expression in the HPA-3 and HPA-15 systems was relatively high. The proprotion of the expression of aa, ab and bb in the HPA-3 system was respectively 46%, 40% and 14%, the proprotion of the expression of aa, ab and bb in the HPA-15 system was respectively 21%, 64% and 15%.
CONCLUSION
The gene frequency of platelet-specific antigen HPA1-5,15 system in zhangjiakou region shows local characteristics. The heterozygosity degree of gene expression in the HPA-3 and HPA-15 systems are both high, suggesting that they are more likely to result in alloimmunization and ineffective platelet transfusion, which should be pays attention to.
Antigens, Human Platelet/genetics*
;
Blood Donors
;
Gene Frequency
;
Genotype
;
Humans
;
Polymorphism, Genetic
3.Analysis on Polymorphism of Platelet Antigen Gene in Shandong Han Population.
Yan LIU ; Hai-Feng ZHU ; Wen-Ben QIAO ; Yi ZHANG ; Yong-Hong SONG ; Xiang-Min NIE ; Chuan-Fu ZHU ; Pei-Cong ZHAI
Journal of Experimental Hematology 2020;28(6):2066-2070
OBJECTIVE:
To study the Polymorphism of the human platelet antigen(HPA) gene 1-17 and human leukocyte antigen(HLA) gene-A and B locus in Shandong Han population.
METHODS:
A total of 962 samples from routine voluntary platelet donors were genotyped for HPA1-17 system and HLA-A site, B by PCR-SSP and PCR-SSOP respectively.Gene frequencies were calculated by counting. HPA1-17 and HLA genotype combinations were analyzed by Arelequin 3.5.
RESULTS:
The gene frequencies of HPA-la, -1b, HPA-2a, -2b, HPA-3a, -3b, HPA-4a, -4b, HPA-5a, -5b, HPA-6a, -6b, HPA-15a, -15b were 0.9918, 0.0082, 0.9419, 0.0592, 0.5841, 0.4174, 0.9969, 0.0031, 0.9892, 0.0108, 0.9835, 0.0175,0.5488 and 0.4512, respectively. The most common HPA genotype combination was HPA-(1, 2, 4, 5, 6, 7-14, 16, 17) aa-3ab-15ab (0.2048). Moreover, HLA-A*2(0.3094) and HLA-B*13(0.1513) showed the highest frequency in their respective locus. The most common HLA genotype combination was HLA-A*2-B*13(0.1397) .
CONCLUSION
Distributions of HPA and HLA show high polymorphism in Shandong Han population. The ethnic and territorial difference of HPA distribution is also confirmed. It is imperative to establish local genetic database of volunteer platelet donors.
Alleles
;
Antigens, Human Platelet/genetics*
;
Gene Frequency
;
Genotype
;
Humans
;
Polymorphism, Genetic
4.Application of recombinant GPⅢa combined Luminex beads for the detection of HPA-1a antibody.
Sudan TAO ; Ying LIU ; Yanming HE ; Yanling YING ; Ji HE ; Faming ZHU
Chinese Journal of Medical Genetics 2017;34(1):40-44
OBJECTIVETo generate recombinant GPⅢa as an alternative source for HPA-1a antigen and combine it with Luminex xMAP beads for the detection of HPA-1a-specific alloantibody.
METHODSThe full coding region of ITGB3 gene was amplified and ligated with pcDNA3.1. The recombinant plasmid was transfected into CHO cells, and those with stable expression were screened with G418. Expressed protein was identified and coupled with Luminex xMAP beads, which were then reacted with sera samples. Subsequently, phycoerythrin-labeled anti-species IgG antibody was added to the reaction wells and the median fluorescence was determined on a Luminex-100 analyzer.
RESULTSDNA sequencing confirmed that the cloned ITGB3 gene was HPA-1aa. The recombinant GPⅢa was coupled with Luminex xMAP beads. The sensitivity of Luminex beads assay to detect HPA-1a antibody was dilution 1/32 (3.125 U/mL). The Luminex beads assay could specifically identify the HPA-1a antibody from the test sera, and the results were consistent with that of monoclonal antibody-specific immobilization of platelet antigens (MAIPA) technology. Cross-reactivity was not observed with the samples containing HLA, ABO and other HPA antibodies (HPA-3a and HPA-5b). The results illustrated that to detect HPA antibody with Luminex xMAP beads technology is feasible.
CONCLUSIONRecombinant GPⅢa was successfully obtained and used to establish a Luminex technology-based method for the detection of HPA antibodies.
Animals ; Antigens, Human Platelet ; immunology ; Autoantibodies ; immunology ; Base Sequence ; Blotting, Western ; CHO Cells ; Cricetinae ; Cricetulus ; Humans ; Immunoassay ; methods ; Integrin beta3 ; genetics ; immunology ; metabolism ; Microspheres ; Recombinant Proteins ; immunology ; metabolism ; Reproducibility of Results
5.Analysis of HPA1-16 and HLA-A, B gene polymorphisms among ethnic Han population from Shandong.
Yi ZHANG ; Yuan YU ; Wenben QIAO ; Yan LIU ; Juan ZHOU ; Jianhong XU ; Bing FAN ; Liyue JIANG ; Wenhua LIANG ; Chuanfu ZHU
Chinese Journal of Medical Genetics 2016;33(5):690-693
OBJECTIVETo study the polymorphisms of human platelet antigen (HPA) 1-16 and human leukocyte antigen (HLA)-A and -B loci among ethnic Han population from Shandong.
METHODSA total of 588 samples from platelet donors were genotyped for the above loci with sequence-specific primer PCR and sequence-specific oligonucleotide probe PCR.
RESULTSThe frequencies of HPA-la, -1b, HPA-2a, -2b, HPA-3a, -3b, HPA-4a, -4b, HPA-5a, -5b, HPA-6a, -6b, HPA-15a, -15b were 0.9974, 0.0026, 0.9456, 0.0544, 0.5417, 0.4583, 0.9983, 0.0017, 0.9889, 0.0111, 0.9903, 0.0097, 0.5434 and 0.4583, respectively. The HPA-7-14 and HPA-16 showed no heterozygosity as the b allele was not detected in such loci. The most common genotypic combination for HPA was HPA-(1,4,7-14,16,17) aa-2aa-3ab-5aa -6aa-15ab (0.1820). HLA-A2 (0.3070) and HLA-B13 (0.1361) demonstrated the highest frequencies at their respective loci.
CONCLUSIONThe HPA and HLA loci are highly polymorphic among ethnic Hans from Shandong. The distribution of HPA polymorphisms also shows a great ethnic and territorial difference. It is important to construct regional database for the genotypes of HPA and HLA loci for platelet donors.
Alleles ; Antigens, Human Platelet ; genetics ; Asian Continental Ancestry Group ; genetics ; statistics & numerical data ; Blood Donors ; China ; Female ; Gene Frequency ; Genetics, Population ; Genotype ; HLA-A Antigens ; genetics ; HLA-B Antigens ; genetics ; Humans ; Linkage Disequilibrium ; Male ; Polymorphism, Genetic
6.Polymorphism of Platelet Specific Antigens (HPA-1-5, 15) in Han Donors in the North Area of Henan Province.
Xue-Lan SUN ; Zhi-Mei YANG ; Jing-Jing ZHANG ; Zhi-Jun YUAN ; Jun-Ying LI ; Gui-Zhi PANG ; Chen-Guang ZHANG
Journal of Experimental Hematology 2016;24(2):602-606
OBJECTIVETo study the gene polymorphism distribution characteristics of human platelet HPA-1-5 and 15 blood group antigens and construct a certain scale of platelet HPA database in the north area of Henan Province so as to provide platelet apheresis for clinical departments.
METHODSUsing polymerase chain reaction with sequence-specific primers (PCR-SSP), the genotyping of HPA-1-5 and 15 system was carried out; the periperal blood of 500 healthy Han donors in north area of Henan Province was collected randomly, the gene and genotype frequencies were detected by direct counting method, and the population distribution frequncy of HPA genes was analyzed by Hardy-Weinberg balance test, and compared with other regions and ethnics by using χ(2) test.
RESULTSThere was statistically significant (P < 0.05) of increase HPA-3b and HPA-5a in North area of Henan Province, compared with Chinese Han population; the HPA-3b and 5a increase and HPA-2a decrease were statistically significant (P < 0.05), compared with Ethnic minority of China. There was partly increase of HPA-1a, 2a, 3a and 5a, compared with different regions and ethnic in abroad. HPA allele genes of 500 Han donors in the North area of Henan Province were as follows: 0.985 and 0.015 for 1a and 1b; 0.924 and 0.076 for 2a and 2b; 0.469 and 0.531 for 3a and 3b; 1.000 and 1.000 for 4a and 5a; 0.532 and 0.468 for 15a and 15b, respectively. HPA allele gene frequencies were 1aa0.970, 1ab0.030; 2aa0.848, 2ab0.152; 3aa0.222, 3ab0.494, 3bb0.284; 4aa1.000; 5aa1.000; 15aa0.282, 15ab0.500, 15bb0.218. Compared with other regions and ethnic, HPA gene frequencies partly had statistical significance.
CONCLUSIONDistribution of HPA allele frequencies in the North area of Henan province is in accordence with the Hardy-Weinberg law. There are race and regional differences in HPA allele gene frequencies, compared with other regions and countries. And the HPA systems HPA-3 and 15 display the genetic polymorphisms, which provides a theoretical basis for the relevant research of the same type platelet infusion and alloimmune thrombocytopenia.
Alleles ; Antigens, CD ; genetics ; Antigens, Human Platelet ; genetics ; Blood Platelets ; China ; DNA Primers ; Ethnic Groups ; GPI-Linked Proteins ; genetics ; Gene Frequency ; Genotype ; Humans ; Neoplasm Proteins ; genetics ; Plateletpheresis ; Polymerase Chain Reaction ; Polymorphism, Genetic
7.Detection, diagnosis and analysis of the first case of neonatal alloimmune thrombocytopenia purpura associated with anti-HPA-5b in China.
Yan ZHOU ; Zhou-Lin ZHONG ; Li-Lan LI ; Wei-Dong SHEN ; Guo-Guang WU
Journal of Experimental Hematology 2014;22(2):399-402
This study was aimed to investigate the detection and diagnosis of the neonatal alloimmune thrombocytopenia purpura (NAITP) caused by anti-HPA-5b antibody. The platelet count and clinical manifestation in the newborn were examined. The HPA-1-21bw genotypes of the newborn and her parents were detected by multiple-PCR and DNA sequencing. The HPA-specific antibody in the sera of newborn and her mother were detected and identified by flow cytometry (FCM) and monoclonal antibody-specific immobilization of platelet antigens (MAIPA). The results indicated that the clinical manifestations of the newborn were lighter. The HPA genotyping showed that the genotype of the newborn was HPA-5ab, while that of her mother and father were HPA-5aa and HPA-5ab, respectively. The antibody against the platelet of newborn's father existed in the newborn's mother sera. The HPA antibody of the mother was identified as anti-HPA-5b. It is concluded that the newborn with neonatal alloimmune thrombocytopenia purpura was caused by the antibody against HPA-5b.
Antigens, Human Platelet
;
genetics
;
China
;
Female
;
Genotype
;
Humans
;
Infant, Newborn
;
Purpura, Thrombocytopenic, Idiopathic
;
diagnosis
;
genetics
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Thrombocytopenia, Neonatal Alloimmune
;
diagnosis
;
genetics
8.Applications of platelet antigen gene typing and matching in the platelet transfusion.
Bing-Xian LIU ; Yu-Jia LIU ; Guang-Ping GAO ; Dan WANG ; Rui-Hua ZHOU ; Qiang MA ; Yan ZHANG ; Xiu-Qing YU ; Hua ZHENG
Journal of Experimental Hematology 2014;22(1):199-203
The aim of this study was to establishment of known HPA genotype platelet donor data base and carry out the platelet antigen gene typing and matching in the platelet transfusion so as to prevent the production of the antibody and to avoid the platelet transfusion refractoriness. HPA of the donors and the patients were genotyped by PCR-SSP. The platelet transfusion with the same ABO type and HPA genotypes as the patient was selected and infused if the solid-phase agglutination matching was consistent. The results showed that the distribution of HPA types in Chinese Mudanjiang area had its own characteristics. HPA-15 had the greatest heterozygosity, and then HPA-3. The effective rate was 94.4% if both the HPA types and the ABO types were coincident while the effective rate was 77.8% when only ABO types were coincident. It is concluded that the distribution of HPA types in Chinese Mudanjiang area presents genetic polymorphism. The platelet transfusion with genetic typing and matching of both HPA and ABO types is an effective way to avoid production of the antibody and platelet transfusion refractoriness.
Adolescent
;
Adult
;
Antigens, Human Platelet
;
genetics
;
immunology
;
Blood Grouping and Crossmatching
;
Female
;
Genotype
;
Humans
;
Male
;
Middle Aged
;
Platelet Transfusion
;
methods
;
Young Adult
9.Genetic polymorphism of human platelet antigens 1-18 in Chinese Nanjing Han population.
Min XUE ; Yan-Chun LIU ; Peng WEI
Journal of Experimental Hematology 2012;20(5):1235-1239
The purpose of this study was to investigate the allele frequencies of the human platelet alloantigens 1-18 system (HPA-1-18) in Chinese Nanjing unrelated and healthy Han population, so as to provide the credible basis to screen compatible platelets for transfusing patients. The genotypes of 18 HPA systems were determined by polymerase chain reaction using sequence-specific primer (PCR-SSP) for 300 samples. The results showed that the gene frequencies obtained from 300 Nanjing unrelated population were 0.9183 and 0.0817 for HPA-2a and -2b, 0.6100 and 0.3900 for HPA-3a and -3b, 0.9733 and 0.0267 for HPA-5a and -5b, 0.9883 and 0.0117 for HPA-6a and -6b, 0.5250 and 0.4750 for HPA-15a and -15b. All the tested individuals were homozygotes for HPA-1a, -4a, -7a-14a and HPA -16a-18a. There was a good fit to Hardy-Weinberg equilibrium in each group. It is concluded that this study has confirmed the ethnic and regional difference of HPA, and HPA in Nanjing Han population has its own characteristics. The highest heterozygotes are HPA-3 and HPA-15, thus more attention to HPA effects on clinical platelet matched transfusion should be paid.
Antigens, Human Platelet
;
genetics
;
Asian Continental Ancestry Group
;
genetics
;
China
;
Ethnic Groups
;
genetics
;
Genotype
;
Heterozygote
;
Homozygote
;
Humans
;
Polymorphism, Genetic
10.HPA distribution characteristics of platelet donor population in Mudanjiang area of China and establishment of its database.
Bing-Xian LIU ; Guang-Ping GAO ; Dan WANG ; Yan ZHANG ; Xiu-Qing YU ; Dong-Mei XIA ; Rui-Hua ZHOU ; Hua ZHANG ; Qiang MA ; Jie LIU
Journal of Experimental Hematology 2012;20(3):757-761
This study was aimed to explore the distribution characteristics of the human platelet antigen (HPA) gene of human platelet donors and its polymorphism in Mudanjiang area of Heilongjiang Province in China, to determine platelet antigen system with clinical significance by judging the rate of incompatibility of HPA, as well as to establish a database of donors' HPA. The genotyping of 154 unrelated platelet donors was performed by means of PCR-SSP. The frequencies of gene and genotype were calculated and compared with that in other areas. The results showed that the genes 1a-17a of HPA-a were all expressed in the 154 healthy and unrelated platelet donors. Only genes 1b, 2b, 3b, 5b, 6b and 15b of HPA-b were expressed while genes 4b, 7b-14b, 16b were not expressed. Among the genotypes, aa homozygosity was predominant and HPA15 had the greatest heterozygosity, while HPA3 had lower heterozygosity. There were 23 combined types of HPA, 5 of them had a rate higher than 10%, and the frequencies of the other 18 were lower than 8%. HPA genotype frequencies showed a good consistency to Hardy-Weinberg equilibrium. It is concluded that the distribution of the allele polymorphism of HPA1-HPA17 in Mudanjiang area has its own characteristics, compared with other areas and some countries, the local HPA genotype database of platelet donors is established in Mudanjiang area, which can provide the matching donors for clinical use with immunological significance.
Adolescent
;
Adult
;
Alleles
;
Antigens, Human Platelet
;
genetics
;
Blood Donors
;
China
;
Databases, Genetic
;
Female
;
Gene Frequency
;
Genotype
;
Heterozygote
;
Homozygote
;
Humans
;
Male
;
Middle Aged
;
Young Adult

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