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Validation of a new method for platelet HPA-1 phenotyping

Polymorphisms of platelet glycoproteins (GPs) are frequently targets for anti-platelet antibodies. At least 19 antigenic polymorphisms have been identified on platelet GPs. Antibodies against the HPA-lb polymorphism (a Leu to Pro switch at amino acid residue 33 of the IIIa sub-unit of GP IIb/Illa) have been attributed to as much as 90% of all cases of neonatal alloimmune thrombocytopenic purpura and posttransfusion purpura in caucasians. The HPA-lb polymorphism has also been equivocally associated with coronary artery disease, particularly early onset (<60 years of age) myocardial infarction. Current technology for identifying individuals with the HPA-lb phenotype is limited to the labor-intensive, highly technical and expensive process of DNA amplification by polymerase chain reaction and restriction fragment length polymorphism (PCR/RFLP) analysis.This study proposes an alternative method for phenotyping individuals for the HPA-1 polymorphism using the Biocytex Platelet HPA-1 kit. The kit identifies the HPA-1 polymorphism utilizing two monoclonal CD61 (platelet glycoprotein IIb/IIIa) antibodies, one of which has a lowered affinity for GP llb/Illa possessing the HPA-lb polymorphism. Fluorescent labeling of bound antibody allows for flow cytometric quantitation of antibody binding capacity (ABC) for both monoclonal antibodies, and ratios derived from the ABC can be used to phenotype previously unknown samples.The Biocytex HPA-1 kit identified 73 of 74 (98.6%) individuals possessing the HPA1 a/HPA-1 a phenotype, 22 of 22 (100%) HPA-1 a/HPA-1 b individuals and 4 of 4 (100%) HPAIb/HPA-Ib individuals. All HPA-lb phenotypes were confirmed by PCR/RFLP. Total accuracy of the test system was 99%. / Department of Biology

Identiferoai:union.ndltd.org:BSU/oai:cardinalscholar.bsu.edu:handle/186619
Date January 1999
CreatorsTaylor, James Michael
ContributorsTriplett, Douglas A.
Source SetsBall State University
Detected LanguageEnglish
Formatviii, 62 leaves : ill. ; 28 cm.
SourceVirtual Press

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