Extended red blood cell matching for all transfusion recipients is feasible. 2022

Joost H J van Sambeeck, and C Ellen van der Schoot, and Nico M van Dijk, and Henk Schonewille, and Mart P Janssen
Department of Donor Medicine Research, Sanquin Research, Amsterdam, The Netherlands.

OBJECTIVE To demonstrate the feasibility and effectiveness of extended matching of red blood cells (RBC) in practice. BACKGROUND At present, alloimmunisation preventing matching strategies are only applied for specific transfusion recipient groups and include a limited number of RBC antigens. The general assumption is that providing fully matched RBC units to all transfusion recipients is not feasible. In this article we refute this assumption and compute the proportion of alloimmunisation that can be prevented, when all donors and transfusion recipients are typed for A, B, D plus twelve minor blood group antigens (C, c, E, e, K, Fya , Fyb , Jka , Jkb , M, S and s). METHODS We developed a mathematical model that determines the optimal sequence for antigen matching. The model allows for various matching strategies, issuing policies and inventory sizes. RESULTS For a dynamic inventory composition (accounting for randomness in the phenotypes supplied and requested) and an antigen identical issuing policy 97% and 94% of alloimmunisation events can be prevented, when respectively one and two RBC units per recipient are requested from an inventory of 1000 units. Although this proportion decreases with smaller inventory sizes, even for an inventory of 60 units almost 50% of all alloimmunisation events can be prevented. CONCLUSIONS In case antigen of both donors and recipients are comprehensively typed, extended preventive matching is feasible for all transfusion recipients in practice and will significantly reduce transfusion-induced alloimmunisation and (alloantibody-induced) haemolytic transfusion reactions.

UI MeSH Term Description Entries
D007518 Isoantibodies Antibodies from an individual that react with ISOANTIGENS of another individual of the same species. Alloantibodies
D001788 Blood Grouping and Crossmatching Testing erythrocytes to determine presence or absence of blood-group antigens, testing of serum to determine the presence or absence of antibodies to these antigens, and selecting biocompatible blood by crossmatching samples from the donor against samples from the recipient. Crossmatching is performed prior to transfusion. Blood Typing,Crossmatching, Blood,Blood Grouping,Blood Crossmatching,Grouping, Blood,Typing, Blood
D001803 Blood Transfusion The introduction of whole blood or blood component directly into the blood stream. (Dorland, 27th ed) Blood Transfusions,Transfusion, Blood,Transfusions, Blood
D004912 Erythrocytes Red blood cells. Mature erythrocytes are non-nucleated, biconcave disks containing HEMOGLOBIN whose function is to transport OXYGEN. Blood Cells, Red,Blood Corpuscles, Red,Red Blood Cells,Red Blood Corpuscles,Blood Cell, Red,Blood Corpuscle, Red,Erythrocyte,Red Blood Cell,Red Blood Corpuscle
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000744 Anemia, Hemolytic, Autoimmune Acquired hemolytic anemia due to the presence of AUTOANTIBODIES which agglutinate or lyse the patient's own RED BLOOD CELLS. Anemia, Hemolytic, Idiopathic Acquired,Autoimmune Haemolytic Anaemia,Autoimmune Hemolytic Anemia,Cold Agglutinin Disease,Hemolytic Anemia, Autoimmune,Acquired Autoimmune Hemolytic Anemia,Anemia, Hemolytic, Cold Antibody,Cold Antibody Disease,Cold Antibody Hemolytic Anemia,Idiopathic Autoimmune Hemolytic Anemia,Agglutinin Disease, Cold,Anaemia, Autoimmune Haemolytic,Anemia, Autoimmune Hemolytic,Autoimmune Haemolytic Anaemias,Autoimmune Hemolytic Anemias,Cold Agglutinin Diseases,Cold Antibody Diseases,Haemolytic Anaemia, Autoimmune
D065227 Transfusion Reaction Complications of BLOOD TRANSFUSION. Included adverse reactions are common allergic and febrile reactions; hemolytic (delayed and acute) reactions; and other non-hemolytic adverse reactions such as infections and adverse immune reactions related to immunocompatibility. Delayed Hemolytic Transfusion Reaction,Acute Hemolytic Transfusion Reaction,Blood Transfusion-Associated Adverse Reactions,Delayed Serologic Transfusion Reaction,Febrile Non-Hemolytic Transfusion Reaction,Hemolytic Transfusion Reaction,Hypotensive Transfusion Reaction,Post-Transfusion Purpura,Posttransfusion Purpura,TAGHD,Transfusion-Associated Allergic Reaction,Transfusion-Associated Circulatory Overload,Transfusion-Associated Dyspnea,Transfusion-Associated Graft Vs. Host Disease,Transfusion-Transmitted Infection,Allergic Reaction, Transfusion-Associated,Blood Transfusion Associated Adverse Reactions,Circulatory Overload, Transfusion-Associated,Circulatory Overloads, Transfusion-Associated,Dyspnea, Transfusion-Associated,Febrile Non Hemolytic Transfusion Reaction,Hemolytic Transfusion Reactions,Infection, Transfusion-Transmitted,Post Transfusion Purpura,Posttransfusion Purpuras,Purpura, Post-Transfusion,Purpura, Posttransfusion,Reaction, Hemolytic Transfusion,Reaction, Hypotensive Transfusion,Reactions, Hemolytic Transfusion,Transfusion Associated Allergic Reaction,Transfusion Associated Circulatory Overload,Transfusion Associated Dyspnea,Transfusion Associated Graft Vs. Host Disease,Transfusion Reaction, Hemolytic,Transfusion Reaction, Hypotensive,Transfusion Reactions,Transfusion Reactions, Hemolytic,Transfusion Reactions, Hypotensive,Transfusion Transmitted Infection,Transfusion-Associated Circulatory Overloads,Transfusion-Transmitted Infections

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