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Detection and identification of platelet antibodies and antigens in the clinical laboratory


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Pfueller SL, Cosgrove L, Firkin BG, Tew D. Relationship of raised platelet IgG in thrombocytopenia to total platelet protein content. Br J Haematol 1981;49:293–302.10.1111/j.1365-2141.1981.tb07226.xSearch in Google Scholar

Schwartz KA. Platelet antibody: review of detection methods. Am J Hematol 1988;29:106–14.10.1002/ajh.2830290208Search in Google Scholar

LoBuglio AF, Court WS, Vinocur L, et al. Immune thrombocytopenic purpura. Use of a 1251-labeled antihuman IgG monoclonal antibody to quantify platelet-bound IgG. N Engl J Med 1983;309:459–63.10.1056/NEJM198308253090804Search in Google Scholar

Shaw GM, Axelson J, Maglott JG, LoBuglio AF. Quantification of platelet-bound IgG by 1251-Staphylococcal protein A in immune thrombocytopenic purpura and other thrombocytopenic disorders. Blood 1984;63:154–61.10.1182/blood.V63.1.154.154Search in Google Scholar

Schiffer CA, Young V. Detection of platelet antibodies using a micro-enzyme-linked immunosorbent assay (ELISA). Blood 1983;61:311–17.10.1182/blood.V61.2.311.311Search in Google Scholar

Horai S, Claas FH, van Rood JJ. Detection of platelet antibodies by enzyme-linked immunosorbent assay (ELISA). Comparative studies with the indirect immunofluorescence assay. Immunol Lett 1981;3:155–8.10.1016/0165-2478(81)90119-XSearch in Google Scholar

Horai S, Claas FH, van Rood JJ. Detection of platelet antibodies by enzyme-linked immunosorbent assay (ELISA) on artificial monolayers of platelets. Immunol Lett 1981;3:67–72.10.1016/0165-2478(81)90052-3Search in Google Scholar

von dem Borne AE, Verheugt FW, Oosterhof F, et al. A simple immunofluorescence test for the detection of platelet antibodies. Br J Haematol 1978;39:195–207.10.1111/j.1365-2141.1978.tb01089.xSearch in Google Scholar

Rosenfeld CS, Nichols G, Bodensteiner DC. Flow cytometric measurement of antiplatelet antibodies. Am J Clin Pathol 1987;87:518–22.10.1093/ajcp/87.4.518Search in Google Scholar

Lazarchick J, Hall SA. Platelet-associated IgG assay using flow cytometric analysis. J Immunol Methods 1986;87:257–65.10.1016/0022-1759(86)90540-5Search in Google Scholar

Ramos RR, Curtis BR, Chaplin H. A latex particle assay for platelet-associated IgG. Transfusion 1992;32:235–8.10.1046/j.1537-2995.1992.32392213807.x1557805Search in Google Scholar

Ogden DM, Asfour A, Koller C, Lichtiger B. Platelet cross-matches of single-donor platelet concentrates using a latex agglutination assay. Transfusion 1993;33:644–50.10.1046/j.1537-2995.1993.33893342745.x8342230Search in Google Scholar

Shibata Y, Juji T, Nishizawa Y, et al. Detection of platelet antibodies by a newly developed mixed agglutination with platelets. Vox Sang 1981;41:25–31.10.1111/j.1423-0410.1981.tb01007.x7324440Search in Google Scholar

Rachel JM, Summers TC, Sinor LT, Plapp FV. Use of a solid phase red blood cell adherence method for pretransfusion platelet compatibility testing. Am J Clin Pathol 1988;90:63–8.10.1093/ajcp/90.1.633389344Search in Google Scholar

Furihata K, Nugent DJ, Bissonette A, et al. On the association of the platelet-specific alloantigen, Pena, with glycoprotein IIIa. Evidence for heterogeneity of glycoprotein IIIa. J Clin Invest 1987;80:1624–30.10.1172/JCI1132504424322445781Search in Google Scholar

Kiefel V, Santoso S, Weisheit M, Mueller-Eckhardt C. Monoclonal antibody-specific immobilization of platelet antigens (MAIPA): a new tool for the identification of platelet-reactive antibodies. Blood 1987;70:1722–6.10.1182/blood.V70.6.1722.1722Search in Google Scholar

Menitove JE, Pereira J, Hoffman R, et al. Cyclic thrombocytopenia of apparent autoimmune etiology. Blood 1989;73:1561–9.10.1182/blood.V73.6.1561.1561Search in Google Scholar

McMillan R, Tani P, Millard F, et al. Platelet-associated and plasma anti-glycoprotein autoantibodies in chronic ITP. Blood 1987;70:1040–5.10.1182/blood.V70.4.1040.1040Search in Google Scholar

Newman PJ, Derbes RS, Aster RH. The human platelet alloantigens, PlA1 and PlA2, are associated with a leucine33/proline33 amino acid polymorphism in membrane glycoprotein IIIa, and are distinguishable by DNA typing. J Clin Invest 1989;83:1778–81.10.1172/JCI1140823038912565345Search in Google Scholar

McFarland JG, Aster RH, Bussel JB, et al. Prenatal diagnosis of neonatal alloimmune thrombocytopenia using allele-specific oligonucleotide probes. Blood 1991;78:2276–82.10.1182/blood.V78.9.2276.2276Search in Google Scholar

Metcalfe P, Watkins NA, Ouwehand WH, et al. Nomenclature of human platelet antigens. Vox Sang 2003;85:240–5.10.1046/j.1423-0410.2003.00331.x14516468Search in Google Scholar

Curtis BR, Edwards JT, Hessner MJ, et al. Blood group A and B antigens are strongly expressed on platelets of some individuals. Blood 2000;96:1574–81.10.1182/blood.V96.4.1574Search in Google Scholar

Curtis BR, McFarland JG. Platelet immunology and alloimmunization. In: Simon TL, Dzik WH, Snyder E, et al., eds. Rossi’s principles of transfusion medicine. Philadelphia: Lippincott Williams & Wilkins, 2008:203–17.Search in Google Scholar

Smith GA, Ranasinghe E, Ouwehand WH. The importance of using multiple techniques for detection of platelet antibodies. Vox Sang 2007;93:306–8.10.1111/j.1423-0410.2007.00969.x18070274Search in Google Scholar

Garratty G, Arndt P. Applications of flow cytofluorometry to transfusion science. Transfusion 1995;35:157–78.10.1046/j.1537-2995.1995.35295125739.x7825212Search in Google Scholar

Visentin GP, Wolfmeyer K, Newman PJ, Aster RH. Detection of drug-dependent, platelet-reactive antibodies by antigen-capture ELISA and flow cytometry. Transfusion 1990;30:694–700.10.1046/j.1537-2995.1990.30891020326.x2219255Search in Google Scholar

Curtis BR, McFarland JG, Wu GG, et al. Antibodies in sulfonamide-induced immune thrombocytopenia recognize calcium-dependent epitopes on the glycoprotein Ilb/IIIa complex. Blood 1994;84:176–83.10.1182/blood.V84.1.176.176Search in Google Scholar

Von Drygalski A, Curtis BR, Bougie DW, et al. Vancomycin-induced immune thrombocytopenia. N Engl J Med 2007;356:904–10.10.1056/NEJMoa06506617329697Search in Google Scholar

Aster RH, Bougie DW. Drug-induced immune thrombocytopenia. N Engl J Med 2007;357:580–7.10.1056/NEJMra06646917687133Search in Google Scholar

Aster RH, Curtis BR, McFarland JG, Bougie DW. Drug-induced immune thrombocytopenia: pathogenesis, diagnosis, and management. J Thromb Haemost 2009;7:911–18.10.1111/j.1538-7836.2009.03360.x293518519344362Search in Google Scholar

Christopoulos CG, Kelsey HC, Machin SJ. A flow-cytometric approach to quantitative estimation of platelet surface immunoglobulin G. Vox Sang 1993;64:106–15.Search in Google Scholar

Stockelberg D, Hou M, Jacobsson S, et al. Detection of platelet antibodies in chronic idiopathic thrombocytopenic purpura (ITP). A comparative study using flow cytometry, a whole platelet ELISA, and an antigen capture ELiSa. Eur J Haematol 1996;56:72–7.10.1111/j.1600-0609.1996.tb00298.x8599998Search in Google Scholar

Hezard N, Simon G, Mace C, et al. Is flow cytometry accurate enough to screen platelet autoantibodies? Transfusion 2008;48:513–18.10.1111/j.1537-2995.2007.01556.x18067500Search in Google Scholar

Davoren A, Bussel J, Curtis BR, et al. Prospective evaluation of a new platelet glycoprotein (GP)-specific assay (PakAuto) in the diagnosis of autoimmune thrombocytopenia (AITP). Am J Hematol 2005;78:193–7.10.1002/ajh.2030915726595Search in Google Scholar

Kohler M, Dittmann J, Legler TJ, et al. Flow cytometric detection of platelet-reactive antibodies and application in platelet crossmatching. Transfusion 1996;36:250–5.10.1046/j.1537-2995.1996.36396182144.x8604511Search in Google Scholar

Skogen B, Christiansen D, Husebekk A. Flow cytometric analysis in platelet crossmatching using a platelet suspension immunofluorescence test. Transfusion 1995;35:832–6.10.1046/j.1537-2995.1995.351096026364.x7570913Search in Google Scholar

Rachel JM, Sinor LT, Tawfik OW, et al. A solid-phase red cell adherence test for platelet cross-matching. Med Lab. Sci 1985;42:194–5.Search in Google Scholar

Lin M, Shieh SH, Liang DC, et al. Neonatal alloimmune thrombocytopenia in Taiwan due to an antibody against a labile component of HPA-3a (Baka). Vox Sang 1995;69:336–40.Search in Google Scholar

Harrison CR, Curtis BR, McFarland JG, et al. Severe neonatal alloimmune thrombocytopenia caused by antibodies to human platelet antigen 3a (Baka) detectable only in whole platelet assays. Transfusion 2003;43:1398–402.10.1046/j.1537-2995.2003.00533.x14507271Search in Google Scholar

Hewitt J, Burton IE. Incidence of autoantibodies to GPIIb/IIIa in chronic autoimmune thrombocytopenic purpura may be overestimated by the MAIPA. Br J Haematol 1994;86:418–20.10.1111/j.1365-2141.1994.tb04758.x8199041Search in Google Scholar

Klee GG. Human anti-mouse antibodies. Arch Pathol Lab Med 2000;124:921–3.10.5858/2000-124-0921-HAMA10835540Search in Google Scholar

Helmberg W, Folsch B, Wagner T, Lanzer G. Detection and differentiation of platelet-specific antibodies by flow cytometry: the bead-mediated platelet assay. Transfusion 1997;37:502–6.10.1046/j.1537-2995.1997.37597293881.x9149775Search in Google Scholar

Bakchoul T, Meyer O, Agaylan A, et al. Rapid detection of HPA-1 alloantibodies by platelet antigens immobilized onto microbeads. Transfusion 2007;47:1363–8.10.1111/j.1537-2995.2007.01274.x17655579Search in Google Scholar

Fujiwara K, Shimano K, Tanaka H, et al. Application of bead array technology to simultaneous detection of human leucocyte antigen and human platelet antigen antibodies. Vox Sang 2009;96:244–51.10.1111/j.1423-0410.2008.01140.x19207165Search in Google Scholar

Pei R, Wang G, Tarsitani C, et al. Simultaneous HLA class I and class II antibodies screening with flow cytometry. Hum Immunol 1998;59:313–22.10.1016/S0198-8859(98)00020-2Search in Google Scholar

Warkentin TE. Clinical picture of heparin-induced thrombocytopenia. In: Warkentin TE, Greinacher A, eds. Heparin-induced thrombocytopenia. New York: Marcel Dekker, 2000:43–80.Search in Google Scholar

Warkentin TE. Laboratory testing for heparin-induced thrombocytopenia. J Thromb Thrombolysis 2000;10(Suppl 1):35–45.10.1023/A:1027381103184Search in Google Scholar

Amiral J, Bridey F, Dreyfus M, et al. Platelet factor 4 complexed to heparin is the target for antibodies generated in heparin-induced thrombocytopenia. Thromb Haemost 1992;68:95–6.10.1055/s-0038-1656329Search in Google Scholar

Warkentin TE. Confirmatory procedure and other maneuvers to assess pathogenicity of platelet factor 4 (PF4)-dependent antibodies—distinguishing “signal” from “noise”. Thromb Haemost 2008;100:523–4.10.1160/TH08-08-0533Search in Google Scholar

Whitlatch NL, Perry SL, Ortel TL. Anti-heparin/platelet factor 4 antibody optical density values and the confirmatory procedure in the diagnosis of heparin-induced thrombocytopenia. Thromb Haemost 2008;100:678–84.10.1160/TH08-02-0118Search in Google Scholar

Dellaria SM, Greilich PE, Sarode R. Urgent cardiac surgery in a patient with a remote history of heparin-induced thrombocytopenia: use of the anti-PF4/heparin ELISA confirmatory test. Anesth Analg 2008;107:379–81.10.1213/ane.0b013e318172af0f18633011Search in Google Scholar

Warkentin TE, Sheppard JA, Moore JC, et al. Laboratory testing for the antibodies that cause heparin-induced thrombocytopenia: how much class do we need? J Lab Clin Med 2005;146:341–6.10.1016/j.lab.2005.08.00316310517Search in Google Scholar

Amiral J, Wolf M, Fischer A, et al. Pathogenicity of IgA and/or IgM antibodies to heparin-PF4 complexes in patients with heparin-induced thrombocytopenia. Br J Haematol 1996;92:954–9.10.1046/j.1365-2141.1996.407945.x8616093Search in Google Scholar

McFarland JG, Curtis BR, Lochowicz AJ, et al. Correlation of PF4 ELISA results and clinical likelihood of HIT—can we improve on specificity? Blood 2008;(Suppl) 112:3423.10.1182/blood.V112.11.3423.3423Search in Google Scholar

Sheridan D, Carter C, Kelton JG. A diagnostic test for heparin-induced thrombocytopenia. Blood 1986;67:27–30.10.1182/blood.V67.1.27.27Search in Google Scholar

Hurd CM, Cavanagh G, Schuh A, et al. Genotyping for platelet-specific antigens: techniques for the detection of single nucleotide polymorphisms. Vox Sang 2002;83:1–12.10.1046/j.1423-0410.2002.00187.x12100382Search in Google Scholar

Curtis BR. Genotyping for human platelet alloantigen polymorphisms: applications in the diagnosis of alloimmune platelet disorders. Semin Thromb Hemost 2008;34:539–48.10.1055/s-0028-110336519085653Search in Google Scholar

Skogen B, Bellissimo DB, Hessner MJ, et al. Rapid determination of platelet alloantigen genotypes by polymerase chain reaction using allele-specific primers. Transfusion 1994;34:955–60.10.1046/j.1537-2995.1994.341195065032.x7526491Search in Google Scholar

Nauck MS, Gierens H, Nauck MA, et al. Rapid genotyping of human platelet antigen 1 (HPA-1) with fluorophore-labelled hybridization probes on the LightCycler. Br J Haematol 1999;105:803–10.10.1046/j.1365-2141.1999.01427.x10354151Search in Google Scholar

Randen I, Sorensen K, Killie MK, Kjeldsen-Kragh J. Rapid and reliable genotyping of human platelet antigen (HPA)-1, -2, -3, -4, and -5 a/b and Gov a/b by melting curve analysis. Transfusion 2003;43:445–50.10.1046/j.1537-2995.2003.00354.x12662276Search in Google Scholar

Kjaer KM, Jaegtvik S, Husebekk A, Skogen B. Human platelet antigen 1 (HPA 1) genotyping with 5′ nuclease assay and sequence-specific primers reveals a single nucleotide deletion in intron 2 of the HPA 1a allele of platelet glycoprotein IIIa. Br J Haematol 2002;117:405–8.10.1046/j.1365-2141.2002.03454.x11972525Search in Google Scholar

Bugert P, McBride S, Smith G, et al. Microarray-based genotyping for blood groups: comparison of gene array and 5’-nuclease assay techniques with human platelet antigen as a model. Transfusion 2005;45:654–9.10.1111/j.1537-2995.2005.04318.x15847651Search in Google Scholar

de Haasa M, van der Schoota CE, Beiboera SHW, et al. Red blood cell and platelet genotyping: from current practice to future high-throughput donor typing. Transfus Med Hemother 2006;33:260–6.10.1159/000092582Search in Google Scholar

Curtis BR, Fick A, Lochowicz AJ, et al. Neonatal alloimmune thrombocytopenia associated with maternal-fetal incompatibility for blood group B. Transfusion 2008;48:358–64.Search in Google Scholar

Garritsen HS, Fan AX, Bosse N, et al. Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry for genotyping of human platelet-specific antigens. Transfusion 2009;49:252–8.10.1111/j.1537-2995.2008.01953.x18980617Search in Google Scholar

Bertrand G, Bianchi F, Chenet C, et al. New mutation in the platelet beta3-integrin gene: implication for the diagnosis of fetomaternal alloimmunization. Transfusion 2006;46:2138–41.10.1111/j.1537-2995.2006.01043.x17176326Search in Google Scholar

Skogen B, Wang R, McFarland JG, Newman PJ. A dinucleotide deletion in exon 4 of the PlA2 allelic form of glycoprotein IIIa: implications for the correlation of serologic versus genotypic analysis of human platelet alloantigens. Blood 1996;88:3831–6.10.1182/blood.V88.10.3831.bloodjournal88103831Search in Google Scholar

Smith GA, Rankin A, Riddle C, et al. Severe fetomaternal alloimmune thrombocytopenia due to anti-human platelet antigen (HPA)-1a in a mother with a rare and silenced ITGB3*0101 (GPIIIa) allele. Vox Sang 2007;93:325–30.10.1111/j.1423-0410.2007.00968.x18070277Search in Google Scholar

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Medicine, Clinical Medicine, Laboratory Medicine