Wymagane uwierzytelnienie

Review: antibodies and antigens in immune neutropenias

   | 17 lis 2020

Zacytuj

Lalezari P, Bernard JE. An isologous antigen-antibody reaction with human neutrophils related to neonatal neutropenia. J Clin Invest 1966;45:1741–50.10.1172/JCI1054802928585926443Search in Google Scholar

Lalezari P, Radel E. Neutrophil-specific antigens: immunology and clinical significance. Semin Hematol 1974;11:281–90.Search in Google Scholar

Lalezari P, Murphy GB, Allen FH. NB1, a new neutrophil antigen involved in the pathogenesis of neonatal neutropenia. J Clin Invest 1971;50:1108–15.10.1172/JCI1065822920335552408Search in Google Scholar

Lalezari P, Petrosova M, Jiang AF. NB2, an allele of NB1 neutrophil specific antigen: relationship to 9a (abstract). Transfusion 1982;22:433.Search in Google Scholar

Lalezari P, Thalenfield B, Weinstein WJ. The third neutrophil antigen. In: Terasaki PE, ed. Histocompatibility testing. Baltimore: Williams and Wilkens, 1970:319–22.Search in Google Scholar

Verheught FWA, von dem Borne AEGKr, van Noord-Bokhorst JC, Nijenhuis LE, Engelfriet CP. ND1, a new neutrophil granulocyte antigen. Vox Sang 1978;35:13–7.Search in Google Scholar

Claas FHJ, Langerak J, Sabbe LJM. NE1, a new neutrophil specific antigen. Tissue Antigens 1979;13:129–34.10.1111/j.1399-0039.1979.tb01148.x87023Search in Google Scholar

Metcalfe P, Waters AH. Location of the granulocyte-specific antigen LAN on the Fc-receptor III. Transfus Med 1992;2:283–7.10.1111/j.1365-3148.1992.tb00171.x1285041Search in Google Scholar

Bux J, Hartmann C, Mueller-Eckhardt C. Alloimmune neonatal neutropenia resulting from immunization to a high-frequency antigen on the granulocyte Fcγ-receptor III. Transfusion 1994;34:608–11.10.1046/j.1537-2995.1994.34794330016.x8053041Search in Google Scholar

von dem Borne AEGKr. Neutrophil alloantigens: nature and clinical relevance. Vox Sang 1994;67(Suppl 2):105–12.10.1111/j.1423-0410.1994.tb04554.x7975470Search in Google Scholar

Bux J, Behrens G, Leist M, Mueller-Eckhardt C. Evidence that the granulocyte-specific antigen NC1 is identical with NA2. Vox Sang 1995;68:46–9.10.1111/j.1423-0410.1995.tb02544.x7536989Search in Google Scholar

Huizinga TWJ, Kleijer M, Tetteroo PAT, Roos D, von dem Borne AEGKr. Biallelic neutrophil NA-antigen system is associated with a polymorphism on the phosphoinositol-linked Fcγ receptor III (CD16). Blood 1990;75:213–7.10.1182/blood.V75.1.213.213Search in Google Scholar

Van Leeuwen A, Eernise JG, van Rood JJ. A new leukocyte group with two alleles: leukocyte group five. Vox Sang 1964;9:431–46.10.1159/000464883Search in Google Scholar

Kline WE, Press C, Clay M, Keahen-Schnell M, Hackel E, McCullough J. Three sera defining a new granulocyte-monocyte-T-lymphocyte antigen. Vox Sang 1986;50:181–6.Search in Google Scholar

Stroncek DF, Ramsey G, Herr GP, Eiber G, Clay ME, Ketyer EC. Identification of a new white cell antigen. Transfusion 1994;34:706–11.10.1046/j.1537-2995.1994.34894353468.x8073489Search in Google Scholar

Stroncek DF, Skubitz KM, McCullough JJ. Biochemical characterization of the neutrophil-specific antigen NB1. Blood 1990;75:744–55.10.1182/blood.V75.3.744.744Search in Google Scholar

Goldschmeding R, van Dalen CM, Faber N, et al. Further characterization of the NB1 antigen as a variably expressed 56-62 kD GPI-linked glycoprotein of plasma membranes and specific granules of neutrophils. Br J Haematol 1992;81:336–45.10.1111/j.1365-2141.1992.tb08237.x1382544Search in Google Scholar

Stroncek DF, Shankar RA, Plachta LB, Clay ME, Dalmasso AP. Polyclonal antibodies against the NB1-bearing 58-to 64-kDa glycoprotein of human neutrophils do not identify an NB2-bearing molecule. Transfusion 1992;33:399–404.10.1046/j.1537-2995.1993.33593255600.x8488543Search in Google Scholar

Stroncek DF, Shankar RA, Herr GP. Quinine-dependent antibodies to neutrophils react with a 60-Kd glycoprotein on which neutrophil-specific antigen NB1 is located and an 85-Kd glycosyl-phosphatidylinositol-linked N-glycosylated plasma membrane glycoprotein. Blood 1993;81:2758–66.10.1182/blood.V81.10.2758.2758Search in Google Scholar

Rothko K, Kickler TS, Clay ME, Johnson RJ, Stroncek DF. Immunoblotting characterization of neutrophil antigenic targets in autoimmune neutropenia. Blood 1989;74:1698–703.10.1182/blood.V74.5.1698.1698Search in Google Scholar

Bux J, Kober B, Kiefel V, Mueller-Eckhardt C. Analysis of granulocyte-reactive antibodies using an immunoassay based upon monoclonal-antibody-specific immobilization of granulocyte antigens. Tranfus Med 1993;3:157–62.10.1111/j.1365-3148.1993.tb00055.x8374701Search in Google Scholar

Hartman KR, Wright DG. Identification of autoantibodies specific for the neutrophil adhesion glycoproteins Cd11b/Cd18 in patients with autoimmune neutropenia. Blood 1991;78: 1096–104.10.1182/blood.V78.4.1096.1096Search in Google Scholar

Currie MS, Weinberg J, Rustagi PK, Logue GL. Antibodies to granulocyte precursors in selective myeloid hypoplasia and other autoimmune neutropenias: use of HL-60 cells as targets. Blood 1987;69:529–36.10.1182/blood.V69.2.529.529Search in Google Scholar

Kuijpers TW, Tool ATJ, van der Schoot CE, et al. Membrane surface antigen expression on neutrophils: reappraisal of the use of surface markers for neutrophil activation. Blood 1991;78:1105–11.10.1182/blood.V78.4.1105.1105Search in Google Scholar

Macey MG, McCarthy DA, Newland AC. The ex-vivo function and expression of function-associated antigens of peripheral blood neutrophils and monocytes. Exp Hematol 1994;22: 967–72.Search in Google Scholar

Lucas GF, Carrington PA. Results of the first International Granulocyte Serology Workshop. Vox Sang 1990;59:251–6.10.1111/j.1423-0410.1990.tb00249.x1981408Search in Google Scholar

Lalezari P. Granulocyte antigen systems. In: Engelfriet CP, von Loghem J, von dem Borne AEGKr, eds. Research monographs in immunology. Immunohaematology (Vol. 5). Amsterdam: Elsevier, 1984:33–43.Search in Google Scholar

Verheught FWA, von dem Borne AEGKr, Decary F, Engelfriet CP. The detection of granulocyte alloantibodies by an indirect immunofluorescence test. Br J Haematol 1977;36:533–44.10.1111/j.1365-2141.1977.tb00994.xSearch in Google Scholar

Hadley AG, Holburn AM, Bunch C, Chapel H. Anti-granulocyte opsonic activity and autoimmune neutropenia. Br J Haematol 1986;63:581–9.10.1111/j.1365-2141.1986.tb07536.xSearch in Google Scholar

Hadley AG, Byron MA, Chapel H, Bunch C, Holburn AM. Antigranulocyte opsonic activity in sera from patients with systemic lupus erythematosus. Br J Haematol 1987;65:61–5.10.1111/j.1365-2141.1987.tb06136.xSearch in Google Scholar

Lucas GF. Prospective evaluation of the chemiluminescence test for the detection of granulocyte antibodies. Comparison with the granulocyte immunofluorescence test. Vox Sang 1994;66:141–7.10.1159/000462494Search in Google Scholar

Stroncek DF, Herr GP, Maguire RB, Eiber G, Clement LT. Characterization of the neutrophil molecules identified by quinine-dependent antibodies from two patients. Transfusion 1994;34:980–5.10.1046/j.1537-2995.1994.341195065037.xSearch in Google Scholar

Bux J, Stein EL, Santoso S, Mueller-Eckhardt C. NA gene frequencies in the German population, determined by polymerase chain reaction with sequence-specific primers. Transfusion 1995;35:54–7.10.1046/j.1537-2995.1995.35195090663.xSearch in Google Scholar

McCullough J, Clay M, Press C, Kline W. In: Granulocyte serology: a clinical and laboratory guide. American Society of Clinical Pathologists Press, 1988.Search in Google Scholar

Huizinga TWJ, Kuijpers TW, Kleijer M, et al. Maternal genomic neutrophil FCRIII deficiency leading to neonatal isoimmune neutropenia. Blood 1990;76:1927–32.10.1182/blood.V76.10.1927.1927Search in Google Scholar

Stroncek DF, Skubitz KM, Plachta LB, et al. Alloimmune neonatal neutropenia due to an antibody to the neutrophil Fc-γ receptor III with maternal deficiency of CD16 antigen. Blood 1991;77:1572–80.10.1182/blood.V77.7.1572.1572Search in Google Scholar

Lalezari P, Jiang AF, Yegen L, Santorineou M. Chronic autoimmune neutropenia due to anti-NA2 antibody. N Engl J Med 1975;293:744–7.10.1056/NEJM197510092931504Search in Google Scholar

Lalezari P, Karshidi M, Pterosova M. Autoimmune neutropenia of infancy. J Pediatr 1986;109:764–9.10.1016/S0022-3476(86)80690-4Search in Google Scholar

Conway LT, Clay ME, Kline WE, Ramsay NKC, Krivit W, McCullough J. Natural history of primary autoimmune neutropenia in infancy. Pediatrics 1987;79:728–33.10.1542/peds.79.5.728Search in Google Scholar

Bussel JB, Abboud MR. Autoimmune neutropenia of childhood. CRC Crit Rev Oncol Hematol 1987;7:37–51.10.1016/S1040-8428(87)80013-6Search in Google Scholar

Ducos R, Madyastha PR, Warrier RP, Glassman AB, Shirley LR. Neutrophil agglutinins in idiopathic chronic neutropenia of early childhood. Am J Dis Child 1986;140:65–8.10.1001/archpedi.1986.02140150067039Search in Google Scholar

Lyall EGH, Lucas GF, Eden OB. Autoimmune neutropenia of infancy. J Clin Pathol 1992;45:431–4.10.1136/jcp.45.5.431Search in Google Scholar

Bux J, Mueller-Eckhardt G, Mueller-Eckhardt C. Autoimmunization against the neutrophil-specific NA1 antigen is associated with HLA-DR2. Hum Immunol 1991;30:18–21.10.1016/0198-8859(91)90065-HSearch in Google Scholar

Shastri KA, Logue GL. Autoimmune neutropenia. Blood 1994;81:1984–95.Search in Google Scholar

Van der Veen JPW, Hack CE, Engelfriet C, Pegels JG, von dem Borne AEGKr. Chronic idiopathic and secondary neutropenia: clinical and serological investigations. Br J Haematol 1986;63:161–71.10.1111/j.1365-2141.1986.tb07506.xSearch in Google Scholar

Verheught FWA, von dem Borne AEGKr, van Noord-Bokhorst JC, Engelfriet CP. Autoimmune granulocytopenia: the detection of granulocyte autoantibodies with the immunofluorescence test. Br J Haematol 1978;39:339–50.10.1111/j.1365-2141.1978.tb01106.xSearch in Google Scholar

Logue GL, Shastri KA, Laughlin M, Shimm DS, Ziolowski LM, Iglehart JL. Idiopathic neutropenia: anti-neutrophil antibodies and clinical correlations. Am J Med 1991;90:211–6.10.1016/0002-9343(91)80162-FSearch in Google Scholar

Minchinton RM, Waters AH, Malpas JS, Gordon-Smith EC, Barret AJ. Selective thrombocytopenia and neutropenia occurring after bone marrow transplantation—evidence of an autoimmune basis. Clin Lab Haematol 1984a;6:157–63.10.1111/j.1365-2257.1984.tb00538.x6386285Search in Google Scholar

Minchinton RM, Waters AH, Malpas JS, Starke I, Kendra JR, Barret AJ. Platelet- and granulocyte-specific antibodies after allogeneic and autologous bone marrow grafts. Vox Sang 1984;46:125–35.10.1111/j.1423-0410.1984.tb00064.x6369779Search in Google Scholar

Klumpp TR, Caligiuri MA, Rabinowe SN, Soiffer RJ, Murray C, Ritz J. Autoimmune pancytopenia following allogeneic bone marrow transplantation. Bone Marrow Transplantation 1990;6:445–7.Search in Google Scholar

Bashey A, Owen I, Lucas GF, et al. Late onset immune pancytopenia following bone marrow transplantation. Br J Haematol 1991;78:268–74.10.1111/j.1365-2141.1991.tb04427.xSearch in Google Scholar

Repp R, Valerius T, Sendler A, et al. Neutrophils express the high affinity receptor for IgG (Fc gamma RI, CD16) after in vivo application of recombinant human granulocyte colony-stimulating factor. Blood 1991;78:885–9.10.1182/blood.V78.4.885.885Search in Google Scholar

Chapman JF, Murphy MF, Evans J, Waters AH. G-CSF and the granulocyte immunofluorescence test—a warning (abstract). Blood 1992;80(Suppl 1):206.Search in Google Scholar

Popovsky MA, Moore SB. Diagnostic and pathogenetic considerations in transfusion-related acute lung injury. Transfusion 1985;25:573–7.10.1046/j.1537-2995.1985.25686071434.xSearch in Google Scholar

Van Buren NL, Stroncek DF, Clay ME, McCullough J, Dalmasso AP. Transfusion-related acute lung injury caused by an NB2 granulocyte-specific antibody in a patient with thrombotic thrombocytopenic purpura. Transfusion 1990;30:42–5.10.1046/j.1537-2995.1990.30190117629.xSearch in Google Scholar

Rogers WO, Friedberg RC, Tilden AB, Vaughan WP. Transfusion-related acute lung injury (TRALI) during allogeneic HLA-identical bone marrow infusion (abstract). Blood 1994;84:(Supp 1)1951.Search in Google Scholar

Stroncek DF. Drug-induced immune neutropenia. Trans Med Rev 1993;VII:268–74.10.1016/S0887-7963(93)70146-7Search in Google Scholar

Murphy MF, Riordan T, Minchinton RM, et al. Demonstration of an immune-mediated mechanism of penicillin-induced neutropenia and thrombocytopenia. Br J Haematol 1983;55: 155–60.10.1111/j.1365-2141.1983.tb01233.x6882683Search in Google Scholar

Murphy MF, Metcalfe PC, Grint PC, et al. Cephalosporin-induced immune neutropenia. Br J Haematol 1985;59:9–14.10.1111/j.1365-2141.1985.tb02957.x3882133Search in Google Scholar

Salama A, Schultz B, Kifel V, et al. Immune-mediated agranulocytosis related to drugs and their metabolites: mode of sensitization and heterogeneity of antibodies. Br J Haematol 1989;72:127–32.10.1111/j.1365-2141.1989.tb07672.x2788011Search in Google Scholar

Maguire RB, Stroncek DF, Campbell AC. Recurrent pancytopenia, coagulopathy and renal failure associated with multiple quinine-dependent antibodies. Ann Intern Med 1993;119:243-4.10.7326/0003-4819-119-3-199308010-000068323089Search in Google Scholar

Chong BH, Berndt MC, Koutts J, Castaldi PA. Quinidine-induced thrombocytopenia and leukopenia: demonstration and characterization of distinct antiplatelet and antileukocyte antibodies. Blood 1983;62:1218–23.10.1182/blood.V62.6.1218.1218Search in Google Scholar

Stroncek DF, Vercellotti GM, Hammerschmidt DE, Christie DJ, Shankar RA, Jacob HS. Characterization of multiple quininedependent antibodies in a patient with episodic hemolytic uremic syndrome and immune agranulocytosis. Blood 1992;80: 241–8.10.1182/blood.V80.1.241.241Search in Google Scholar

Blayney DW. Quinine-associated immune thrombocytopenia, neutropenia and renal failure in a patient with Klinefelter’s syndrome. Blood 1992;80:2686.10.1182/blood.V80.10.2686.2686Search in Google Scholar

Pittman SJ, Noble AL, Lucas GF. Quinine-induced immune thrombocytopenia and neutropenia: a case report (abstract). Transfus Med 1992;3(Supp 1):102.Search in Google Scholar

Gottschall JL, Elliot W, Lianos E, McFarland JG, Wolfmeyer K, Aster RH. Quinine-induced immune thrombocytopenia associated with hemolytic uremic syndrome: a new clinical entity. Blood 1991;77:306–10.10.1182/blood.V77.2.306.306Search in Google Scholar

Gresham HD, Graham IL, Anderson DC, Brown EJ. Leukocyte adhesion-deficient neutrophils fail to amplify phagocytic function in response to stimulation: evidence for CD11b/CD18-dependent and -independent mechanisms of phagocytosis. J Clin Invest 1991;88:588–97.10.1172/JCI1153432953911677946Search in Google Scholar

Davis P, Johnston C, Bertouch J, Starkebaum G. Depressed superoxide radical generation by neutrophils from patients with rheumatoid arthritis and neutropenia: correlation with neutrophil reactive IgG. Ann Rheum Dis 1987;46:51-4.10.1136/ard.46.1.5110020583028289Search in Google Scholar

Kramer N, Perez HD, Goldstein IM. An immunoglobulin inhibitor of polymorphonuclear leukocyte motility in a patient with recurrent infection. N Engl J Med 1980;303:1253–8.10.1056/NEJM1980112730322027421962Search in Google Scholar

Macey MG, Sangster J, Veys PA, Newland AC. Flow cytometric analysis of the functional ability of neutrophils from patients with autoimmune neutropenia. J Microsc 1990;159:277–83.10.1111/j.1365-2818.1990.tb03033.x2243362Search in Google Scholar

Bux J, Dickman JO, Stockert U, Mueller-Eckhardt C. Influence of granulocyte antibodies on granulocyte function. Vox Sang 1993;64:220–5.10.1111/j.1423-0410.1993.tb03059.x8517050Search in Google Scholar

Ory PA, Clark MR, Kwoh EE, Clarkson SB, Goldstein IM. Sequences of complementary DNAs that encode the NA1 and NA2 forms of Fc receptor II on neutrophils. J Clin Invest 1989; 84:1688–91.10.1172/JCI1143503040392478590Search in Google Scholar

Stein EL, Bux J, Santoso S, Mueller-Eckhardt C. Typing of the granulocyte-specific NA antigens by restriction fragment length polymorphism analysis. Br J Haematol 1994;87:428–30.10.1111/j.1365-2141.1994.tb04939.x7947295Search in Google Scholar

Satoh T, Kobayashi M, Kaneda M, Tanihiro M, Okada K, Ueda K. Genotypical classification of neutrophil Fc receptor III by polymerase chain reaction-single strand confirmation polymorphism. Blood 1994;83:3312–5.10.1182/blood.V83.11.3312.3312Search in Google Scholar

eISSN:
1930-3955
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Medicine, Clinical Medicine, Laboratory Medicine