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2362 Part XIII: Transfusion Medicine Chapter 137: Human Leukocyte and Platelet Antigens 2363
40. Huizinga TW, de Haas M, Kleijer M, et al: Soluble Fc gamma receptor III in human 73. Klippel S, Strunck E, Busse CE, et al: Biochemical characterization of PRV-1, a novel
plasma originates from release by neutrophils. J Clin Invest 86:416, 1990. hematopoietic cell surface receptor, which is overexpressed in polycythemia rubra vera.
41. Koene HR, Kleijer M, Roos D, et al: Fc gamma RIIIB gene duplication: Evidence for Blood 100:2441, 2002.
presence and expression of three distinct Fc gamma RIIIB genes in NA(1+,2+)SH(+) 74. de Haas M, Muniz-Diaz E, Alonso LG, et al: Neutrophil antigen 5b is carried by a pro-
individuals. Blood 91:673, 1998. tein, migrating from 70 to 95 kDa, and may be involved in neonatal alloimmune neu-
42. Steffensen R, Gulen T, Varming K, Jersild C: FcgammaRIIIB polymorphism: Evidence tropenia. Transfusion 40:222, 2000.
that NA1/NA2 and SH are located in two closely linked loci and that the SH allele is 75. Greinacher A, Wesche J, Hammer E, et al: Characterization of the human neutrophil
linked to the NA1 allele in the Danish population. Transfusion 39:593, 1999. alloantigen-3a. Nat Med 16:45, 2010.
43. Reil A, Sachs UJ, Siahanidou T, Flesch BK, Bux J. HNA-1d: a new human neutrophil 76. Curtis BR, Cox NJ, Sullivan MJ, et al: The neutrophil alloantigen HNA-3a (5b) is located
antigen located on Fcγ receptor IIIb associated with neonatal immune neutropenia. on choline transporter-like protein 2 and appears to be encoded by an R>Q154 amino
Transfusion 53:2145, 2013. acid substitution. Blood 115:2073, 2010.
44. Hessner MJ, Curtis BR, Endean DJ, Aster RH: Determination of neutrophil antigen 77. Nordhagen R, Conradi M, Dromtorp SM: Pulmonary reaction associated with transfu-
gene frequencies in five ethnic groups by polymerase chain reaction with sequence- sion of plasma containing anti-5b. Vox Sang 51:102, 1986.
specific primers. Transfusion 36:895, 1996. 78. Kopko PM, Marshall CS, MacKenzie MR, et al: Transfusion-related acute lung injury:
45. Bux J, Stein EL, Santoso S, Mueller-Eckhardt C: NA gene frequencies in the German Report of a clinical look-back investigation. JAMA 287:1968, 2002.
population, determined by polymerase chain reaction with sequence-specific primers. 79. Reil A, Keller-Stanislawski B, Gunay S, Bux J: Specificities of leucocyte alloantibodies
Transfusion 35:54, 1995. in transfusion-related acute lung injury and results of leucocyte antibody screening of
46. Matsuo K, Procter J, Stroncek D: Variations in genes encoding neutrophil antigens NA1 blood donors. Vox Sang 95:313, 2008.
and NA2. Transfusion 40:645, 2000. 80. Clague HD, Fung YL, Minchinton RM: Human neutrophil antigen-4a gene frequencies
47. Covas DT, Kashima S, Guerreiro JF, et al: Variation in the FcgammaR3B gene among in an Australian population, determined by a new polymerase chain reaction method
distinct Brazilian populations. Tissue Antigens 65:178, 2005. using sequence-specific primers. Transfus Med 13:149, 2003.
48. Lin M, Chen CC, Wang CL, Lee HL: Frequencies of neutrophil-specific antigens among 81. Han TH, Han KS: Gene frequencies of human neutrophil antigens 4a and 5a in the
Chinese in Taiwan. Vox Sang 66:247, 1994. Korean population. Korean J Lab Med 26:114, 2006.
49. Ohto H, Matsuo Y: Neutrophil-specific antigens and gene frequencies in Japanese. 82. Cardone JD, Bordin JO, Chiba AK, et al: Gene frequencies of the HNA-4a and -5a neu-
Transfusion 29:654, 1989. trophil antigens in Brazilian persons and a new polymerase chain reaction-restriction frag-
50. de La Vega Elena CD, Nogues N, Fernandez MA, et al: HNA-1a, HNA-1b and HNA-1c ment length polymorphism method for HNA-5a genotyping. Transfusion 46:1515, 2006.
gene frequencies in Argentineans. Tissue Antigens 71:475, 2008. 83. Simsek S, van der Schoot CE, Daams M, et al: Molecular characterization of antigenic
51. Abid S, Zili M, Bouzid L, et al: Gene frequencies of human neutrophil antigens in the polymorphisms (Ond(a) and Mart(a)) of the beta 2 family recognized by human leuko-
Tunisian blood donors and Berbers. Tissue Antigens 58:90, 2001. cyte alloantisera. Blood 88:1350, 1996.
52. Kissel K, Hofmann C, Gittinger FS, et al: HNA-1a, HNA-1b, and HNA-1c (NA1, NA2, 84. Sachs UJ, Reil A, Bauer C, et al: Genotyping of human neutrophil antigen-5a (Ond).
SH) frequencies in African and American Blacks and in Chinese. Tissue Antigens Transfus Med 15:115, 2005.
56:143, 2000. 85. Fromont P, Prié N, Simon P, et al: Granulocyte antibody screening: evaluation of a
53. Kuwano ST, Bordin JO, Chiba AK, et al: Allelic polymorphisms of human Fcgamma bead-based assay in comparison with classical methods. Transfusion 50:2643, 2010.
receptor IIa and Fcgamma receptor IIIb among distinct groups in Brazil. Transfusion 86. Bux J, Jung KD, Kauth T, Mueller-Eckhardt C: Serological and clinical aspects of neu-
40:1388, 2000. trophil antibodies leading to alloimmune neonatal neutropenia. Transfus Med 2:143,
54. Muniz-Diaz E, Madoz P, de la Calle MO, Puig L: The polymorphonuclear neutrophil Fc 1992.
gamma RIIIb deficiency is more frequent than hitherto assumed. Blood 86:3999, 1995. 87. Bux J, Behrens G, Jaeger G, Welte K: Diagnosis and clinical course of autoimmune neu-
55. Fromont P, Bettaieb A, Skouri H, et al: Frequency of the polymorphonuclear neutrophil tropenia in infancy: Analysis of 240 cases. Blood 91:181, 1998.
Fc gamma receptor III deficiency in the French population and its involvement in the 88. Bruin MC, dem Borne AE, Tamminga RY, et al: Neutrophil antibody specificity in dif-
development of neonatal alloimmune neutropenia. Blood 79:2131, 1992. ferent types of childhood autoimmune neutropenia. Blood 94:1797, 1999.
56. Nagarajan S, Chesla S, Cobern L, et al: Ligand binding and phagocytosis by CD16 (Fc 89. Lalezari P, Khorshidi M, Petrosova M: Autoimmune neutropenia of infancy. J Pediatr
gamma receptor III) isoforms. Phagocytic signaling by associated zeta and gamma sub- 109:764, 1986.
units in Chinese hamster ovary cells. J Biol Chem 270:25762, 1995. 90. Conway LT, Clay ME, Kline WE, et al: Natural history of primary autoimmune neutro-
57. Salmon JE, Edberg JC, Kimberly RP: Fc gamma receptor III on human neutrophils. penia in infancy. Pediatrics 79:728, 1987.
Allelic variants have functionally distinct capacities. J Clin Invest 85:1287, 1990. 91. Toy P, Popovsky MA, Abraham E, et al: Transfusion-related acute lung injury: Defini-
58. Bredius RG, Fijen CA, de Haas M, et al: Role of neutrophil Fc gamma RIIa (CD32) tion and review. Crit Care Med 33:721, 2005.
and Fc gamma RIIIb (CD16) polymorphic forms in phagocytosis of human IgG1- and 92. Davoren A, Curtis BR, Shulman IA, et al: TRALI due to neutrophil-agglutinating
IgG3-opsonized bacteria and erythrocytes. Immunology 83:624, 1994. human neutrophil antigen-3a (5b) alloantibodies in donor plasma: A report of 2 fatali-
59. Clement LT, Lehmeyer JE, Gartland GL: Identification of neutrophil subpopulations ties. Transfusion 43:641, 2003.
with monoclonal antibodies. Blood 61:326, 1983. 93. Muniz M, Sheldon S, Schuller RM, et al: Patient-specific transfusion-related acute lung
60. Goldschmeding R, van Dalen CM, Faber N, et al: Further characterization of the NB1 injury. Vox Sang 94:70, 2008.
antigen as a variably expressed 56–62 kD GPI-linked glycoprotein of plasma mem- 94. Fadeyi EA, Los Angeles MM, Wayne AS, et al: The transfusion of neutrophil-specific
branes and specific granules of neutrophils. Br J Haematol 81:336, 1992. antibodies causes leukopenia and a broad spectrum of pulmonary reactions. Transfusion
61. Stroncek DF, Shankar RA, Noren PA, et al: Analysis of the expression of NB1 antigen 47:545, 2007.
using two monoclonal antibodies. Transfusion 36:168, 1996. 95. Toy P, Gajic O, Bacchetti P, et al: TRALI Study Group: Transfusion-related acute lung
62. Matsuo K, Lin A, Procter JL, et al: Variations in the expression of neutrophil antigen injury: incidence and risk factors. Blood 119:1757, 2012.
NB1. Transfusion 40:654, 2000. 96. Gajic O, Rana R, Winters JL, et al: Transfusion-related acute lung injury in the
63. Caruccio L, Bettinotti M, Matsuo K, et al: Expression of human neutrophil antigen-2a critically ill: Prospective nested case-control study. Am J Respir Crit Care Med 176:886,
(NB1) is increased in pregnancy. Transfusion 43:357, 2003. 2007.
64. Stroncek DF, Skubitz KM, McCullough JJ: Biochemical characterization of the 97. Seeger W, Schneider U, Kreusler B, et al: Reproduction of transfusion-related acute lung
neutrophil-specific antigen NB1. Blood 75:744, 1990. injury in an ex vivo lung model. Blood 76:1438, 1990.
65. Kissel K, Santoso S, Hofmann C, et al: Molecular basis of the neutrophil glycoprotein 98. Sachs UJ, Hattar K, Weissmann N, et al: Antibody-induced neutrophil activation as
NB1 (CD177) involved in the pathogenesis of immune neutropenias and transfusion a trigger for transfusion-related acute lung injury in an ex vivo rat lung model. Blood
reactions. Eur J Immunol 31:1301, 2001. 107:1217, 2006.
66. Caruccio L, Bettinotti M, Director-Myska AE, et al: The gene overexpressed in poly- 99. Silliman CC, Curtis BR, Kopko PM, et al: Donor antibodies to HNA-3a implicated in
cythemia rubra vera, PRV-1, and the gene encoding a neutrophil alloantigen, NB1, are TRALI reactions prime neutrophils and cause PMN-mediated damage to human pul-
alleles of a single gene, CD177, in chromosome band 19q13.31. Transfusion 46:441, monary microvascular endothelial cells in a two-event in vitro model. Blood 109:1752,
2006. 2007.
67. Taniguchi K, Kobayashi M, Harada H, et al: Human neutrophil antigen-2a expression 100. McMillan R: The pathogenesis of chronic immune thrombocytopenic purpura. Semin
on neutrophils from healthy adults in western Japan. Transfusion 42:651, 2002. Hematol 44(4 Suppl 5): S3, 2007.
68. Bierling P, Poulet E, Fromont P, et al: Neutrophil-specific antigen and gene frequencies 101. McMillan R: Antiplatelet antibodies in chronic adult immune thrombocytopenic
in the French population. Transfusion 30:848, 1990. purpura: Assays and epitopes. J Pediatr Hematol Oncol 25 Suppl 1:S57, 2003.
69. Caruccio L, Walkovich K, Bettinotti M, et al: CD177 polymorphisms: Correlation 102. Wadenvik H, Stockelberg D, Hou M: Platelet proteins as autoantibody targets in
between high-frequency single nucleotide polymorphisms and neutrophil surface pro- idiopathic thrombocytopenic purpura. Acta Paediatr Suppl 424:26, 1998.
tein expression. Transfusion 44:77, 2004. 103. Beardsley DS, Ertem M: Platelet autoantibodies in immune thrombocytopenic purpura.
70. Kissel K, Scheffler S, Kerowgan M, Bux J: Molecular basis of NB1 (HNA-2a, CD177) Transfus Sci 19:237, 1998.
deficiency. Blood 99:4231, 2002. 104. Bougie DW, Wilker PR, Wuitschick ED, et al: Acute thrombocytopenia after treatment
71. Sachs UJ, Andrei-Selmer CL, Maniar A, et al: The neutrophil specific antigen CD177 is with tirofiban or eptifibatide is associated with antibodies specific for ligand-occupied
a counter-receptor for endothelial PECAM-1 (CD31). J Biol Chem 282:23603, 2007. GPIIb/IIIa. Blood 100:2071, 2002.
72. Temerinac S, Klippel S, Strunck E, et al: Cloning of PRV-1, a novel member of the 105. Gentilini G, Curtis BR, Aster RH: An antibody from a patient with ranitidine-induced
uPAR receptor superfamily, which is overexpressed in polycythemia rubra vera. Blood thrombocytopenia recognizes a site on glycoprotein IX that is a favored target for
95:2569, 2000. drug-induced antibodies. Blood 92:2359, 1998.
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