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The LW blood group system: a review


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Beck ML. The LW system: a review and current concepts. In: Walker RH, Block UT, eds. A seminar on recent advances in immunohematology. Washington, DC: American Association of Blood Banks, 1973:83–100.Search in Google Scholar

Stillwell GF. The LW blood group system. Canadian Society of Laboratory Technologists (CSLT) Bulletin 1979;1:17–25.Search in Google Scholar

Giles CM. The LW blood group: a review. Immunol Commun 1980;9:225–42.10.3109/088201380090659966772547Search in Google Scholar

Storry JR. Review: the LW blood group system. Immunohematology 1992;8:87–93.10.21307/immunohematology-2019-993Search in Google Scholar

Landsteiner K, Wiener AS. An agglutinable factor in human blood recognized by immune sera for rhesus blood. Proc Soc Exp Biol Med 1940;43:223–4.10.3181/00379727-43-11151Search in Google Scholar

Levine P, Stetson RE. An unusual case of intra-group agglutination. JAMA 1939;113:126–7.10.1001/jama.1939.72800270002007aSearch in Google Scholar

Fisk RT, Foord AG. Observations on the Rh agglutinogen of human blood. Am J Clin Pathol 1942;12:545–52.10.1093/ajcp/12.11.545Search in Google Scholar

Fisher RA. Cited by Race RR. An ‘incomplete’ antibody in human serum. Nature 1944;153:771–2.10.1038/153771b0Search in Google Scholar

Murray J, Clark EC. Production of anti-Rh in guinea pigs from human erythrocyte extracts. Nature 1952;169:886–7.10.1038/169886b014941083Search in Google Scholar

Levine P, Celano M, Fenichel R, Pollack W, Singher HA. A “D-like” antigen in rhesus monkey, human Rh positive and human Rh negative red blood cells. J Immunol 1961;87: 747-52.Search in Google Scholar

Levine P, Celano MJ. Agglutinating specificity for LW factor in guinea pig and rabbit anti-Rh serum. Science 1967;156: 1744-6.10.1126/science.156.3783.17444975845Search in Google Scholar

Wiener AS, Moor-Jankowski J, Brancato GJ. LW factor. Haematologia 1969;3:385–93.Search in Google Scholar

Tippett PA, Sanger R. Observations on subdivisions of the Rh antigen D. Vox Sang 1962;7:9–13.10.1111/j.1423-0410.1962.tb03223.x13921349Search in Google Scholar

Levine P, Celano MJ, Vos GH, Morrison J. The first human blood /, which lacks the ‘D-like’ antigen. Nature 1962;194:304–5.10.1038/194304a014464637Search in Google Scholar

Swanson J, Matson GA. Third example of a human ‘D-like’ antibody or anti-LW. Transfusion 1964;4:257–61.10.1111/j.1537-2995.1964.tb02868.x14177376Search in Google Scholar

Levine P. Rh and LW factors. Int Convoc on Immunol. Buffalo, NY;1969:140–3.Search in Google Scholar

deVeber LL, Clark GW, Hunking M, Stroup M. Maternal anti-LW. Transfusion 1971;11:33–5.10.1111/j.1537-2995.1971.tb04372.x5313203Search in Google Scholar

Swanson JL, Azar M, Miller J, McCullough JJ. Evidence for heterogeneity of LW revealed in a family study. Transfusion 1974;14:470–4.10.1111/j.1537-2995.1974.tb04563.x4213099Search in Google Scholar

Vos GH, Petz LD, Garratty G, Fudenberg HH. Autoantibodies in acquired hemolytic anemia with special reference to the LW system. Blood 1973;42:445–53.10.1182/blood.V42.3.445.445Search in Google Scholar

White JC, Rolih S, Wilkinson SL, Hatcher B J, Issitt PD. A new example of anti-LW and further studies on the heterogeneity of the system. Transfusion 1975;15:368–72.10.1046/j.1537-2995.1975.15476034561.x809874Search in Google Scholar

Sistonen P, Tippett P. A ‘new’ allele giving further insight into the LW blood group system. Vox Sang 1982;42:252–5.10.1111/j.1423-0410.1982.tb00753.x6808767Search in Google Scholar

Sistonen P, Nevanlinna HR, Virtaranta-Knowles K, et al. Nea, a new blood group antigen in Finland. Vox Sang 1981;40: 352-7.10.1111/j.1423-0410.1981.tb00720.x6972672Search in Google Scholar

Sistonen P. A phenotypic association between the blood group antigen Nea and the Rh antigen D. Med Biol 1981;59:230–5.Search in Google Scholar

Sistonen P, Green CA, Lomas CG, Tippett P. Genetic polymorphism of the LW blood group system. Ann Hum Genet 1983;47:277–84.10.1111/j.1469-1809.1983.tb00997.x6418057Search in Google Scholar

Daniels G. Human blood groups. 2nd ed. Oxford, UK: Blackwell Science, 2002:405.10.1002/9780470987018Search in Google Scholar

Sistonen P. The LW (Landsteiner-Wiener) blood group system: elucidation of the genetics of the LW blood groups based on the finding of a ‘new’ blood group antigen. PhD thesis, University of Helsinki, 1984.Search in Google Scholar

Sistonen P, Virtaranta-Knowles K, Denisova R, Kucinskas V, Ambrasiene D, Beckman L. The LWb blood group as a marker of prehistoric Baltic migrations and admixture. Hum Hered 1999;49:154–8.10.1159/00002286410364680Search in Google Scholar

Poole J, Ford D, Tozer R, Banks J, Mallinson G, Marosszeky S. A case of LW(a-b-) in Papua New Guinea. 24th Cong Int Soc Blood Transfusion 1996:144.Search in Google Scholar

[No authors listed]. Blood Group Terminology 1990. The ISBT Working Party on Terminology for Red Cell Surface Antigens. Vox Sang 1990;58:152–69.10.1111/j.1423-0410.1990.tb02083.xSearch in Google Scholar

Reid ME, Lomas-Francis C. Blood group antigens and antibodies: A guide to clinical relevance and technical tips. New York, NY: Starbright Books, 2007:6.Search in Google Scholar

Konigshaus GJ, Holland TI. The effect of dithiothreitol on the LW antigen. Transfusion 1984;24:536–7.10.1046/j.1537-2995.1984.24685066821.x6438841Search in Google Scholar

Branch DR, Petz LD. A new reagent (ZZAP) having multiple applications in immunohematology. Am J Clin Pathol 1982; 78:161–7.10.1093/ajcp/78.2.1616808844Search in Google Scholar

Lomas CG, Tippett P. Use of enzymes in distinguishing anti-LWa and anti-LWab from anti-D. Med Lab Sci 1985;42:88–9.Search in Google Scholar

Daniels G. Effect of enzymes on and chemical modifications of high-frequency red cell antigens. Immunohematology 1992; 8:53–7.10.21307/immunohematology-2019-985Search in Google Scholar

Napier JAF, Rowe GP. Transfusion significance of LWa allo-antibodies. Vox Sang 1987;53:228–30.Search in Google Scholar

Oliveira OLP, Thomas DB, Lomas CG, Tippett P. Restricted expression of LW antigen on subsets of human B and T lymphocytes. J Immunogenet 1984;11:297–303.10.1111/j.1744-313X.1984.tb00816.xSearch in Google Scholar

Sonneborn H-H, Ulhemann H, Tills D, Lomas CG, Shaw MA, Tippett P. Monoclonal anti-LWab. Biotest Bull 1984;2:145–8.Search in Google Scholar

Sonneborn H-H, Ernst M, Voak D. A new monoclonal anti-LW (BS87) (abstract). Vox Sang 1984;67(Suppl 2);114.Search in Google Scholar

Anderson C, Green CA. Unpublished observations 1982. In: Daniels G, ed. Human blood groups. Oxford, UK: Blackwell Science, 1995:520.Search in Google Scholar

Giles CM, Lundsgaard A. A complex serological investigation involving LW. Vox Sang 1967;13:406–16.10.1111/j.1423-0410.1967.tb03784.x4963684Search in Google Scholar

Chown B, Kaita H, Lowen B, Lewis M. Transient production of anti-LW by LW-positive people. Transfusion 1971;11:220–2.10.1111/j.1537-2995.1971.tb04405.x4998711Search in Google Scholar

Perkins HA, Mcllroy M, Swanson J, Kadin M. Transient LW-negative red blood cells and anti-LW in a patient with Hodgkin’s disease. Vox Sang 1977;33:299–303.Search in Google Scholar

Celano MJ, Levine P. Anti-LW specificity in autoimmune acquired hemolytic anemia. Transfusion 1967;4:265–8.Search in Google Scholar

Swanson J, Scofield T, Krivit W, Ramsey N, Kersey J, Whitley C. Donor-derived LW, Rh and M antibodies in a post BMT chimera (abstract). Joint ISBT/AABB Conference, Los Angeles, CA: Nov. 10-15,1990.Search in Google Scholar

Perrault R. ‘Cold’ IgG autologous anti-LW. An immunological comparison with immune anti-LW. Vox Sang 1973;24:150–64.Search in Google Scholar

Tregellas WM, Moulds JJ, South SF. Successful transfusion of a patient with anti-LW with LW-positive blood (abstract). Transfusion 1977;18:384.Search in Google Scholar

Cummings E, Pisciotto P, Roth G. Normal survival of Rho (D) negative, LW(a+) red cells in a patient with allo-anti-LW. Vox Sang 1984;46:286–90.Search in Google Scholar

Chaplin H, Hunter VL, Rasche ME, Shirey RS. Long-term in vivo survival of Rh(D)-negative donor red cells in a patient with anti-LW. Transfusion 1985;25:39–43.10.1046/j.1537-2995.1985.25185116500.x3918363Search in Google Scholar

Pope M, Sullivan C, Kline WE, Bowman RJ. Investigation of Rh0(D) negative donor RBC survival in a patient with allo-anti-LWab. (abstract) Transfusion 1986;26:547.Search in Google Scholar

Herron R, Bell A, Poole J, Clark M, Smith DS, Hamblin TJ. Reduced survival of isotyope-labelled Rh(D)-negative donor red cells in a patient with anti-LWab. Vox Sang 1986;51: 314-17.Search in Google Scholar

Villalba R, Ceballos P, Fornés G, Eisman M, Gómez Villagrán JL. Clinically significant anti-LW* by monocyte monolayer assay. Vox Sang 1995;68:66–7.10.1159/000462894Search in Google Scholar

Moore S. Identification of red cell membrane components associated with rhesus blood group antigen expression. In: Cartron J-P, Rouger C, Salmon C, eds. Red cell glycoconjugates and related genetic markers. Paris: Librairie Arnetter; 1983: 97-106.Search in Google Scholar

Mallinson G, Martin PG, Anstee DJ, et al. Identification and partial characterization of the human erythrocyte membrane component(s) that express the antigens of the LW blood-group system. Biochem J 1986;234:649–52.10.1042/bj234064911466202424433Search in Google Scholar

Bloy C, Blanchard D, Hermand P, Kordowicz M, Sonneborn HH, Cartron JP. Properties of the blood group LW glycoprotein and preliminary comparison with Rh proteins. Mol Immunol 1989;26:1013–19.10.1016/0161-5890(89)90065-5Search in Google Scholar

Bloy C, Hermand P, Blanchard D, Cherif-Zahar B, Goossens D, Cartron JP. Surface orientation and antigen properties of Rh and LW polypeptides of the human erythrocyte membrane. J Biol Chem 1990;265:21482–7.10.1016/S0021-9258(18)45763-8Search in Google Scholar

Bloy C, Hermand P, Dherif-zahar B, et al. Comparative analysis by two-dimensional iodopeptide mapping of the RhD protein and LW glycoprotein. Blood 1990;75:ll;2245-9.10.1182/blood.V75.11.2245.bloodjournal75112245Search in Google Scholar

Bailly P, Hermand P, Callebaut I, et al. The LW blood group glycoprotein is homologous to intercellular adhesion molecules. Proc Natl Acad Sci U S A 1994;91:5306–10.10.1073/pnas.91.12.5306439838202485Search in Google Scholar

Bailly P, Tontti E, Hermand P, Cartron JP, Gahmberg CG. The red cell LW blood group protein is an intercellular adhesion molecule which binds to CD11/CD18 leukocyte integrins. Eur J Immunol 1995;25:3316–20.10.1002/eji.18302512178566017Search in Google Scholar

Hermand P, Gane P, Mattel MG, Sistonen P, Cartron JP, Bailly P. Molecular basis and expression of the LWa/LWb blood group polymorphism. Blood 1995;86:1590–4.10.1182/blood.V86.4.1590.bloodjournal8641590Search in Google Scholar

Hermand P, LePennec PY, Rouger P, Cartron JP, Bailey P. Characterization of the gene encoding the human LW blood group protein in LW+ and LW- phenotypes. Blood 1996:7: 2962-7.10.1182/blood.V87.7.2962.bloodjournal8772962Search in Google Scholar

Parsons SF, Spring FA, Chasis JA, Anstee DJ. Erythroid cell adhesion molecules Lutheran and LW in health and disease. Baillieries Best Pract Res Clin Haematol 1999;12:729–45.10.1053/beha.1999.005010895261Search in Google Scholar

Spring FA, Parsons SF. Erythroid cell adhesion molecules. Transfus Med Rev 2000;14:351–63.10.1053/tmrv.2000.1623111055078Search in Google Scholar

Spring FA, Parsons SF, Ortlepp S, et al. Intercellular adhesion molecule-4 binds (alpha)4(beta)l and (alpha)V-family integrins through novel integrin-binding mechanisms. Blood 2001;98:457–66.10.1182/blood.V98.2.45811435317Search in Google Scholar

Delahunty M, Zennadi R, Telen MJ. LW protein: a promiscuous integrin receptor activated by adrenergic signaling. Transfus Clin Biol 2006;13:44–9.10.1016/j.tracli.2006.02.02216564726Search in Google Scholar

Toivanen A, Ihanus E, Mattila M, Lutz HU, Gahmberg CG. Importance of molecular studies on major blood groups— intercellular adhesion molecule-4, a blood group antigen involved in multiple cellular interactions. Biochim Biophys Acta 2008;1780:456–66.10.1016/j.bbagen.2007.09.00317997044Search in Google Scholar

Mohandas N, Chasis JA. The erythroid niche: molecular processes occurring within erythroblastic islands. Transfus Clin Biol 2010;17:110–11.10.1016/j.tracli.2010.05.009368456020655267Search in Google Scholar

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