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Utility of chloroquine diphosphate in the blood bank laboratory

 e    | 16 ott 2019
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Rodberg K, Tsuneta R, Garratty G. Discrepant Rh phenotyping results when testing IgG-sensitized RBCs with monoclonal Rh reagents (abstract). Transfusion 1995;35(Suppl):67S. Search in Google Scholar

Lee E, Hart K, Burgess G, et al. Efficacy of murine monoclonal antibodies in RBC phenotyping of DAT-positive samples. Immunohematology 2006;22:161–5.10.21307/immunohematology-2019-375 Search in Google Scholar

DePalma H, Lomas-Francis C, Wilson-Sandberg K, et al. Unexpected antigen typing discrepancies in testing of DAT+ RBCs with monoclonal reagents (abstract). Transfusion 2017;57(Suppl S3):37A. Search in Google Scholar

Holtz G, Mantel W, Buck W. The inhibition of antigen-antibody reactions by chloroquine and its mechanism of action. Z Immunitatsforsch Exp Klin Immunol 1973;146:145–57. Search in Google Scholar

Mantel W, Holtz G. Characterisation of autoantibodies to erythrocytes in autoimmune haemolytic anaemia by chloroquine. Vox Sang 1976;30:453–63.10.1111/j.1423-0410.1976.tb02851.x1274288 Search in Google Scholar

Edwards JM, Moulds JJ, Judd WJ. Chloroquine dissociation of antigen-antibody complexes: a new technique for typing red cells with a positive antiglobulin test. Transfusion 1982;22: 59–61.10.1046/j.1537-2995.1982.22182154219.x6801829 Search in Google Scholar

Widmann FK, Ed. AABB technical manual. 8th ed. Philadelphia, PA: JB Lippincott, 1981. Search 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/78.2.1616808844 Search in Google Scholar

Petz LD, Garratty G. Acquired immune hemolytic anemia. New York: Churchill Livingstone, 1980. Search in Google Scholar

Louie JE, Jiang AF, Zaroulis CG. Preparation of intact antibody-free red blood cells in autoimmune hemolytic anemia (abstract). Transfusion 1986;26:550. Search in Google Scholar

Kosanke J. EDTA glycine acid treatment of red blood cells. Immunohematology 2012;28:95–6.10.21307/immunohematology-2019-157 Search in Google Scholar

McCullough JS, Torloni AS, Brecher ME, et al. Microwave dissociation of antigen-antibody complexes: a new elution technique to permit phenotyping of antibody-coated red cells. Transfusion 1993;33:725–9.10.1046/j.1537-2995.1993.33994025021.x8212118 Search in Google Scholar

Swanson JL, Sastamoinen R. Chloroquine stripping of HLA A,B antigens from red cells (letter). Transfusion 1985;25: 439–40.10.1046/j.1537-2995.1985.25586020120.x3863353 Search in Google Scholar

Champagne K, Spruell P, Chen J, et al. EDTA/glycine-acid versus chloroquine diphosphate treatment for stripping Bg antigens from red blood cells. Immunohematology 1999; 15:66–8.10.21307/immunohematology-2019-615 Search in Google Scholar

Gamma-Quin. Manufacturer’s instructions. Norcross, GA: Immucor, 2013. Search in Google Scholar

Issitt PD, Anstee DJ. Applied blood group serology. 4th ed. Durham, NC: Montgomery Scientific, 1998. Search in Google Scholar

Burich MA, AuBuchon JP, Anderson HJ. Evaluation of rapid antibody dissociation techniques. Immunohematology 1986;2:76–80. Search in Google Scholar

Burin des Roziers N, Squalli S. Removing IgG antibodies from intact red cells: comparison of acid and EDTA, heat and chloroquine elution methods. Transfusion 1997;37:497–501.10.1046/j.1537-2995.1997.37597293880.x9149774 Search in Google Scholar

Sererat TS, Veidt D, Dutched A. A quick and simple method for phenotyping IgG-sensitized red blood cells. Immunohematology 2000;16:154–6.10.21307/immunohematology-2019-598 Search in Google Scholar

Katharia R, Chaudhary RK. Removal of antibodies from red cells: comparison of three elution methods. Asian J Transfus Sci 2013;7:29–32.10.4103/0973-6247.106727361365723559761 Search in Google Scholar

Sassetti R, Nichols D. Decreased antigenic reactivity caused by chloroquine (letter). Transfusion 1982;22:537. Moulds JJ, Edwards JM, Judd WJ (response). Transfusion 1982;22: 537–8.10.1046/j.1537-2995.1982.22683068623.x6183803 Search in Google Scholar

Prewitt PL, Steane EA, Steane SM. Decreased agglutinability with anti-D of chloroquine-treated red cells (abstract). Transfusion 1983;23:434. Search in Google Scholar

Chen J, Spruell P, Moulds M. Studies using chloroquine diphosphate to strip HLA A and B antigens from red blood cells (RBCs). ISBT/AABB Book of Abstracts 1990;152. Search in Google Scholar

Beaumont AE, Stamps R, Booker DJ, Sokol RJ. An improved method for removal of red cell-bound immunoglobulin using chloroquine solution. Immunohematology 1994;10:22–4.10.21307/immunohematology-2019-815 Search in Google Scholar

Reid ME, Lomas-Francis C, Olsson ML. The blood group antigen factsbook. San Diego, CA; Academic Press, 2012.10.1016/B978-0-12-415849-8.00026-0 Search in Google Scholar

Mallory D, Reid M. Misleading effects of chloroquine (letter). Transfusion 1984;24:412.10.1046/j.1537-2995.1984.24585017834.x6485085 Search in Google Scholar

Shin C, Mallory D, Reid M. False negative red cell antigen typing following chloroquine treatment (abstract). Transfusion 1984;24:416. Search in Google Scholar

Brazell J. Use of monoclonal Jk(a) and Jk(b) reagents in phenotyping red cells with a positive direct antiglobulin test. Immunohematology 1994;10:16–8.10.21307/immunohematology-2019-813 Search in Google Scholar

McShane K, Cornwall S. Chloroquine reduces antigen strength (letter). Transfusion 1985;25:83.10.1046/j.1537-2995.1985.25185116513.x3969708 Search in Google Scholar

Leger RM, Garratty G. A reminder that ZZAP reagent removes complement in addition to IgG from coated RBCs. Immunohematology 2006;22:205–6. Search in Google Scholar

eISSN:
1930-3955
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Inglese
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4 volte all'anno
Argomenti della rivista:
Medicine, Clinical Medicine, Laboratory Medicine