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The Diego blood group system-an update


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Rohr TE, Smith DF, Zopf DA, Ginsburg V. Leb-active glycolipid in human plasma: measurement by radioimmunoassay. Arch Biochem Biophys 1980; 199:265–9.10.1016/0003-9861(80)90280-5Search in Google Scholar

Crookston MC. Blood group antigens acquired from the plasma. Prog Clin Biol Res 1980;43:99–114.Search in Google Scholar

Marcus DM, Cass LE. Glycosphingolipids with Lewis blood group activity: uptake by human erythrocytes. Science 1969;164:553–5.10.1126/science.164.3879.553Search in Google Scholar

Sneath JS, Sneath PHA. Transformation of the Lewis groups of human red cells. Nature 1955;176:172.10.1038/176172a0Search in Google Scholar

Oriol R, Danilovs J, Lemieux R, Terasaki P, Bernoco D. Lymphocytotoxic definition of combined ABH and Lewis antigens and their transfer from sera to lymphocytes. Hum Immunol 1980; 1:195–205.10.1016/0198-8859(80)90014-2Search in Google Scholar

Dunstan RA, Simpson MB, Rosse WF.Lea blood group antigen on human platelets. Am J Clin Pathol 1985;83:90–4.10.1093/ajcp/83.1.90Search in Google Scholar

Hammar L, Mansson S, Rohr T, et al. Lewis phenotype of erythrocytes and Leb-active glycolipid in serum of pregnant women.Vox Sang 1981;40:27–33.10.1111/j.1423-0410.1981.tb00665.xSearch in Google Scholar

Bjork S, Breimer ME, Hansson GG, Karlsson KA. Leffler H. Structures of blood group glycospin golipids of human small intestine. A relation between the expression of fucolipids of epithelial cells and the ABO, Le and Se phenotype of the donor. J Biol chem 1987 :262:6758–65.10.1016/S0021-9258(18)48309-3Search in Google Scholar

Breimer ME, Karlsson K. Samuelsson BE. Characterization of a human intestinal difucosyl beptaglycosylceramide with a blood group B determinant and a type I carbohydrate chain. J Biol Chem 1982:257: 1079–85.10.1016/S0021-9258(19)68310-9Search in Google Scholar

McKibbin JM, Spencer WA, Smith El., Månsson J. Karlsson K. Samuelsson BE, Li Y. Li S. Lewis blood group fucolipids and their isomers from human and canine intestine. J Biol chem 1982;257:755–60.10.1016/S0021-9258(19)68260-8Search in Google Scholar

Smith EL, Bowdler AJ, Bull R.W, McKibbin JM. Human blood group activity of human and canine intestinal glycolipids containing fucose. Immunology 1973; 25:621–9Search in Google Scholar

Henry SM, Samuelsson BE, Oriol R. Immunochemical and immunohistological expression of Lewis histo-blood group antigens in small intestine including individuals of the Le(a+b+) and Le(a-b-) nonsecretor phenotypes. Glycoconj J 1994; 11:600–7.10.1007/BF007313127696864Search in Google Scholar

Henry S, Oriol R, Samuelsson B. Lewis histo-blood group system and associated secretory phenotypes. Vox Sang 1995;69:166–82.10.1111/j.1423-0410.1995.tb02591.xSearch in Google Scholar

Gustavsson ML, Gannedahl G, Backer AE, et al. Anticarbohydrate antibodies associated with hyperacute rejection in a vascularized mouse heart-to-rat xenotransplantation model. Transplantation 1996: 61:957–63.10.1097/00007890-199603270-00019Search in Google Scholar

Holgersson J, Breimer ME, Samuelsson BE. Basic biochemistry of cell surface carbohydrates and aspects of the tissue distribution of histo-blood group ABH and related glycosphingolipids. APMIS Suppl 1992;27:18–27.Search in Google Scholar

Oriol R. ABO, Hh, Lewis and secretion. Serology, genetics and tissue distribution. New York: Plenum Press, 1995:37–73.10.1007/978-1-4757-9537-0_2Search in Google Scholar

Karlsson K. Samuelsson BE, Steen GO. Detailed structure of sphingomyelins and ceramides from different regions of bovine kidney with special reference to long-chain bases. Biochim Biophys Acta 1973; 316:336–62.10.1016/0005-2760(73)90073-8Search in Google Scholar

Bouhours JF, Glickman RM. Rat intestinal glycolipids. III. Fatty acids and long chain bases of glycolipids from villus and crypt cells. Biochim Biophys Acta 1977;487:51–60.Search in Google Scholar

Breimer ME, Hansson GC. Karlsson KA, Leffler H. Glycosphingolipids and the differentiation of intestinal epithelium. Exp Cell Res 1981;135:1–1310.1016/0014-4827(81)90293-7Search in Google Scholar

Breimer ME, Hansson. GC, Karlsson K Leffler H. Studies on differentiating epithelial cells of on small intestine. Alterations in the lipophille part of glycosphingololipids during cell migration from crypt to villus tip. Biochim Biophys Acta 1982;710:415–27.10.1016/0005-2760(82)90125-4Search in Google Scholar

Holgersson J, Backer AE. Breimer ME. et al. the blood group B type-1 heptaglycosylceramide is a minor blood group B structure in human B kidneys in contrast to the corresponding A type-4 compound in A kidneys. Structural and in vitro biosynthetic studies. Biochim Biophys Acta 1992;1180:33–43.10.1016/0925-4439(92)90024-HSearch in Google Scholar

Larsson H, Carlsson E,Junggren U et al. Inhibition of gastric acid secretion by omeprazole in the dog and rat. Gastroenterology 1983;85:900–7.10.1016/0016-5085(83)90442-0Search in Google Scholar

Larsson H, Mattson H, Sundell G, Carlsson E. Animal pharmocodynamics of omeprazole. A survey of its pharmocological properties in vivo. Scand J Gastroenterol 1985;20:23–35.10.3109/00365528509095817Search in Google Scholar

Good AH, Yau O, Lamontagne LR, Oriol R. Serological and chemical specificities of twelve monoclonal anti-Lea and anti-Leb antibodies. Vox Sang 1992; 62:180–9.Search in Google Scholar

Mollicone R, Bara J, Le Pendu J, Oriol R. Immuno histologic pattern of type 1 (Le1. Leb) and type 2 (X, Y, LI) blood group-related antigens in the human pyloric and duodenal mucosae. Lab Invest 1985;53:219-27.Search in Google Scholar

Karlsson KA. Preparation of total nonacid glycolipids for overlay analysis of receptors for bacteria and viruses and for other studies. Methods Enzymol 1987; 138:212–20.10.1016/0076-6879(87)38018-8Search in Google Scholar

Henry SM, Oriol R, Samuelsson BE. Expression of Lewis histo-blood group glycolipids in the plasma of individuals of Le(a+b+) and partial secretor phenotypes. Glycoconj J 1994; 11:593–910.1007/BF00731311Search in Google Scholar

Hynsjo L, Granberg L, Haurum J; Thiel S, Larson G. Use of factorial experimental design to delineate the strong calcium- and pH-dependent changes in binding of human surfactant protein-A to neutral glycosphingolipids—a model for studies of protein-carbohydrate interactions. Anal Biochem 1995; 225:305–14.10.1006/abio.1995.1159Search in Google Scholar

Holgersson J, Jovall PA, Samuelsson BE, Breimer ME. Structural characterization of non-acid glycosphingolipids in kidneys of single blood group O and A pigs. J Biochem (Tokyo) 1990; 108:766–77.10.1093/oxfordjournals.jbchem.a123279Search in Google Scholar

Henry S, Jovall P Ghardashkhani S, et al. Structural and imunochemical identification of Lea. Leb. H type 1 and related, glycolipids in small intestinal mucosa of a group O Le(a-b-) nonsecretor. Glycoconj J 1997; 209–25.Search in Google Scholar

Henry SM, jovall PA. Ghardashkhani S, Gustavsson MJ, Samuelsson BE. Structural and immunochemical identification of Leb glycolipids in the plasma of a group O Le(a-b-) secretor Glyeoconj J 1995; 12 309–17.10.1007/BF00731334Search in Google Scholar

Breimer ME, Hansson GC, Karlsson KA. Leffler H. Glycolipids of rat small intestine characterization of a novel blood group H-active triglycosylceramide. Biochim Biophys Acta 1980:617:85–96.10.1016/0005-2760(80)90226-XSearch in Google Scholar

Breimer ME, Falk K Hansson GC. Karlsson K Structural. identification of two ten-sugar branched chain glycosphingolipids of blood group H type present in epithelial cells of rat small intestine. J Biol Chem 1982;257:50–9.10.1016/S0021-9258(19)68324-9Search in Google Scholar

Gustafsson BE, Karlsson KA, Larson G, et al. Glycosphingolipid patterns of the gastrointestinal tract and feces of germ-free and conventional rats. J Biol Chem 1986;261:15294–300.10.1016/S0021-9258(18)66866-8Search in Google Scholar

Lemieux RU, Baker DA, Weinstein WM, Switzer CM. Artificial antigens. Antibody preparations for the localization of Lewis determinants in tissues. Biochemistry 1981;20:199–205.10.1021/bi00504a0336162479Search in Google Scholar

Lichtenberger LM. The hydrophobic barrier properties of gastrointestinal mucus. Annu Rev Physiol 1995;57:565–83.10.1146/annurev.ph.57.030195.0030257778878Search in Google Scholar

Hills BA, Butler BD, Lichtenberger LM. Gastric mucosal barrier: hydrophobic lining to the lumen of the stomach. Am J Physiol 1983;244:G561–8.10.1152/ajpgi.1983.244.5.G5616846549Search in Google Scholar

Boren T, Falk P, Roth KA, Larson G, Normark S. Attachment of Helicobacter pylori to human gastric epithelium mediated by blood group antigens. Science 1993:262:1892–5.10.1126/science.8018146Search in Google Scholar

Larson G, Falk P, Hynsjö L, Midtvedt A, Midtvedt T. Faecal excretion of glycosphingolipids of breast-fed and formula-fed infants. Microb Ecol Health Disease 1990;3:305–19.10.3109/08910609009140253Search in Google Scholar

Larson G, Falk E Hoskins LC. Degradation of human intestinal glycosphingolipids by extracellular glycosidases from mucin-degrading bacteria of the human fecal flora. J Biol Chem 1988;263:10790–8.10.1016/S0021-9258(18)38040-2Search in Google Scholar

Baker Hj, Lindsey JR, Weisroth SH. The laboratory rat. In: Biology and diseases. New York: Academic Press, 1979.Search in Google Scholar

Henry SM, Woodfield DG, Samuelsson BE, Oriol R. Plasma and red-cell glycolipid patterns of Le(a+b+) and Le(a+b-) Polynesians as further evidence of the weak secretor gene sem. Vox Sang 1993;65: 62–9.Search in Google Scholar

Henry SM, Oriol R, Samuelsson BE. Detection and characterization of Lewis antigens in plasma of Lewis-negative individuals Evidence of chain extension as a results of reduced fucosyltransferase competiton. Vox Sang 1994;67:387–96.10.1111/j.1423-0410.1994.tb01279.x7701811Search in Google Scholar

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