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Original Article

Milk Proteins in the Etiology of Insulin-Dependent Diabetes Mellitus (IDDM)

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Pages 447-452 | Published online: 08 Jul 2009

References

  • Lernmark A. Molecular biology of Type 1 (insulin-dependent) diabetes mellitus. Diabetologia 1985; 28: 195–203
  • Rossini A A., Mordes J P., Handler E S. Speculations on etiology of diabetes mellitus. Tumbler hypothesis. Diabetes 1988; 37: 257–61
  • Helgason T, Jonasson M R. Evidence for a food additive as a cause of ketosis-prone diabetes. Lancet 1981; ii: 716–20
  • Helgason T, Ewen S WB, Ross I S., Stowers J M. Diabetes produced in mice by smoked/cured mutton. Lancet 1982; ii: 1017–22
  • Elliott R B., Pilcher C, Edgar B W. Geographic IDDM in Polynesia and Macronesia: The epidemiology of insulin dependent diabetes in Polynesian children bom and reared in Polynesia, compared with Polynesian children resident in Auckland, New Zealand. Diabetes in the Young Bulletin 1989; No. 20: 16
  • Borch-Johnsen K, Joner G, Mandrup-Poulsen T., et al. Relation between breast-feeding and incidence rates of insulin-dependent diabetes mellitus. Lancet 1984; ii: 1083–6
  • Elliott R B., Martin J M. Dietary protein: a trigger of insulin-dependent diabetes in the BB rat?. Diabetologia 1984; 26: 297–9
  • Rogers Q R., Harper A E. Amino acids diets and maximal growth in the rat. J Nutr 1965; 87: 267–73
  • Daneman D, Fishman L, Clarson C, Martin J M. Dietary triggers of insulin-dependent diabetes in the BB rat. Diabetes Res 1987; 5: 93–7
  • Scott F W., Trick K D. Dietary modification of spontaneous diabetes in the BB Wistar rat. Proc Can Fed Biol Soc 1983; 26: 222
  • Bieri J G., Stoewsand G S., Briggs G M., Phillips R W., Woodard J C., Knapka J J. Report of the American institute of Nutrition Committee on Standards for Nutritional Studies. J Nutr 1977; 107: 1340–8
  • Brand E. Complete amino-acid composition of β-lactoglobulin. J Am Chem Soc 1945; 67: 1524–7
  • Creamer L K., Parry D AD, Malcolm G N. Secondary structure of bovine β lactoglobulin B. Arch Biochem Biophys 1983; 227: 98–105
  • Huang Q, Coleman J W., Stanworth D R. Investigation of the allergenicity of β lactoglobulin and its cleavage fragments. Int Archs Allergy Appl Immunol 1985; 78: 337–43
  • Godavac-Zimmerman J, Conti A, Liberatori J, Braumitzer G. Homology between the primary structures of β-lactoglobulin and human retinol-binding protein: Evidence for a similar biological function. Biol Chem Hoppe-Seyler 1985; 366: 431–4
  • Pervaiz S, Brew K. Homology of β-lactoglobulin, serum retinol-binding protein, and protein HC. Science 1985; 228: 335–7
  • Sawyer L. One fold among many. Nature 1987; 327: 659
  • Bell S C., Keyte J W. Amino acid sequence similarities. Nature 1987; 329: 296
  • Kameko M, Ichikawa M, Katsuyama T, Kanai M, Kato M, Akamatsu T. Immunohistochemical localization of plasma relinol-binding protein and pre-albumin in human pancreatic islets. Histochemical J 1986; 16: 164–8
  • Jakobsson I, Lindberg T, Benediktsson B, Hansson B-G. Dietary bovine β lactoglobulin is transferred to human milk. Acta Paediatr Scand 1985; 74: 342–5
  • Savilahti E, Åkerblom H K., Tainio V-M, Koskimies S. Children with newly diagnosed insulin-dependent diabetes mellitus have increased levels of cow's milk antibodies. Diabetes Res 1988; 7: 137–40
  • Beppu H, Winter W E., Atkinson M A., Maclaren N K., Fujita K, Takahashi H. Bovine albumin antibodies in NOD mice. Diabetes Res 1987; 6: 67–9
  • Brown J R. Structure of bovine serum albumin. Fed Proc 1975; 34: 591
  • Dugaiczyk A, Law S W., Dennison D E. Nucleotide sequence and the encoded amino acids of human serum albumin mRNA. Proc Natl Acad Sci USA 1982; 79: 71–5
  • Glerum M, Robinson B H., Martin J M. Could bovine serum albumin be the initiating antigen ultimately responsible for the development of insulin-dependent diabetes mellitus?. Diabetes Res 1989; 10: 103–7
  • Bottazzo G F., Pujol-Borrell R, Hanafusa T, Feldman M. Role of aberrant HLA-DR expression and antigen presentation in induction of endocrine autoimunity. Lancet 1983; ii: 1115–9
  • Bottazzo G F., Dean B M., McNally J M., MacKay E H., Swift P GF, Gamble D R. In situ characterization of autoimmune phenomena and expression of HLA molecules in the pancreas in diabetic insulitis. New Engl J Med 1985; 313: 353–60
  • Dean B M., Walker R, Bone A G., Baird J D., Cook A. Pre-diabetes in the spontaneously diabetic BB/E rat: lymphocyte subpopulation in the pancreatic infiltrate and expression of rat MHC class II molecules in endocrine cells. Diabetologia 1985; 28: 464–6
  • Todd J A., Bell J I., McDevitt H O. HLA-DQB gene contributes to susceptibility and resistance to insulin-dependent diabetes mellitus. Nature 1987; 329: 599–604
  • Todd J A., Acha-Orbea H, Bell J l., et al. A molecular basis for MCH class II associated autoimmunity. Science 1988; 240: 1003–9
  • Sarvetnick N, Liggitt D, Pitts S L., Hansen S E., Stewart T A. Insulin-dependent diabetes mellitus induced in transgenic mice by ectopic expression of class II MHC and interferon-gamma. Cell 1988; 52: 773–82
  • Brown J H., Jardetzky T, Saper M A., Samraoui B, Bjorkman P J., Wiley D C. A hypothetical model of the foreign antigen binding site of class II histocompatibility molecules. Nature 1988; 332: 845–50

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