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2006 | 33 | 1 |

Tytuł artykułu

Rola jonów cynku w funkcjonowaniu organizmu człowieka

Autorzy

Warianty tytułu

EN
The role of ions zinc in the function of human organism

Języki publikacji

PL

Abstrakty

Wydawca

-

Rocznik

Tom

33

Numer

1

Opis fizyczny

s.91-99,bibliogr.

Twórcy

autor
  • Politechnika Czestochowska, Czestochowa
autor

Bibliografia

  • 1. Akanli L., Lowenthal D.B., Gjonaj S.: Plasma and red blood cell zinc in cystic fibrosis. Pediat. Pulman., 2003, 35, 2-7.
  • 2. Barany E., Bergdahl J.A., Bratteby L.E., et al.: Relationships between trace element concentrations in human blood and serum. Toxicol. Letters 2002, 134, 177-184.
  • 3. Bauer H., Jung T., Strichtentoth D.O: Nitric Oxide inhibits the secretion of T - Helper-1 and T-helper-2-associated cytokines in activated human T cells. Immunnology 1997, 90, 205-211.
  • 4. Berkovitch M., Heyman E., Afriat R.: Copper and zinc blood levels among children with nonorganic failure to thrive. Clin. Nutr., 2003, 22, 183.
  • 5. Better W.J., O’Dell B.L.: Physiological roles of zinc in the plasma membrane of mammalian cells. J. Nutr. Bio-chem., 1993, 4, 194-207.
  • 6. Bush A.I., Pettingell Jr W.H., Multhaup G.: Rapid induction of Alzheimer A amyloid formation by zinc. Science, Washington DC, 1994, 265, 1464-7.
  • 7. Bush A.I., Multhaup G., Moir R.D., et al.: A novel zinc (II) binding site modulates the function of A 4 amyliod precursor of Alzheimer’s disease. J. Biol. Chem., 1993, 268, 16109-16112.
  • 8. Calhoun N.R., Smith J.C., Becker K.L.: The role of zinc in bone metabolism. Orthopedics 1974, 103, 212-34.
  • 9. Cho C.H., Fong L.Y.Y., Ma P.C.C.: Zinc deficiency: its role in gastric secretion and stress - induced gastric ulceration in rats. Pharmacol. Biochem. Be., 1987, 26,293-7.
  • 10. Cousins R.J., Leinart A.S.: Tissue-specific regulation of zinc metabolism and metallothionein genes by interleukin-1. FASEB J. 1988, 2, 2884-2890.
  • 11. Cousins R.J.: Systemic Transport of zinc. In: Zinc in human biology. Ed: C.F. Mills. London, Springer-Verlag, 1989, p. 79-83.
  • 12. Cousins R.J.: Zinc. In: Present knowledge in nutrition. Ed: E.E. Ziegler, Jr L.J. Filer. Washington DC, ILSI Press, 1996, 293-306.
  • 13. Driscoll E.R., Bettger W.J.: The effect of dietary zinc deficiency in the rat on the lipid composition of the erythrocyte membrane Triton Shell. Lipids 1993, 27, 972-977.
  • 14. Fischer P.W., Giroux A., L’Abbe M.R.: Effects of zinc on mucosal copper binding and on the kinetics of copper absorption. J. Nutr., 1983, 113, 462-469.
  • 15. Fraker P.J., King L.E., Laakko T: The dynamic link between the integrity of immune system and zinc status. J. Nutr., 2000, 130, 1399-1406.
  • 16. Gachot B., Tauc M., Morat L.: Zinc uptake by Proxima cells isolated from rabbit kidney: effect of cysteine and histidine. Pflügers Arch. Physiol.,1991, 419, 583-7.
  • 17. Glenner G.G., Wong C.: Alzheimer disease: initial report of the purification and characterization of a novel cerebrovascular amyloid protein. Biophem. Biophys. Res. Comm., 1984, 120, 885-890.
  • 18. Gunshin H., Mackenzie B., Berger U.V, et al.: Cloning and characterization of mammalian proton - coupled metal ion transporter. Nature 1998, 338, 482-488.
  • 19. Hadigan C.M., Anderson E.J., Miller K.K., et al: Assessment of macronutrient and micronutrient intake in women with anorexia nervosa. Int. J. Eat. Disord., 2000, 7, 248-292.
  • 20. Hebebrand J., Exner C., Hebebrand K., et al: Hyperactivity in patients with anorexia nervosa and in semistarved rats: Evidence for a pivotal role of hypoleptinemia. Physiol. Behav., 2003, 79, 25-34.
  • 21. Hempe J.M., Cousins R.J.: Cysteine-rich intestinal protein and intestinal metallothioneins: an inverse relationship as a conceptual model for zinc absorption in rats. J. Nutr.,1992, 122, 89-95.
  • 22. Hempe J.M., Cousins R.J.: Cysteine-rich intestinal protein binds zinc during transmucosal zinc transport. Proc. Natl. Acad. Sci. USA 1991, 88, 9671-9674.
  • 23. Jackson M. J.: Physiology of zinc: general aspects. In: Zincin human biology. Ed: C.F Mills, London, Springer Verlag, 1989, p. 1-14.
  • 24. Johanning G.L., Browning J.D., Bobilya D.J., et al.: Effect of zinc deficiency on enzyme activities in rat and pig erythrocyte membranes. Proc. Soc. Exp. Bio. Med., 1990, 195, 224-229.
  • 25. Kabata-Pendias A., Pendias H.: Biogeochemia pierwiastków śladowych. Warszawa, Wyd. Nauk. PWN, 1999.
  • 26. Kantola M., Kröger P., Purkuen R.: Accumulation of cadmium, zinc and copper in maternal blood and developmental placental tissue: differences between Finland, Estonia and St. Petersburg. Environ. Res. Sect., 2000, A83, 54-66.
  • 27. Kantola M., Vartiainen T.: Changes in selenium, zinc, copper and cadmium in human milk during the time when selenium has been supplemented to fertilizers in Finland. J. Trace Elem. Med. Biol., 2001, 15, 11-17.
  • 28. Keen C.L., Gershwin M.E.: Zinc deficiency and immune function. Annu. Rev. Nutr., 1997, 127, 1729-1736.
  • 29. King J. C., Shames D.M., Lowe N.M.: Effect of acute zinc depletion on zinc homeostasis and plasma zinc kinetics in men. Am. J. Clin. Res., 2001, 74, 116-124.
  • 30. King J.C., Shames D.M., Woodhouse L.R.: Zinc Homeostasis in Humans. J. Nutr., 2000, 130, 1360-1366.
  • 31. Kirchgessner M., Weigand E.: Zinc absorption and excretion in relation to nutrition. Metal Ions Biol. Syst., 1983, 15, 319-61.
  • 32. Li L., Kaplan J.: Defects in the yeast high affinity iron transport system result in increased metal sensitivity because of the increased expression with a broad transition metal specificity. J. Biol. Chem. 1998, 273, 22181-22187.
  • 33. Lönnerdal B.: Intestinal absorption of zinc. In: Zincin human biology. Ed: C.F Mills, London, Springer-Verlag,1989, 33-55.
  • 34. McCall K.A., Huang C., Fierke C.A.: Function and mechanism of zinc metalloenzymes. J. Nutr., 2000, 130, 1437-1446.
  • 35. McMahron R.J., Cousins R.J.: Regulation of the zinc transporter ZnT - 1 by dietary zinc. Proc. Natl. Acad. Sci. USA 1998, 95, 4841-4846.
  • 36. Miniuk K., Moniuszko-Jakoniuk J., Kulikowska E.: Biodostępność oraz stany chorobowe przy niedoborze miedzi. Pol. Tyg. Lek., 1991, 46, 24, 476.
  • 37. Moser-Veillon P.B.: Zinc consumption patterns and dietary recommendations. J. Am. Diet. Assoc., 1990, 90, 1089-1093.
  • 38. Palmiter R., Cole T., Quaife C., Findley S.: ZnT - 3, a putative transporter of zinc into synaptic vesicles. Proc. Natl. Acad. Sci. USA 1996, 93, 14934-14939.
  • 39. Palmiter R.D., Findley S.D.: Coining and functional characterization of a mammalian zinc transporter that confers resitance to zinc. EMBO J, 1995, 14, 639-649.
  • 40. Parkman R., Weinberg K.: Immunological reconstruction following hematopoetic stem cell transplantation. In: Hematopoetic Cell Transplantation, Ed: E.D Thomas, K.G Blume, S.J Forman, ed 2. UK, Oxford, Blackwell Science, 1999, 704-735.
  • 41. Pasternak K., Floriańczyk B.: Metale życia. Wybrane metale i ich rola w funkcjonowaniu organizmu człowieka. Lublin, Wydawn. Folium, 1995.
  • 42. Paulsen I.T., Saier M.H.: A novel family of ubiquitous heavy metal ion transport proteins. J. Membrane Biol., 1997, 156, 99-103.
  • 43. Prasad A.S.: Effects of zinc deficiency on immune functions. J. Trace Element. Exp. Med., 2000, 13, 1-20.
  • 44. Prasad A.S.: Zinc in human health: an uptake. J. Trace. Element. Exp. Med., 1998, 11, 63-87.
  • 45. Prochorska A.: Rola cynku i jego udział w regulacji zjawisk odpornościowych w organizmie. Pol. Tyg. Lek., 1984, 25, 456.
  • 46. Sprietsma J.E.,: Modern diets and diseases: NO-zinc balance. Under Th1, Zinc and nitrogen monoxide (NO) collectively protect against viruses AIDS, autoimmunity, diabetes, allergies, asthma, infectious diseases, atherosclerosis and cancer. Med. Hypotheses., 1999, 53, 6-16.
  • 47. Suh S.W., Jensen K.B., Jensen M. S., et al.: Histologic evidence of a zinc role in Alzheimer’s disease. Soc. Neurosci., 1998, 24, 1217.
  • 48. Suhy D.A., O’Halloran T. V: Metal ions in biological systems: Interactions of metal ions with nucleotides, nucleic acids and their constituents’. Vol. 32, Inc. Switzerland, Basel, Marcel Dekker, 1996, p. 558.
  • 49. Tibaduiza E.C., Bobilya D.J.: Zinc transport across and endothelium includes vesicular co transport with albumin. J. Cell. Physiol., 1996, 167, 539, 47.
  • 50. Vallee B.L., Falchuk K.H.: The biochemical basis of zinc physiology. Physiol. Rev., 1993, 73, 79-118.
  • 51. Vinegar B.D., Lasnsman J.B.: Voltagdependent block by zinc of single calcium channels in mouse myotubes. J. Physiol., 1990, 425, 536-78.
  • 52. Wellinghausen N., Rink L.: The significance of zinc for leukocyte biology. J. Leukoc. Biol., 1998, 64, 517-7.
  • 53. Xie X., Hider R.C., Smart T.G.: Modulation of GABA-mediated synaptic transmission by endogenous zinc in the immature rat hippocampus in vitro. J. Physiol., 1994, 478, 75-86.
  • 54. Yamaguchi M., Mochizuki A., Okada S.: Stimulation of bone resorption by comparatively high dose of zinc in rats. J. Pharm. Dyn., 1982, 5, 501-514.
  • 55. Ziemlański Ś., (Red.): Normy żywienia człowieka. Fizjologiczne podstawy. Warszawa, Wyd. Lek. PZWL, 2001.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-51491058-82d9-4a27-9c60-812d87bb88ea
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