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1988 | 39 | 3 |

Tytuł artykułu

Intestinal absorption of thiamine, glucose and sodium in rats after lead and joint lead-zinc treatment

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Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Doleżych, S.: Intestinal absorption of thiamine, glucose and sodium in rats after lead and joint lead-zinc treatment. Acta physiol, pol., 1988, 39 (3): 195-201. Intestinal absorption of thiamine, glucose and sodium was studied by perfusion method in situ in control rats, in rats subchronically poisoned with lead and in rats subchronically poisoned with lead and zinc administered jointly. In lead poisoned rats absorption of the investigated substances was increased. In lead and zinc poisoned rats intestinal absorption was not elevated. This seems to indicate that interaction between lead and zinc Was antagonistic also when the metals were administered parenterally.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

39

Numer

3

Opis fizyczny

p.195-201,ref.

Twórcy

autor
  • Chair of Human and Animal Physiology, Silesian University, Katowice, Poland

Bibliografia

  • 1. Aungst, В. J., Fung, H. (1981) Kinetic characterization ol in vitro lead transport across the rat small intestine. Toxicol. Appl. Pharmacol. 61. 39-47.
  • 2. Barton, J. C., Conrad, M. E. (1981) Effect of phosphate on the absorption and retention of lead in the rat. Amer. J. Clin. Nutr. 34. 2192-2198.
  • 3. Cerklewski, F. L., Forbes, R. M. (1976) Influence of dietary zinc on lead toxicity in rat. J. Nutr. 106. 689-696.
  • 4. Conrad, M. E., Barton, J. C. (1978) Factors affecting the absorption of lead in the rat. Gastroenterology 74. 731-740.
  • 5. Ferrari, G., Sciorelli, G., Poggio, P., Ventura, U., Rindi, G. (1975) Free thiamine as the likely precursor of endocellular thiamine phosphates in everted rings of rat jejunum. Pflügers Arch. 356. Ill-120.
  • 6. Ferrari, G., Ventura, U., Rindi, G. (1971) The Na⁺ -dependence of thiamine intestinal transport in vitro. Lite Sci. 10. 67-75.
  • 7. Fordtran, J. S. (1975) Stimulation of active and passive sodium absorption by sugars in the human jejunum. J. Clin. Invest. 55. 728-737.
  • 8. Homolka, J. (1971) Biochemia kliniczna. Interpretacja i metodyka, pp. 441-442, PZWL, Warszawa.
  • 9. Koczetow, G. A. (1978) Tiaminowyje iiermenty. Izd. Nauka, Moskwa.
  • 10. Kokot, F. (1969) Metody badań laboratoryjnych stosowanych w klinice, pp. 268- 269, PZWL, Warszawa.
  • 11. Kujawska, A. (1982) Zatrucia substancjami nieorganicznymi. In Kliniczna patologia zawodowa. Ed. K. Marek, pp. 73-94, PZWL, Warszawa.
  • 12. Levander, O. A. (1978) Metabolie interaction between metals and metalloids. Environ. Health Persp. 25. 77-80.
  • 13. Lyall, V., Nath, R., Mahmood, A. (1979) Inhibition of D-glucose uptake by zinc in rat intestine. Biochem. Med. 22. 192-197.
  • 14. Migula, P., Szmatloch, A., Falkus, B., Łaszczyca, P. (1982) The effect of dietary lead on respiratory metabolism and blood picture in mice. Acta Biol. Katowice 10. 53-62.
  • 15. O'Brien, D. P. (1981) Lead toxicity in a dog. J. Amer. Anim. Hosp. Assoc. 1.7. 845-850.
  • 16. Parr, D. R., Harris, E. J. (1976) The effect of lead on the calcium-handling capacity of rat heart mitochondria. Biochem. J. 158. 289-294.
  • 17. Petering, H. G. (1978) Some observations on the interaction of zinc, copper, and iron metabolism in lead and cadmium toxicity. Environ. Health Persp. 25. 141-145.
  • 18. Pytasz, M., Zawadzka, A., Szmatloch, A., Doleżych, В., Falkus, В. (1983) Wpływ pestycydu IPO-62 na transport w jelicie cienkim i grubym szczura. Acta Biol. Katowice 12. 130-139.
  • 19. Secomska, B. (1981) Tiamina. In Wybrane metody badania składu i wartości odżywczej żywności. Ed. U. Rutkowska, pp. 253-258, PZWL, Warszawa.
  • 20. Siegel, G. J., Fogt, S., Hurley, M. J. (1977) Lead actions on (Na⁺ + K⁺)-adenosine triphosphatase from electroplex, rat brain and rat kidney. Adv. Exp. Med. Biol. 84. 465-493.
  • 21. Stevenson, A., Merali, Z., Kacew, S., Singhal, R. Z. (1976) Effects of subacute and chronic lead treatment on glucose homeostasis and renal cyclic AMP metabolism in rats. Toxicology 6. 265-275.
  • 22. Summers, R. W., Schedl, H. P. (1968) Effects of tonicity and glucose on intestinal sodium and water absorption in the rat. Scand. J. Gastroent. 3. 376-382.
  • 23. Thawley, D., Willoughby, R. A., McSherry, B., MacLeod, G., MacKay, K., Mitchell, W. (1977) Toxic interactions among Pb, Zn and Cd with varying levels of dietary Ca and vitamin D.: Hematological system. Environ. Res. 14. 463-475.
  • 24. Vallee, B. L., Ulmer, D. D. (1972) Biochemical effects of mercury, cadmium and lead. Ann. Rev. Biochem. 41. 91-129.
  • 25. Vukan, K. 5., Csalay, L., Csakvary, G., Borzsonyi, M. (1979) Effect of heavy metals on intestinal glucose transport. Acta Physiol. Hung. 53. 229.
  • 26. Wapnir, R. A., Exeni, R. A., McVicar, M., Lipshitz, F. (1977) Experimental lead poisoning and intestinal transport of glucose, amino acids, and sodium. Pediatr. Res. 11. 153-157.
  • 27. Wielgus-Serafińska, E., Zawadzka, A., Falkus, B. (1980) The effect of lead acetate on rat liver mitochondria. Ada Physiol. Pol. 31. 661-668.

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Bibliografia

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