Free Access
Issue
Vet. Res.
Volume 32, Number 1, January-February 2001
Page(s) 63 - 70
DOI https://doi.org/10.1051/vetres:2001110
How to cite this article Vet. Res. (2001) 63-70
  1. Abbas A.M.A., Mousa H.M., Lechner-Doll M., Engelhardt W.V., Nutritive value of plants selected by camels (Camelus dromedarius) in the Butana area of the Sudan, J. Anim. Physiol. Anim. Nutr. 74 (1994) 1-8.
  2. Ali B.H., Bartlet A.L., The effect of furazolidone on monoamine oxidase in the chicken and the influence of the alimentary flora thereon, Br. J. Pharmacol. 71 (1981) 219-224.
  3. Alqarawi A.A., Ali B.H., A survey of the literature on drug kinetics in the camel (Camelus dromedarius) (1995-1999), Vet. Res. Commun. 24 (2000) 245-260 [CrossRef] [PubMed].
  4. Aminlari M., Gilnapour H., Comparative studies on the distribution of rhodanese in different tissues of domestic animals, Comp. Biochem. Physiol. B 99 (1991) 673-677 [PubMed].
  5. Aminlari M., Shahbazi M., Rhodanese (thiosulfate: Cyanide sulfurtransferase) distribution in the digestive tract of chickens, Poult. Sci. 73 (1994) 1465-1469 [PubMed].
  6. Aminlari M., Gilnapour H., Taghavianpour M., Vaseghi T., Comparative studies of rhodanese and $\beta$-mercaptopyruvate sulphurtransferase in different organ of sheep and cattle, Comp. Biochem. Physiol. C 92 (1989) 259-262 [CrossRef] [PubMed].
  7. Aminlari M., Gholami S., Vaseghi T., Azaraf A., Rhodanese (Thiosulfate: Cyanide sulfurtransferase) in the digestive tract of chickens at different stages of development, Poult. Sci. 76 (1997) 318-320 [PubMed].
  8. Burrows G.E., Cyanide toxicity in sheep: Therapeutics, Vet. Human Toxicol. 23 (1981) 22-28.
  9. Cianci M., Gliubich F., Zanotti G., Berani R., Specific interaction of lipoate at the active site of rhodanese (1), Biochim. Biophys. Acta 1481 (2000) 103-108 [PubMed].
  10. Dudek M., Frendo J., Koj A., Sub-cellular compartmentation of rhodanese and 3-mercaptopyurvate sulphurtransferase in the liver of some vertebrate species, Comp. Biochem. Physiol. B 65 (1980) 383-386.
  11. Frankenberg L., Enzyme therapy in cyanides poisoning: effect of rhodanese and sulphur compounds, Arch. Toxicol. 45 (1981) 315-323 [CrossRef].
  12. Himwich W.A., Saunders J.B., Enzymatic conversion of cyanide to thiocyanate. Am. J. Physiol. 153 (1948) 348-354.
  13. Kingsbury J.M., Poisonous plants of the United States and Canada, Englewood Cliffs, NJ, Prentice Hall, 1964, pp. 23-26.
  14. Koj A., Subcellular compartmentation and biological functions of mercaptopyruvate sulphurtransferase and rhodanese, in: Cavallini D., Gaull G.E., Zappia V. (Eds.), Natural Sulphur Compounds, Plenum Press, New York, 1980, pp. 493-503.
  15. Lewis J.L., Rhoades C.E., Bice D.E., Harkema J.R., Hotchiss J.A., Sylvester D.M. S., Dhal A.R., Interspecies comparison of cellular localisation of the cyanide metabolising enzyme rhodanese within olfactory mucosa, Anat. Rec. 232 (1992) 620-627 [CrossRef] [PubMed].
  16. Lowry O.H., Rosenbrough N.J., Farr A.L., Randall A.J., Protein measurement with Folin phenol reagent, J. Biol. Chem. 193 (1951) 265-275 [PubMed].
  17. Ma J., Pritsos C.A., Tissue-specific bioenergetic effects and increased enzymatic activities following acute sublethal peroral exposure to cyanide in the mallard duck, Toxicol. Appl. Pharmacol. 142 (1997) 297-302 [CrossRef] [PubMed].
  18. Max S.R., Garbbus J., Wehmen J., Simple procedure for rapid isolation of functionally intact mitochondria from human and rat skeletal muscles, Anal. Biochem. 46 (1972) 576-584 [CrossRef] [PubMed].
  19. Mintel R., Westly J., The rhodanese reaction mechanism of sulphur-sulphur bond cleavage, J. Biol. Chem. 241 (1966) 3381-3385 [PubMed].
  20. Mousa H.M., Cyanide detoxification in domestic fowl (Gallus domesticus), Ph.D. thesis, University of London, UK, 1982.
  21. Mousa H.M., Davis R.H., Alternative sulphur donors for detoxification of cyanide in the chicken, Comp. Biochem. Physiol. C 99 (1991) 309-315 [CrossRef] [PubMed].
  22. Nagahara N., Ito T., Minami M., Mercaptopyruvate sulphurtransferase as a defence against cyanide toxication: molecular properties and mode of detoxification, Histol. Histopathol. 14 (1999) 1277-1286 [PubMed].
  23. Nandi D.L., Horowitz P.M., Westley J., Rhodanese as a thioredoxin oxidase, Int. J. Biochem. Cell Biol. 32 (2000) 465-473 [CrossRef] [PubMed].
  24. Sörbo B.H., Crystalline rhodanese. 1. Purification and physiochemical examination, Acta Chem. Scand. 7 (1953) 1129-1136.
  25. Sörbo B.H., Rhodanese, in: Colowick S.P., Kaplan N.O. (Eds.), Methods in Enzymology, Vol. 2, Academic Press, New York, 1955, pp. 334-337.
  26. Taniguchi T., Kimura T., Role of 3-mercaptopyruvate sulphurtransferase in the formation of iron sulphur chromophore of adrenal ferrodoxin, Biochim. Biophys. Acta 364 (1974) 284-295 [PubMed].
  27. Vannesland B., Casetric P.A., Conn E.E., Solomonson L.P., Volini M., Westley J.E., Cyanide metabolism, Fed. Proc. 41 (1982) 2639-2648 [PubMed].
  28. Vogel K.P., Haskins F., Govz H., Potential for hydrocyanic acid poisoning of livestock by Indian grass, J. Range Manage. 40 (1987) 506-509.
  29. Way J.L., Cyanide intoxication and its mechanism of antagonism, Annu. Rev. Pharmacol. Toxicol. 24 (1984) 451-481 [PubMed].
  30. Westley J.E., Rhodanese, Adv. Enzymol. 39 (1973) 327-368.
  31. Westley J.E., Mammalian cyanide detoxification with sulphane sulphur, in: Cyanide Compounds in Biology, Ciba Foundation Symposium, 1988, no. 140, pp. 201-218.
  32. Wiemeryer S.N., Hill E.F., Carpenter J.W., Krynitsky A.J., Acute oral toxicity of sodium cyanide in birds, J. Wildl. Dis. 22 (1988) 538-546.
  33. Wood J.L., Biochemistry of thiocyanic acid, in: Newmann A.A. (Ed.), Chemistry and Biochemistry of thiocyanic acid and its derivatives, Academic Press, New York, 1975, pp. 156-221.