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1990 | 41 | 1-3 |

Tytuł artykułu

Antipyretic activity of prazosin

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Szreder Z.: Antipyretic activity of prazosin. Acta Physiol. Pol. 1990, 41, (1 3): 45-52. Thermal responses to prazosin (0.75 mg/kg, i.v. as a bolus injection or 3 h infusion) were investigated in febrile rabbits (treated with E. coli lipopolysaccharide, PLPS) at 3 ambient temperatures (Ta) of 5, 19, 28° C. The drug produced antipyresis which increased with the simultaneous drop of Ta. This antipyretic activity was accompanied by an inhibition of heat production or enhanced elimination of heat, depending on Ta. It is suggested that antipyresis produced by prazosin is mainly due to the effector part of the thermoregulatory system.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

41

Numer

1-3

Opis fizyczny

p.45-52,fig.,ref.

Twórcy

autor
  • Chair and Department of Pharmacology, School of Medicine, Gdansk, Poland

Bibliografia

  • 1. Brück K., Zeisberger E. (1978). Significance and possible central mechanisms of thermoregulatory threshold deviations in thermal adaptation. In: Strategies in cold. Natural torpidity and thermogenesis. Eds. Wang L. C. N., Hudson J. W., Academic Press, New York, 655-694.
  • 2. Brück K., Hinckel P. (1982). Thermoafferent system and their adaptive modifications. Pharniac. Ther., 17, 357-381.
  • 3. Cena K., Clark J. A., Spotila J. R. (1986). Thermoregulation. In: Biology of the integument. 2 Vertebrates. Eds. Bereiter-Hahn J., Malotsy K. S., Richards A. G., Springer-Verlag, Berlin, Heidelberg, New York, Tokyo, 517-533.
  • 4. Clark W. G. (1980). Antipyretics: mechanism of action. In: Fever. Eds. Lipton J. M., Raven Press, New York, 131-140.
  • 5. Gągało I., Hać R., Korolkiewicz K. Z. (1983). The metabolic rate during the time course of salicylate antipyresis in the rabbit. Europ. J. Pharmacol., 96, 193-200.
  • 6. Gonzales R. R., Kluger M. J., Hardy J. D. (1971). Partitional calorimetry of the New Zealand white rabbit at temperatures 5-35° C. J. Appl. Physiol., 31, 728-734.
  • 7. Наć E., Gągało I. (1987). Antipyretic activity of copper salicylate. Pol. J. Pharmacol. Pharm., 39, 219-227.
  • 8. Matuszek M., Szreder Z. (1984). The influence of prazosin on E. coli lipopolysaccharide- -induced fever and noradrenaline hyperthermia. Pol. J. Pharmacol. Pharm., 36, 585-593.
  • 9. Matuszek M., Szreder Z., Korolkiewicz Z. (1985). Differences between the effect of prazosin and lysine-acetylsalicylate on some thermoregulatory parameters in nonfeverish rabbits. Pol. J. Pharmacol. Pharm., 37, 875-882.
  • 10. Matuszek M., Szreder Z., Korolkiewicz Z. (1986). Effects of prazosin on metabolism and body temperature in normothermic rabbits. Pol. J. Pharmacol. Pharm., 38, 417 423.
  • 11. Menkes D. B., Baraban J. M., Aghajanian G. K. (1981). Prazosin selectively antagonizes neuronal responses mediated by alpha1-adrenoceptors in brain. Naunyn-Schmiedeberg’s Arch. Pharmacol., 31, 273-275.
  • 12. Mueller R. A., Lundberg D. B. A., Breese G. R., Hendner J., Hendner T., Jonason J. (1982). The neuropharmacology of respiratory control. Pharmacol. Rev., 34, 255-285.
  • 13. Stitt J. T. (1976). The regulation of respiratory evaporative heat loss in the rabbit. J. Physiol. (London), 258, 157-171.

Typ dokumentu

Bibliografia

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