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Relationship between anorexia and loss of serotonin uptake sites in brain of mice and rats receiving d-norfenfluramine or d-fenfluramine.

Abstract
Previously, we have shown that repeated administration of d-fenfluramine (D-F) to rats is associated with development of tolerance to the initial anorexia, but that in mice no such tolerance seems to occur. In the first study, we show that chronic administration of neither d-norfenfluramine (D-NF; the principal metabolite of D-F) nor the serotonin (5-HT) 2C receptor agonist m-chlorophenyl-piperazine (mCPP) is associated with the development of anorectic tolerance tested using a dessert protocol. However, compared with mice receiving these drugs for the first time, both of these chronic treatments were associated with a significant attenuation of Fos immunoreactivity (Fos-ir) in several brain regions, including bed nucleus of the stria terminalis, paraventricular hypothalamus, and central nucleus of amygdala. This attenuation is similar to that described previously in rats. Because loss of efficacy of these agents could be related to loss of 5-HT transporter (5-HTT) sites, their presumptive primary mode of action, in the final study we determined the effect of various, low-dose regimens of D-F and D-NF on 5-HT uptake in frontal cortex of mice and rats. We show in mice that D-F causes a greater loss of 5-HT uptake than D-NF, and that at the lowest dose regimen used uptake was unaffected in rats but was reduced in mice. The data are discussed in terms of the species difference in behavioral tolerance and differences in neurochemical profile of D-F and D-NF.
AuthorsNeil E Rowland, Sana Rokadia, D Joy Green, Kimberly Robertson
JournalPharmacology, biochemistry, and behavior (Pharmacol Biochem Behav) Vol. 77 Issue 3 Pg. 541-6 (Mar 2004) ISSN: 0091-3057 [Print] United States
PMID15006465 (Publication Type: Comparative Study, Journal Article)
Chemical References
  • Serotonin Uptake Inhibitors
  • Norfenfluramine
  • Fenfluramine
  • Serotonin
Topics
  • Animals
  • Anorexia (chemically induced, metabolism)
  • Brain (drug effects, metabolism)
  • Fenfluramine (pharmacology)
  • Mice
  • Mice, Inbred ICR
  • Norfenfluramine (pharmacology)
  • Rats
  • Rats, Sprague-Dawley
  • Serotonin (metabolism)
  • Selective Serotonin Reuptake Inhibitors (pharmacology)
  • Species Specificity

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