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MIF-1 and its peptidomimetic analogs attenuate haloperidol-induced vacuous chewing movements and modulate apomorphine-induced rotational behavior in 6-hydroxydopamine-lesioned rats.

Abstract
Two melanocyte-stimulating hormone release inhibiting factor-1 (MIF-1) also known as L-prolyl-L-leucyl-glycinamide (PLG) peptidomimetic analogs, 3(R)-[[[2(S)-pyrrolidinyl]carbonyl]-amino]-3-(butyl)-2-oxo-1-pyrrolidineacetamide trifluoroacetate (A) and 3(R)-[[[2(S)-pyrrolidinyl]carbonyl]amino]-3-(benzyl)-2-oxo-1-pyrrolidineacetamide trifluoroacetate (B), were evaluated for their ability to modulate dopaminergic activity by measuring apomorphine-induced rotations in 6-hydroxydopamine (6-OHDA)-lesioned rats, and haloperidol (HP)-induced vacuous chewing movements (VCMs) in rats; animal models of Parkinson's disease (PD) and human tardive dyskinesia (TD), respectively. In the 6-OHDA model, both analogs were found to potentiate the contralateral rotational behavior induced by apomorphine dose-dependently and with approximately the same potency. Furthermore, each analog was able to significantly attenuate HP-induced VCMs with almost equal efficacy. The potency and efficacy of these analogs were significantly greater than their parent compound, PLG. These results suggest that both analogs can modulate dopaminergic activity in vivo, likely by the same mechanisms recruited by PLG previously reported.
AuthorsJessica M Castellano, Jody Batrynchuk, Kristine Dolbeare, Vaneeta Verma, Amandeep Mann, Kevin J Skoblenick, Rodney L Johnson, Ram K Mishra
JournalPeptides (Peptides) Vol. 28 Issue 10 Pg. 2009-15 (Oct 2007) ISSN: 0196-9781 [Print] United States
PMID17766011 (Publication Type: Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't)
Chemical References
  • Oxidopamine
  • MSH Release-Inhibiting Hormone
  • Haloperidol
  • Apomorphine
Topics
  • Animals
  • Apomorphine (pharmacology)
  • Behavior, Animal (drug effects)
  • Haloperidol (pharmacology)
  • MSH Release-Inhibiting Hormone (chemistry, pharmacology)
  • Male
  • Mastication
  • Molecular Mimicry
  • Oxidopamine (pharmacology)
  • Rats
  • Rats, Sprague-Dawley
  • Substantia Nigra (drug effects)

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