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Dopamine/adenosine interactions related to locomotion and tremor in animal models: Possible relevance to parkinsonism

  • John D. Salamone
  • , Keita Ishiwari
  • , Adrienne J. Betz
  • , Andrew M. Farrar
  • , Susana M. Mingote
  • , Laura Font
  • , Jörg Hockemeyer
  • , Christa E. Müller
  • , Mercè Correa
  • University of Connecticut
  • Yale University
  • Columbia University
  • Jaume I University
  • University of Bonn

Research output: Contribution to journalArticlepeer-review

63 Scopus citations

Abstract

Adenosine A2A antagonists can exert antiparkinsonian effects in animal models. Recent experiments studied the ability of MSX-3 (an adenosine A2A antagonist) to reverse the locomotor suppression and tremor produced by dopamine antagonists in rats. MSX-3 reversed haloperidol-induced suppression of locomotion, and reduced the tremulous jaw movements induced by haloperidol, pimozide, and reserpine. Infusions of MSX-3 into the nucleus accumbens core increased locomotion in haloperidol-treated rats, but there were no effects of infusions into the accumbens shell or ventrolateral neostriatum. In contrast, MSX-3 injected into the ventrolateral neostriatum reduced pimozide-induced tremulous jaw movements. Dopamine/adenosine interactions in different striatal subregions are involved in distinct aspects of motor function.

Original languageEnglish
Pages (from-to)S130-S134
JournalParkinsonism and Related Disorders
Volume14
Issue numberSUPPL.2
DOIs
StatePublished - Jul 2008

Keywords

  • Antipsychotic
  • Basal ganglia
  • Caudate
  • Dopamine
  • Motivation
  • Motor
  • Neostriatum
  • Nucleus accumbens
  • Parkinson's disease
  • Putamen

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