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September 29, 2010Annals of Neurology251 citations

Maladaptive plasticity of serotonin axon terminals in levodopa‐induced dyskinesia

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DODaniella Rylander OttossonMPMartin ParentSOSean S. O’Sullivan

Key Points

  • The study aims to evaluate how levodopa treatment impacts serotonin axon terminals in the context of dyskinesia in Parkinson's disease.
  • Measured SERT radioligand binding in dyskinetic and nondyskinetic subjects using brain tissue from rat, monkey models, and parkinsonian patients.
  • Conducted morphological and ultrastructural analyses of serotonin axon terminals in dyskinetic rats.
  • Assessed stimulated dopamine release in relation to serotonin axon terminal changes.
  • Significantly elevated SERT binding observed in dyskinetic subjects compared to nondyskinetic cases.
  • Levodopa treatment induced sprouting of serotonin axon varicosities with higher synaptic incidence in the rat striatum.
  • Increased depolarization-induced dopamine release correlated with serotonin axon terminal sprouting and enhanced release potentiation by neurotrophic factor.

Abstract

OBJECTIVE: Striatal serotonin projections have been implicated in levodopa-induced dyskinesia by providing an unregulated source of dopamine release. We set out to determine whether these projections are affected by levodopa treatment in a way that would favor the occurrence of dyskinesia. METHODS: As an index of terminal serotonin innervation density, we measured radioligand binding to the plasma membrane serotonin transporter (SERT) in levodopa-treated dyskinetic and nondyskinetic subjects, using brain tissue from both rat and monkey models of Parkinson disease as well as parkinsonian patients. In addition, striatal tissue from dyskinetic rats was used for morphological and ultrastructural analyses of serotonin axon terminals, and for studies of stimulated ³Hdopamine release. RESULTS: Across all conditions examined, striatal levels of SERT radioligand binding were significantly elevated in dyskinetic subjects compared to nondyskinetic cases. In the rat striatum, dyskinesiogenic levodopa treatment had induced sprouting of serotonin axon varicosities having a relatively high synaptic incidence. This response was associated with increased depolarization-induced ³Hdopamine release and with a stronger release potentiation by brain-derived neurotrophic factor. INTERPRETATION: This study provides the first evidence that L-dopa treatment induces sprouting of serotonin axon terminals, with an increased incidence of synaptic contacts, and a larger activity-dependent potentiation of dopamine release in the dopamine-denervated striatum. Treatment-induced plasticity of the serotonin innervation may therefore represent a previously unappreciated cause of altered dopamine dynamics. These results are important for understanding the mechanisms by which L-dopa pharmacotherapy predisposes to dyskinesia, and for defining biomarkers of motor complications in Parkinsons disease.

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Cite This Study

Ottosson et al. (2010) studied this question.

synapsesocial.com/papers/6a1afe669fa30811a0b9610fhttps://doi.org/10.1002/ana.22097
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