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Behav Brain Res ; 360: 120-127, 2019 03 15.
Article in English | MEDLINE | ID: mdl-30521934

ABSTRACT

This study aims to investigate the contribution of nigral dopaminergic (DA) cell loss, repeated exposure to DA medication and the combination of both to the development of neuropsychiatric symptoms observed in Parkinson's disease (PD). A bilateral 6-OHDA lesion of the substantia nigra pars compacta (SNc) was performed in rats. A set of animals was repeatedly administered with L-dopa (20 mg/kg/day) and benserazide (5 mg/kg/day) over 10 days starting from day 11 post-lesion. Behavioural testing was performed in week 3 post-lesion: novel object recognition (NOR), elevated plus maze (EPM) social interaction (SI) tests, and amphetamine-induced hyperlocomotion (AIH). Immunohistochemical analysis revealed a significant partial lesion (48%) in 6-OHDA versus sham rats. This lesion was not associated with motor impairment. However, lesioned rats displayed a significant deficit in the NOR, which was reversed by acute treatment with l-dopa/benserazide (12.5 mg/kg and 15 mg/kg respectively). Lesioned rats also displayed a deficit in the EPM which was not reversed by acute treatment with l-dopa. No difference was observed in the SI test or in the AIH assay. In all assays, no effect of chronic l-dopa exposure was observed. This study provides new insights into the neuropathophysiology associated with neuropsychiatric symptoms of PD. Our data strongly emphasises a not previously clearly identified critical role in cognition for the SNc. The results suggest that DA pathways were less directly involved in lesion-induced anxiety-like behaviour. We did not report any effect of chronic l-dopa exposure in the context of partial nigral cell loss.


Subject(s)
Antiparkinson Agents/adverse effects , Dopamine/metabolism , Levodopa/adverse effects , Memory Disorders/chemically induced , Parkinson Disease, Secondary/drug therapy , Substantia Nigra/metabolism , Amphetamine/toxicity , Animals , Anxiety/chemically induced , Benserazide/adverse effects , Disease Models, Animal , Forelimb/physiopathology , Gait Disorders, Neurologic/chemically induced , Interpersonal Relations , Locomotion/drug effects , Male , Maze Learning/drug effects , Oxidopamine/toxicity , Parkinson Disease, Secondary/chemically induced , Rats , Rats, Sprague-Dawley , Recognition, Psychology/drug effects , Substantia Nigra/drug effects , Sympatholytics/toxicity , Tyrosine 3-Monooxygenase/metabolism
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