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Trudeau, L.-E.

Publications and source records attributed to Trudeau, L.-E..

2 recordsLinked to original sources

Amphetamine Maintenance Therapy During Intermittent Cocaine Self-Administration in Rats: Reduction of Addiction-like Behavior is Associated with Attenuation of Psychomotor and Dopamine Sensitization

BackgroundD-amphetamine maintenance therapy shows promise as a treatment for people with cocaine addiction. Preclinical studies using Long Access (LgA) cocaine self-administration procedures suggest D-amphetamine may act by preventing tolerance to cocaines effects at the dopamine transporter (DAT). However, Intermittent Access (IntA) cocaine self-administration better reflects human patterns of use, is especially effective in promoting addiction-relevant behaviors, and instead of tolerance, produces psychomotor, incentive, and neural sensitization. We asked, therefore, how D-amphetamine maintenance during IntA influences cocaine use and cocaines potency at the DAT. MethodsMale rats self-administered cocaine intermittently (5 minutes ON, 25 minutes OFF x 10) for 14 sessions, with or without concomitant D-amphetamine (5 mg/kg/day via s.c. osmotic minipump). In Experiment 1, psychomotor sensitization, responding for cocaine under a progressive ratio schedule, responding under extinction and cocaine-primed relapse were assessed. In Experiment 2, rats self-administered cocaine or saline intermittently, with or without D-amphetamine, and the ability of cocaine to inhibit dopamine uptake in the nucleus accumbens core was assessed using fast scan cyclic voltammetry ex vivo. ResultsIntA cocaine self-administration produced psychomotor sensitization, strong motivation to take and seek cocaine, and it increased cocaines potency at the DAT. The co-administration of D-amphetamine suppressed both the psychomotor sensitization and high motivation for cocaine produced by IntA experience, and also reversed sensitization of cocaines actions at the DAT, leaving baseline DAT function unchanged. ConclusionsTreatment with D-amphetamine might reduce cocaine use by preventing sensitization-related changes in cocaine potency at the DAT, consistent with an incentive-sensitization view of addiction.

neuroscience

Vglut2 expression in dopamine neurons contributes to post-lesional striatal reinnervation

In Parkinsons disease, the most vulnerable neurons are found in the ventral tier of the substantia nigra (SN), while the adjacent dopamine (DA) neurons of the ventral tegmental area (VTA) are mostly spared. Although a significant subset of adult VTA DA neurons expresses Vglut2, a vesicular glutamate transporter, and release glutamate as a second neurotransmitter in the striatum, only very few adult SN DA neurons have this capacity. Previous work has demonstrated that lesions created by neurotoxins such as MPTP and 6-hydroxydopamine (6-OHDA) can upregulate the expression of Vglut2 in surviving DA neurons. Currently, the molecular mechanisms explaining the plasticity of Vglut2 expression in DA neurons are unknown, as are the physiological consequences for DA neuron function and survival. Here we aimed to characterize the developmental expression pattern of Vglut2 in DA neurons and the role of this transporter in post-lesional plasticity in these neurons. Using an intersectional genetic lineage-mapping approach, based on Vglut2-Cre and TH-Flpo drivers, we first found that more than 98% of DA neurons expressed Vglut2 at some point in their embryonic development. Expression of this transporter was detectable in most DA neurons until E11.5 and was found to be localized in developing axons. Moderate enhancement of VGLUT2 expression in primary DA neurons caused an increase in axonal arborization length. Compatible with a developmental role, constitutive deletion of Vglut2 caused a regional defect in TH-innervation of the dorsal striatum in E18.5 embryos. Moreover, using an in vitro neurotoxin model, we demonstrate that Vglut2 expression can be upregulated in post-lesional DA neurons by 2.5-fold, arguing that the developmental expression of Vglut2 in DA neurons can be reactivated at postnatal stages and contribute to post-lesional plasticity of dopaminergic axons. In support of this hypothesis, we find fewer mesostriatial dopaminergic projections in the striatum of conditional Vglut2 KO mice 7 weeks after a neurotoxic lesion, compared to control animals. Thus, we propose here that one of the functions of Vglut2 in adult DA neurons is to promote post-lesional recovery of meso-striatal axons.

neuroscience