Targeting the cannabinoid receptor CB2 in a mouse model of l-dopa induced dyskinesia
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Rentsch, Peggy
Stayte, Sandy
Egan, Timothy
Clark, Ian A
Vissel, Bryce
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Academic Press
Abstract
L-dopa induced dyskinesia (LID) is a debilitating side-effect of the primary treatment used in Parkinson's disease
(PD), l-dopa. Here we investigate the effect of HU-308, a cannabinoid CB2 receptor agonist, on LIDs. Utilizing a
mouse model of PD and LIDs, induced by 6-OHDA and subsequent l-dopa treatment, we show that HU-308
reduced LIDs as effectively as amantadine, the current frontline treatment. Furthermore, treatment with HU-308
plus amantadine resulted in a greater anti-dyskinetic effect than maximally achieved with HU-308 alone, potentially
suggesting a synergistic effect of these two treatments. Lastly, we demonstrated that treatment with HU308
and amantadine either alone, or in combination, decreased striatal neuroinflammation, a mechanism which
has been suggested to contribute to LIDs. Taken together, our results suggest pharmacological treatments with
CB2 agonists merit further investigation as therapies for LIDs in PD patients. Furthermore, since CB2 receptors
are thought to be primarily expressed on, and signal through, glia, our data provide weight to suggestion that
neuroinflammation, or more specifically, altered glial function, plays a role in development of LIDs.
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Neurobiology of Disease
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Open Access
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Creative Commons Attribution-NonCommercial-NoDerivs License
Restricted until
2037-12-31
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