Serotonin Neuron Transplants Exacerbate l-DOPA- Induced Dyskinesias in a Rat Model of Parkinson's Disease
Open Access
- 25 July 2007
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 27 (30), 8011-8022
- https://doi.org/10.1523/jneurosci.2079-07.2007
Abstract
Clinical trials in patients with Parkinson9s disease have shown that transplants of fetal mesencephalic dopamine neurons can form a new functional innervation of the host striatum, but the clinical benefits have been highly variable: some patients have shown substantial recovery in motor function, whereas others have shown no improvement and even a worsening in the 3,4-dihydroxyphenyl-l-alanine (l-DOPA)-induced dyskinetic side effects. Differences in the composition of the grafted cell preparation may contribute to these discrepancies. In particular, the number of serotonin neurons contained in the graft can vary greatly depending on the dissection of the fetal tissue. Importantly, serotonin neurons have the ability to store and release dopamine, formed from exogenously administered l-DOPA. Here, we have evaluated the effect of transplants containing serotonin neurons, or a mixture of dopamine and serotonin neurons, on l-DOPA-induced dyskinesias in 6-hydroxydopamine-lesioned animals. As expected, dopamine neuron-rich grafts induced functional recovery, accompanied by a 60% reduction in l-DOPA-induced dyskinesia that developed gradually over the first 10 weeks. Rats with serotonin-rich grafts with few dopamine neurons, in contrast, showed a progressive worsening of their l-DOPA-induced dyskinesias over time, and no functional improvement. The antidyskinetic effect of dopamine-rich grafts was independent of the number of serotonin neurons present. We conclude that serotonin neurons in the grafts are likely to have a detrimental effect on l-DOPA-induced dyskinesias in cases in which the grafts contain no or few dopamine neurons.Keywords
This publication has 42 references indexed in Scilit:
- The impact of graft size on the development of dyskinesia following intrastriatal grafting of embryonic dopamine neurons in the ratNeurobiology of Disease, 2006
- Graft placement and uneven pattern of reinnervation in the striatum is important for development of graft-induced dyskinesiaNeurobiology of Disease, 2006
- Mice over-expressing the 5-HT1A receptor in cortex and dentate gyrus display exaggerated locomotor and hypothermic response to 8-OH-DPATBehavioural Brain Research, 2006
- Serotonergic hyperinnervation into the dopaminergic denervated striatum compensates for dopamine conversion from exogenously administered l-DOPABrain Research, 2005
- Cell transplantation in Parkinson's disease: how can we make it work?Trends in Neurosciences, 2005
- Dissociation between short‐term increased graft survival and long‐term functional improvements in Parkinsonian rats overexpressing glial cell line‐derived neurotrophic factorEuropean Journal of Neuroscience, 2004
- Fetal Ventral Mesencephalic Grafts Functionally Reduce the Dopamine D2 Receptor Supersensitivity in Partially Dopamine Reinnervated Host StriatumExperimental Neurology, 2000
- Intranigral Transplants of GABA-Rich Striatal Tissue Induce Behavioral Recovery in the Rat Parkinson Model and Promote the Effects Obtained by Intrastriatal Dopaminergic TransplantsExperimental Neurology, 1999
- Dopaminergic transplants in experimental parkinsonism: cellular mechanisms of graft-induced functional recoveryCurrent Opinion in Neurobiology, 1992
- Electrophysiological responses of serotoninergic dorsal raphe neurons to 5‐HT1A and 5‐HT1B agonistsSynapse, 1987