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Pleiotrophin differentially regulates the rewarding and sedative effects of ethanol
Authors:Marta Vicente‐Rodríguez  Carmen Pérez‐García  Marcel Ferrer‐Alcón  María Uribarri  María G Sánchez‐Alonso  María P Ramos  Gonzalo Herradón
Institution:1. Pharmacology lab, Department of Pharmaceutical and Health Sciences, Facultad de Farmacia, Universidad CEU San Pablo, , Madrid, Spain;2. BRAINco Biopharma, S.L., Bizkaia Technology Park, Bilbao, , Spain;3. Biochemistry lab, Department of Chemistry and Biochemistry, Facultad de Farmacia, Universidad CEU San Pablo, , Madrid, Spain
Abstract:Pleiotrophin (PTN) is a cytokine with important roles in dopaminergic neurons. We found that an acute ethanol (2.0 g/kg, i.p.) administration causes a significant up‐regulation of PTN mRNA and protein levels in the mouse prefrontal cortex, suggesting that endogenous PTN could modulate behavioural responses to ethanol. To test this hypothesis, we studied the behavioural effects of ethanol in PTN knockout (PTN?/?) mice and in mice with cortex‐ and hippocampus‐specific transgenic PTN over‐expression (PTN‐Tg). Ethanol (1.0 and 2.0 g/kg) induced an enhanced conditioned place preference in PTN?/? compared to wild type mice, suggesting that PTN prevents ethanol rewarding effects. Accordingly, the conditioning effects of ethanol were completely abolished in PTN‐Tg mice. The ataxic effects induced by ethanol (2.0 g/kg) were not affected by the genotype. However, the sedative effects of ethanol (3.6 g/kg) tested in a loss of righting reflex paradigm were significantly reduced in PTN‐Tg mice, suggesting that up‐regulation of PTN levels prevents the sedative effects of ethanol. These results indicate that PTN may be a novel genetic factor of importance in alcohol use disorders, and that potentiation of the PTN signalling pathway may be a promising therapeutic strategy in the treatment of these disorders.
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Keywords:addiction  alcohol     ALK     conditioned place preference  dependence  midkine
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