Glucagon-like peptide-1 receptor regulation of basal dopamine transporter activity is species-dependent

胰高血糖素样肽-1受体对基础多巴胺转运体活性的调节具有物种依赖性

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作者:Mathias E Jensen, Aurelio Galli, Morgane Thomsen, Kathrine L Jensen, Gerda K Thomsen, Mette K Klausen, Tina Vilsbøll, Mikkel B Christensen, Jens J Holst, Anthony Owens, Sabrina Robertson, Lynette Daws, Daniele Zanella, Ulrik Gether, Gitte M Knudsen, Anders Fink-Jensen2

Conclusions

The GLP-1R agonist-induced modulation of striatal DAT activity in vitro in rats could not be replicated ex vivo in mice and in vivo in humans. Therefore, the underlying mechanisms of action for the GLP-1R agonists-induced efficacy in varios addiction-like behavioural models still remain.

Methods

Rat striatal DA uptake, DA clearance and DAT cell surface expression was assessed following GLP-1 (7-36)-amide exposure in vitro. DA uptake in mice was assesed ex vivo following systemic treatment with the GLP-1R agonist exenatide. In addition, DA uptake was measured in GLP-1R knockout mice and compared with DA-uptake in wild type mice. In healthy humans, changes in DAT availability was assessed during infusion of exenatide measured by single-photon emission computed tomography imaging.

Results

In rats, GLP-1 (7-36)-amide increased DA uptake, DA clearance and DAT cell surface expression in striatum. In mice, exenatide did not change striatal DA uptake. In GLP-1R knockout mice, DA uptake was similar to what was measured in wildtype mice. In humans, systemic infusion of exenatide did not result in acute changes in striatal DAT availability. Conclusions: The GLP-1R agonist-induced modulation of striatal DAT activity in vitro in rats could not be replicated ex vivo in mice and in vivo in humans. Therefore, the underlying mechanisms of action for the GLP-1R agonists-induced efficacy in varios addiction-like behavioural models still remain.

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