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The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding

Animal studies of effort-based choice behavior are being used to model effort-related motivational dysfunctions in humans. With these procedures, animals are offered a choice between high-effort instrumental actions leading to highly valued reinforcers vs. low effort/low reward options. Several prev...

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Autores principales: Rotolo, Renee A., Dragacevic, Vladimir, Kalaba, Predrag, Urban, Ernst, Zehl, Martin, Roller, Alexander, Wackerlig, Judith, Langer, Thierry, Pistis, Marco, De Luca, Maria Antonietta, Caria, Francesca, Schwartz, Rebecca, Presby, Rose E., Yang, Jen-Hau, Samels, Shanna, Correa, Merce, Lubec, Gert, Salamone, John D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6611521/
https://www.ncbi.nlm.nih.gov/pubmed/31316379
http://dx.doi.org/10.3389/fphar.2019.00682
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author Rotolo, Renee A.
Dragacevic, Vladimir
Kalaba, Predrag
Urban, Ernst
Zehl, Martin
Roller, Alexander
Wackerlig, Judith
Langer, Thierry
Pistis, Marco
De Luca, Maria Antonietta
Caria, Francesca
Schwartz, Rebecca
Presby, Rose E.
Yang, Jen-Hau
Samels, Shanna
Correa, Merce
Lubec, Gert
Salamone, John D.
author_facet Rotolo, Renee A.
Dragacevic, Vladimir
Kalaba, Predrag
Urban, Ernst
Zehl, Martin
Roller, Alexander
Wackerlig, Judith
Langer, Thierry
Pistis, Marco
De Luca, Maria Antonietta
Caria, Francesca
Schwartz, Rebecca
Presby, Rose E.
Yang, Jen-Hau
Samels, Shanna
Correa, Merce
Lubec, Gert
Salamone, John D.
author_sort Rotolo, Renee A.
collection PubMed
description Animal studies of effort-based choice behavior are being used to model effort-related motivational dysfunctions in humans. With these procedures, animals are offered a choice between high-effort instrumental actions leading to highly valued reinforcers vs. low effort/low reward options. Several previous studies have shown that dopamine (DA) uptake inhibitors, including GBR12909, lisdexamfetamine, methylphenidate, and PRX-14040, can reverse the effort-related effects of the vesicular monoamine transport blocker tetrabenazine, which inhibits DA storage. Because many drugs that block DA transport act as major stimulants that also release DA, and produce a number of undesirable side effects, there is a need to develop and characterize novel atypical DA transport inhibitors. (S)-CE-123 ((S)-5-((benzhydrylsulfinyl) methyl)thiazole) is a recently developed analog of modafinil with the biochemical characteristics of an atypical DA transport blocker. The present paper describes the enantioselective synthesis and initial chemical characterization of (S)-CE-123, as well as behavioral experiments involving effort-based choice and microdialysis studies of extracellular DA. Rats were assessed using the fixed ratio 5/chow feeding choice test. Tetrabenazine (1.0 mg/kg) shifted choice behavior, decreasing lever pressing and increasing chow intake. (S)-CE-123 was coadministered at doses ranging from 6.0 to 24.0 mg/kg, and the highest dose partially but significantly reversed the effects of tetrabenazine, although this dose had no effect on fixed ratio responding when administered alone. Additional experiments showed that (S)-CE-123 significantly increased lever pressing on a progressive ratio/chow feeding choice task and that the effective dose (24.0 mg/kg) increased extracellular DA in nucleus accumbens core. In summary, (S)-CE-123 has the behavioral and neurochemical profile of a compound that can block DA transport, reverse the effort-related effects of tetrabenazine, and increase selection of high-effort progressive ratio responding. This suggests that (S)-CE-123 or a similar compound could be useful as a treatment for effort-related motivational dysfunction in humans.
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spelling pubmed-66115212019-07-17 The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding Rotolo, Renee A. Dragacevic, Vladimir Kalaba, Predrag Urban, Ernst Zehl, Martin Roller, Alexander Wackerlig, Judith Langer, Thierry Pistis, Marco De Luca, Maria Antonietta Caria, Francesca Schwartz, Rebecca Presby, Rose E. Yang, Jen-Hau Samels, Shanna Correa, Merce Lubec, Gert Salamone, John D. Front Pharmacol Pharmacology Animal studies of effort-based choice behavior are being used to model effort-related motivational dysfunctions in humans. With these procedures, animals are offered a choice between high-effort instrumental actions leading to highly valued reinforcers vs. low effort/low reward options. Several previous studies have shown that dopamine (DA) uptake inhibitors, including GBR12909, lisdexamfetamine, methylphenidate, and PRX-14040, can reverse the effort-related effects of the vesicular monoamine transport blocker tetrabenazine, which inhibits DA storage. Because many drugs that block DA transport act as major stimulants that also release DA, and produce a number of undesirable side effects, there is a need to develop and characterize novel atypical DA transport inhibitors. (S)-CE-123 ((S)-5-((benzhydrylsulfinyl) methyl)thiazole) is a recently developed analog of modafinil with the biochemical characteristics of an atypical DA transport blocker. The present paper describes the enantioselective synthesis and initial chemical characterization of (S)-CE-123, as well as behavioral experiments involving effort-based choice and microdialysis studies of extracellular DA. Rats were assessed using the fixed ratio 5/chow feeding choice test. Tetrabenazine (1.0 mg/kg) shifted choice behavior, decreasing lever pressing and increasing chow intake. (S)-CE-123 was coadministered at doses ranging from 6.0 to 24.0 mg/kg, and the highest dose partially but significantly reversed the effects of tetrabenazine, although this dose had no effect on fixed ratio responding when administered alone. Additional experiments showed that (S)-CE-123 significantly increased lever pressing on a progressive ratio/chow feeding choice task and that the effective dose (24.0 mg/kg) increased extracellular DA in nucleus accumbens core. In summary, (S)-CE-123 has the behavioral and neurochemical profile of a compound that can block DA transport, reverse the effort-related effects of tetrabenazine, and increase selection of high-effort progressive ratio responding. This suggests that (S)-CE-123 or a similar compound could be useful as a treatment for effort-related motivational dysfunction in humans. Frontiers Media S.A. 2019-06-28 /pmc/articles/PMC6611521/ /pubmed/31316379 http://dx.doi.org/10.3389/fphar.2019.00682 Text en Copyright © 2019 Rotolo, Dragacevic, Kalaba, Urban, Zehl, Roller, Wackerlig, Langer, Pistis, De Luca, Caria, Schwartz, Presby, Yang, Samels, Correa, Lubec and Salamone http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Rotolo, Renee A.
Dragacevic, Vladimir
Kalaba, Predrag
Urban, Ernst
Zehl, Martin
Roller, Alexander
Wackerlig, Judith
Langer, Thierry
Pistis, Marco
De Luca, Maria Antonietta
Caria, Francesca
Schwartz, Rebecca
Presby, Rose E.
Yang, Jen-Hau
Samels, Shanna
Correa, Merce
Lubec, Gert
Salamone, John D.
The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding
title The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding
title_full The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding
title_fullStr The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding
title_full_unstemmed The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding
title_short The Novel Atypical Dopamine Uptake Inhibitor (S)-CE-123 Partially Reverses the Effort-Related Effects of the Dopamine Depleting Agent Tetrabenazine and Increases Progressive Ratio Responding
title_sort novel atypical dopamine uptake inhibitor (s)-ce-123 partially reverses the effort-related effects of the dopamine depleting agent tetrabenazine and increases progressive ratio responding
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6611521/
https://www.ncbi.nlm.nih.gov/pubmed/31316379
http://dx.doi.org/10.3389/fphar.2019.00682
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