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1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity

In addition to the canonical Gs adenylyl cyclase pathway, the serotonin type 6 receptor (5-HT(6)R) recruits additional signaling pathways that control cognitive function, brain development, and synaptic plasticity in an agonist-dependent and independent manner. Considering that aberrant constitutive...

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Autores principales: Canale, Vittorio, Trybała, Wojciech, Chaumont-Dubel, Séverine, Koczurkiewicz-Adamczyk, Paulina, Satała, Grzegorz, Bento, Ophélie, Blicharz-Futera, Klaudia, Bantreil, Xavier, Pękala, Elżbieta, Bojarski, Andrzej J., Lamaty, Frédéric, Marin, Philippe, Zajdel, Paweł
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9855333/
https://www.ncbi.nlm.nih.gov/pubmed/36671397
http://dx.doi.org/10.3390/biom13010012
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author Canale, Vittorio
Trybała, Wojciech
Chaumont-Dubel, Séverine
Koczurkiewicz-Adamczyk, Paulina
Satała, Grzegorz
Bento, Ophélie
Blicharz-Futera, Klaudia
Bantreil, Xavier
Pękala, Elżbieta
Bojarski, Andrzej J.
Lamaty, Frédéric
Marin, Philippe
Zajdel, Paweł
author_facet Canale, Vittorio
Trybała, Wojciech
Chaumont-Dubel, Séverine
Koczurkiewicz-Adamczyk, Paulina
Satała, Grzegorz
Bento, Ophélie
Blicharz-Futera, Klaudia
Bantreil, Xavier
Pękala, Elżbieta
Bojarski, Andrzej J.
Lamaty, Frédéric
Marin, Philippe
Zajdel, Paweł
author_sort Canale, Vittorio
collection PubMed
description In addition to the canonical Gs adenylyl cyclase pathway, the serotonin type 6 receptor (5-HT(6)R) recruits additional signaling pathways that control cognitive function, brain development, and synaptic plasticity in an agonist-dependent and independent manner. Considering that aberrant constitutive and agonist-induced active states are involved in various pathological mechanisms, the development of biased ligands with different functional profiles at specific 5-HT(6)R-elicited signaling pathways may provide a novel therapeutic perspective in the field of neurodegenerative and psychiatric diseases. Based on the structure of SB-258585, an inverse agonist at 5-HT(6)R-operated Gs and Cdk5 signaling, we designed a series of 1-(arylsulfonyl-isoindol-2-yl)piperazine derivatives and synthesized them using a sustainable mechanochemical method. We identified the safe and metabolically stable biased ligand 3g, which behaves as a neutral antagonist at the 5-HT(6)R-operated Gs signaling and displays inverse agonist activity at the Cdk5 pathway. Inversion of the sulfonamide bond combined with its incorporation into the isoindoline scaffold switched the functional profile of 3g at Gs signaling with no impact at the Cdk5 pathway. Compound 3g reduced the cytotoxicity of 6-OHDA and produced a glioprotective effect against rotenone-induced toxicity in C8-D1A astrocyte cell cultures. In view of these findings, compound 3g can be considered a promising biased ligand to investigate the role of the 5-HT(6)R-elicited Gs and Cdk5 signaling pathways in neurodegenerative diseases.
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spelling pubmed-98553332023-01-21 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity Canale, Vittorio Trybała, Wojciech Chaumont-Dubel, Séverine Koczurkiewicz-Adamczyk, Paulina Satała, Grzegorz Bento, Ophélie Blicharz-Futera, Klaudia Bantreil, Xavier Pękala, Elżbieta Bojarski, Andrzej J. Lamaty, Frédéric Marin, Philippe Zajdel, Paweł Biomolecules Article In addition to the canonical Gs adenylyl cyclase pathway, the serotonin type 6 receptor (5-HT(6)R) recruits additional signaling pathways that control cognitive function, brain development, and synaptic plasticity in an agonist-dependent and independent manner. Considering that aberrant constitutive and agonist-induced active states are involved in various pathological mechanisms, the development of biased ligands with different functional profiles at specific 5-HT(6)R-elicited signaling pathways may provide a novel therapeutic perspective in the field of neurodegenerative and psychiatric diseases. Based on the structure of SB-258585, an inverse agonist at 5-HT(6)R-operated Gs and Cdk5 signaling, we designed a series of 1-(arylsulfonyl-isoindol-2-yl)piperazine derivatives and synthesized them using a sustainable mechanochemical method. We identified the safe and metabolically stable biased ligand 3g, which behaves as a neutral antagonist at the 5-HT(6)R-operated Gs signaling and displays inverse agonist activity at the Cdk5 pathway. Inversion of the sulfonamide bond combined with its incorporation into the isoindoline scaffold switched the functional profile of 3g at Gs signaling with no impact at the Cdk5 pathway. Compound 3g reduced the cytotoxicity of 6-OHDA and produced a glioprotective effect against rotenone-induced toxicity in C8-D1A astrocyte cell cultures. In view of these findings, compound 3g can be considered a promising biased ligand to investigate the role of the 5-HT(6)R-elicited Gs and Cdk5 signaling pathways in neurodegenerative diseases. MDPI 2022-12-21 /pmc/articles/PMC9855333/ /pubmed/36671397 http://dx.doi.org/10.3390/biom13010012 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Canale, Vittorio
Trybała, Wojciech
Chaumont-Dubel, Séverine
Koczurkiewicz-Adamczyk, Paulina
Satała, Grzegorz
Bento, Ophélie
Blicharz-Futera, Klaudia
Bantreil, Xavier
Pękala, Elżbieta
Bojarski, Andrzej J.
Lamaty, Frédéric
Marin, Philippe
Zajdel, Paweł
1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity
title 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity
title_full 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity
title_fullStr 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity
title_full_unstemmed 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity
title_short 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT(6)R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity
title_sort 1-(arylsulfonyl-isoindol-2-yl)piperazines as 5-ht(6)r antagonists: mechanochemical synthesis, in vitro pharmacological properties and glioprotective activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9855333/
https://www.ncbi.nlm.nih.gov/pubmed/36671397
http://dx.doi.org/10.3390/biom13010012
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