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Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies

κ‐Opioid receptors (KORs) play a predominant role in pain alleviation, itching skin diseases, depression and neurodegenerative disorders such as multiple sclerosis. Therefore, imaging of KOR by a fluorinated PET tracer was envisaged. Two strategies were followed to introduce a F atom into the very p...

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Autores principales: Tangherlini, Giovanni, Börgel, Frederik, Schepmann, Dirk, Slocum, Samuel, Che, Tao, Wagner, Stefan, Schwegmann, Katrin, Hermann, Sven, Mykicki, Nadine, Loser, Karin, Wünsch, Bernhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7589326/
https://www.ncbi.nlm.nih.gov/pubmed/33448685
http://dx.doi.org/10.1002/cmdc.202000502
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author Tangherlini, Giovanni
Börgel, Frederik
Schepmann, Dirk
Slocum, Samuel
Che, Tao
Wagner, Stefan
Schwegmann, Katrin
Hermann, Sven
Mykicki, Nadine
Loser, Karin
Wünsch, Bernhard
author_facet Tangherlini, Giovanni
Börgel, Frederik
Schepmann, Dirk
Slocum, Samuel
Che, Tao
Wagner, Stefan
Schwegmann, Katrin
Hermann, Sven
Mykicki, Nadine
Loser, Karin
Wünsch, Bernhard
author_sort Tangherlini, Giovanni
collection PubMed
description κ‐Opioid receptors (KORs) play a predominant role in pain alleviation, itching skin diseases, depression and neurodegenerative disorders such as multiple sclerosis. Therefore, imaging of KOR by a fluorinated PET tracer was envisaged. Two strategies were followed to introduce a F atom into the very potent class of cis,trans‐configured perhydroquinoxalines. Whereas the synthesis of fluoroethyltriazole 2 has already been reported, fluoropyrrolidines 14 (1‐[2‐(3,4‐dichlorophenyl)acetyl]‐8‐[(R)‐3‐fluoropyrrolidin‐1‐yl]‐perhydroquinoxalines) were prepared by S(N)2 substitution of a cyclic sulfuric acid derivative with hydroxypyrrolidine and subsequent transformation of the OH moiety into a F substituent. Fluoropyrrolidines 14 showed similar low‐nanomolar KOR affinity and selectivity to the corresponding pyrrolidines, but the corresponding alcohols were slightly less active. In the cAMP and β‐arrestin assay, 14b (proton at the 4‐position) exhibited similar KOR agonistic activity as U‐50,488. The fluoro derivatives 14b and 14c (CO(2)CH(3) at the 4‐position) revealed KOR‐mediated anti‐inflammatory activity as CD11c and the IFN‐γ production were reduced significantly in mouse and human dendritic cells. Compounds 14b and 14‐c also displayed anti‐inflammatory and immunomodulatory activity in mouse and human T cells. The PET tracer [(18)F]‐2 was prepared by 1,3‐dipolar cycloaddition. In vivo, [(18)F]‐2 did not label KOR due to very fast elimination kinetics. Nucleophilic substitution of a mesylate precursor provided [(18)F]‐14c. Unfortunately, defluorination of [(18)F]‐14c occurred in vivo, which was analyzed in detail by in vitro studies.
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spelling pubmed-75893262020-10-30 Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies Tangherlini, Giovanni Börgel, Frederik Schepmann, Dirk Slocum, Samuel Che, Tao Wagner, Stefan Schwegmann, Katrin Hermann, Sven Mykicki, Nadine Loser, Karin Wünsch, Bernhard ChemMedChem Full Papers κ‐Opioid receptors (KORs) play a predominant role in pain alleviation, itching skin diseases, depression and neurodegenerative disorders such as multiple sclerosis. Therefore, imaging of KOR by a fluorinated PET tracer was envisaged. Two strategies were followed to introduce a F atom into the very potent class of cis,trans‐configured perhydroquinoxalines. Whereas the synthesis of fluoroethyltriazole 2 has already been reported, fluoropyrrolidines 14 (1‐[2‐(3,4‐dichlorophenyl)acetyl]‐8‐[(R)‐3‐fluoropyrrolidin‐1‐yl]‐perhydroquinoxalines) were prepared by S(N)2 substitution of a cyclic sulfuric acid derivative with hydroxypyrrolidine and subsequent transformation of the OH moiety into a F substituent. Fluoropyrrolidines 14 showed similar low‐nanomolar KOR affinity and selectivity to the corresponding pyrrolidines, but the corresponding alcohols were slightly less active. In the cAMP and β‐arrestin assay, 14b (proton at the 4‐position) exhibited similar KOR agonistic activity as U‐50,488. The fluoro derivatives 14b and 14c (CO(2)CH(3) at the 4‐position) revealed KOR‐mediated anti‐inflammatory activity as CD11c and the IFN‐γ production were reduced significantly in mouse and human dendritic cells. Compounds 14b and 14‐c also displayed anti‐inflammatory and immunomodulatory activity in mouse and human T cells. The PET tracer [(18)F]‐2 was prepared by 1,3‐dipolar cycloaddition. In vivo, [(18)F]‐2 did not label KOR due to very fast elimination kinetics. Nucleophilic substitution of a mesylate precursor provided [(18)F]‐14c. Unfortunately, defluorination of [(18)F]‐14c occurred in vivo, which was analyzed in detail by in vitro studies. John Wiley and Sons Inc. 2020-09-01 2020-10-05 /pmc/articles/PMC7589326/ /pubmed/33448685 http://dx.doi.org/10.1002/cmdc.202000502 Text en © 2020 The Authors. Published by Wiley-VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Tangherlini, Giovanni
Börgel, Frederik
Schepmann, Dirk
Slocum, Samuel
Che, Tao
Wagner, Stefan
Schwegmann, Katrin
Hermann, Sven
Mykicki, Nadine
Loser, Karin
Wünsch, Bernhard
Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies
title Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies
title_full Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies
title_fullStr Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies
title_full_unstemmed Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies
title_short Synthesis and Pharmacological Evaluation of Fluorinated Quinoxaline‐Based κ‐Opioid Receptor (KOR) Agonists Designed for PET Studies
title_sort synthesis and pharmacological evaluation of fluorinated quinoxaline‐based κ‐opioid receptor (kor) agonists designed for pet studies
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7589326/
https://www.ncbi.nlm.nih.gov/pubmed/33448685
http://dx.doi.org/10.1002/cmdc.202000502
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