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New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants

In the present study, a focused combinatorial chemistry approach was applied to merge structural fragments of well-known TRPV1 antagonists with a potent anticonvulsant lead compound, KA-104, that was previously discovered by our group. Consequently, a series of 22 original compounds has been designe...

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Autores principales: Jakubiec, Marcin, Abram, Michał, Zagaja, Mirosław, Andres-Mach, Marta, Szewczyk, Aleksandra, Latacz, Gniewomir, Szulczyk, Bartłomiej, Socała, Katarzyna, Nieoczym, Dorota, Wlaź, Piotr, Metcalf, Cameron S., Wilcox, Karen, Kamiński, Rafał M., Kamiński, Krzysztof
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9221546/
https://www.ncbi.nlm.nih.gov/pubmed/35740990
http://dx.doi.org/10.3390/cells11121862
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author Jakubiec, Marcin
Abram, Michał
Zagaja, Mirosław
Andres-Mach, Marta
Szewczyk, Aleksandra
Latacz, Gniewomir
Szulczyk, Bartłomiej
Socała, Katarzyna
Nieoczym, Dorota
Wlaź, Piotr
Metcalf, Cameron S.
Wilcox, Karen
Kamiński, Rafał M.
Kamiński, Krzysztof
author_facet Jakubiec, Marcin
Abram, Michał
Zagaja, Mirosław
Andres-Mach, Marta
Szewczyk, Aleksandra
Latacz, Gniewomir
Szulczyk, Bartłomiej
Socała, Katarzyna
Nieoczym, Dorota
Wlaź, Piotr
Metcalf, Cameron S.
Wilcox, Karen
Kamiński, Rafał M.
Kamiński, Krzysztof
author_sort Jakubiec, Marcin
collection PubMed
description In the present study, a focused combinatorial chemistry approach was applied to merge structural fragments of well-known TRPV1 antagonists with a potent anticonvulsant lead compound, KA-104, that was previously discovered by our group. Consequently, a series of 22 original compounds has been designed, synthesized, and characterized in the in vivo and in vitro assays. The obtained compounds showed robust in vivo antiseizure activity in the maximal electroshock (MES) test and in the 6 Hz seizure model (using both 32 and 44 mA current intensities). The most potent compounds 53 and 60 displayed the following pharmacological profile: ED(50) = 89.7 mg/kg (MES), ED(50) = 29.9 mg/kg (6 Hz, 32 mA), ED(50) = 68.0 mg/kg (6 Hz, 44 mA), and ED(50) = 73.6 mg/kg (MES), ED(50) = 24.6 mg/kg (6 Hz, 32 mA), and ED(50) = 56.3 mg/kg (6 Hz, 44 mA), respectively. Additionally, 53 and 60 were effective in the ivPTZ seizure threshold and had no influence on the grip strength and body temperature in mice. The in vitro binding and functional assays indicated a multimodal mechanism of action for 53 and 60. These molecules, beyond TRPV1 antagonism, inhibited calcium currents and fast sodium currents in patch-clamp assays. Further studies proved beneficial in vitro ADME-Tox properties for 53 and 60 (i.e., high metabolic stability, weak influence on CYPs, no neurotoxicity, etc.). Overall, 53 and 60 seem to be interesting candidates for future preclinical development in epilepsy and pain indications due to their interaction with the TRPV1 channel.
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spelling pubmed-92215462022-06-24 New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants Jakubiec, Marcin Abram, Michał Zagaja, Mirosław Andres-Mach, Marta Szewczyk, Aleksandra Latacz, Gniewomir Szulczyk, Bartłomiej Socała, Katarzyna Nieoczym, Dorota Wlaź, Piotr Metcalf, Cameron S. Wilcox, Karen Kamiński, Rafał M. Kamiński, Krzysztof Cells Article In the present study, a focused combinatorial chemistry approach was applied to merge structural fragments of well-known TRPV1 antagonists with a potent anticonvulsant lead compound, KA-104, that was previously discovered by our group. Consequently, a series of 22 original compounds has been designed, synthesized, and characterized in the in vivo and in vitro assays. The obtained compounds showed robust in vivo antiseizure activity in the maximal electroshock (MES) test and in the 6 Hz seizure model (using both 32 and 44 mA current intensities). The most potent compounds 53 and 60 displayed the following pharmacological profile: ED(50) = 89.7 mg/kg (MES), ED(50) = 29.9 mg/kg (6 Hz, 32 mA), ED(50) = 68.0 mg/kg (6 Hz, 44 mA), and ED(50) = 73.6 mg/kg (MES), ED(50) = 24.6 mg/kg (6 Hz, 32 mA), and ED(50) = 56.3 mg/kg (6 Hz, 44 mA), respectively. Additionally, 53 and 60 were effective in the ivPTZ seizure threshold and had no influence on the grip strength and body temperature in mice. The in vitro binding and functional assays indicated a multimodal mechanism of action for 53 and 60. These molecules, beyond TRPV1 antagonism, inhibited calcium currents and fast sodium currents in patch-clamp assays. Further studies proved beneficial in vitro ADME-Tox properties for 53 and 60 (i.e., high metabolic stability, weak influence on CYPs, no neurotoxicity, etc.). Overall, 53 and 60 seem to be interesting candidates for future preclinical development in epilepsy and pain indications due to their interaction with the TRPV1 channel. MDPI 2022-06-07 /pmc/articles/PMC9221546/ /pubmed/35740990 http://dx.doi.org/10.3390/cells11121862 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
Jakubiec, Marcin
Abram, Michał
Zagaja, Mirosław
Andres-Mach, Marta
Szewczyk, Aleksandra
Latacz, Gniewomir
Szulczyk, Bartłomiej
Socała, Katarzyna
Nieoczym, Dorota
Wlaź, Piotr
Metcalf, Cameron S.
Wilcox, Karen
Kamiński, Rafał M.
Kamiński, Krzysztof
New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants
title New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants
title_full New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants
title_fullStr New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants
title_full_unstemmed New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants
title_short New Phenylglycinamide Derivatives with Hybrid Structure as Candidates for New Broad-Spectrum Anticonvulsants
title_sort new phenylglycinamide derivatives with hybrid structure as candidates for new broad-spectrum anticonvulsants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9221546/
https://www.ncbi.nlm.nih.gov/pubmed/35740990
http://dx.doi.org/10.3390/cells11121862
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