Cargando…
Chimeric Agents Derived from the Functionalized Amino Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and Antiseizure and Antinociception Activities and Comparison with Lacosamide and Safinamide
[Image: see text] The functionalized amino acid, lacosamide ((R)-2), and the α-aminoamide, safinamide ((S)-3), are neurological agents that have been extensively investigated and have displayed potent anticonvulsant activities in seizure models. Both compounds have been reported to modulate voltage-...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical
Society
2014
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4372064/ https://www.ncbi.nlm.nih.gov/pubmed/25418676 http://dx.doi.org/10.1021/cn5002182 |
_version_ | 1782363122780078080 |
---|---|
author | Park, Ki Duk Yang, Xiao-Fang Dustrude, Erik T. Wang, Yuying Ripsch, Matthew S. White, Fletcher A. Khanna, Rajesh Kohn, Harold |
author_facet | Park, Ki Duk Yang, Xiao-Fang Dustrude, Erik T. Wang, Yuying Ripsch, Matthew S. White, Fletcher A. Khanna, Rajesh Kohn, Harold |
author_sort | Park, Ki Duk |
collection | PubMed |
description | [Image: see text] The functionalized amino acid, lacosamide ((R)-2), and the α-aminoamide, safinamide ((S)-3), are neurological agents that have been extensively investigated and have displayed potent anticonvulsant activities in seizure models. Both compounds have been reported to modulate voltage-gated sodium channel activity. We have prepared a series of chimeric compounds, (R)-7–(R)-10, by merging key structural units in these two clinical agents, and then compared their activities with (R)-2 and (S)-3. Compounds were assessed for their ability to alter sodium channel kinetics for inactivation, frequency (use)-dependence, and steady-state activation and fast inactivation. We report that chimeric compounds (R)-7–(R)-10 in catecholamine A-differentiated (CAD) cells and embryonic rat cortical neurons robustly enhanced sodium channel inactivation at concentrations far lower than those required for (R)-2 and (S)-3, and that (R)-9 and (R)-10, unlike (R)-2 and (S)-3, produce sodium channel frequency (use)-dependence at low micromolar concentrations. We further show that (R)-7–(R)-10 displayed excellent anticonvulsant activities and pain-attenuating properties in the animal formalin model. Of these compounds, only (R)-7 reversed mechanical hypersensitivity in the tibial-nerve injury model for neuropathic pain in rats. |
format | Online Article Text |
id | pubmed-4372064 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American Chemical
Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-43720642015-11-22 Chimeric Agents Derived from the Functionalized Amino Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and Antiseizure and Antinociception Activities and Comparison with Lacosamide and Safinamide Park, Ki Duk Yang, Xiao-Fang Dustrude, Erik T. Wang, Yuying Ripsch, Matthew S. White, Fletcher A. Khanna, Rajesh Kohn, Harold ACS Chem Neurosci [Image: see text] The functionalized amino acid, lacosamide ((R)-2), and the α-aminoamide, safinamide ((S)-3), are neurological agents that have been extensively investigated and have displayed potent anticonvulsant activities in seizure models. Both compounds have been reported to modulate voltage-gated sodium channel activity. We have prepared a series of chimeric compounds, (R)-7–(R)-10, by merging key structural units in these two clinical agents, and then compared their activities with (R)-2 and (S)-3. Compounds were assessed for their ability to alter sodium channel kinetics for inactivation, frequency (use)-dependence, and steady-state activation and fast inactivation. We report that chimeric compounds (R)-7–(R)-10 in catecholamine A-differentiated (CAD) cells and embryonic rat cortical neurons robustly enhanced sodium channel inactivation at concentrations far lower than those required for (R)-2 and (S)-3, and that (R)-9 and (R)-10, unlike (R)-2 and (S)-3, produce sodium channel frequency (use)-dependence at low micromolar concentrations. We further show that (R)-7–(R)-10 displayed excellent anticonvulsant activities and pain-attenuating properties in the animal formalin model. Of these compounds, only (R)-7 reversed mechanical hypersensitivity in the tibial-nerve injury model for neuropathic pain in rats. American Chemical Society 2014-11-22 /pmc/articles/PMC4372064/ /pubmed/25418676 http://dx.doi.org/10.1021/cn5002182 Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | Park, Ki Duk Yang, Xiao-Fang Dustrude, Erik T. Wang, Yuying Ripsch, Matthew S. White, Fletcher A. Khanna, Rajesh Kohn, Harold Chimeric Agents Derived from the Functionalized Amino Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and Antiseizure and Antinociception Activities and Comparison with Lacosamide and Safinamide |
title | Chimeric Agents Derived from the Functionalized Amino
Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation
of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and
Antiseizure and Antinociception Activities and Comparison with Lacosamide
and Safinamide |
title_full | Chimeric Agents Derived from the Functionalized Amino
Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation
of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and
Antiseizure and Antinociception Activities and Comparison with Lacosamide
and Safinamide |
title_fullStr | Chimeric Agents Derived from the Functionalized Amino
Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation
of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and
Antiseizure and Antinociception Activities and Comparison with Lacosamide
and Safinamide |
title_full_unstemmed | Chimeric Agents Derived from the Functionalized Amino
Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation
of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and
Antiseizure and Antinociception Activities and Comparison with Lacosamide
and Safinamide |
title_short | Chimeric Agents Derived from the Functionalized Amino
Acid, Lacosamide, and the α-Aminoamide, Safinamide: Evaluation
of Their Inhibitory Actions on Voltage-Gated Sodium Channels, and
Antiseizure and Antinociception Activities and Comparison with Lacosamide
and Safinamide |
title_sort | chimeric agents derived from the functionalized amino
acid, lacosamide, and the α-aminoamide, safinamide: evaluation
of their inhibitory actions on voltage-gated sodium channels, and
antiseizure and antinociception activities and comparison with lacosamide
and safinamide |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4372064/ https://www.ncbi.nlm.nih.gov/pubmed/25418676 http://dx.doi.org/10.1021/cn5002182 |
work_keys_str_mv | AT parkkiduk chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT yangxiaofang chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT dustrudeerikt chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT wangyuying chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT ripschmatthews chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT whitefletchera chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT khannarajesh chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide AT kohnharold chimericagentsderivedfromthefunctionalizedaminoacidlacosamideandtheaaminoamidesafinamideevaluationoftheirinhibitoryactionsonvoltagegatedsodiumchannelsandantiseizureandantinociceptionactivitiesandcomparisonwithlacosamideandsafinamide |