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A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke

We performed an in silico, in vitro, and in vivo assessment of a potassium 2-[2-(2-oxo-4-phenylpyrrolidin-1-yl) acetamido]ethanesulfonate (compound 1) as a potential prodrug for cognitive function improvement in ischemic brain injury. Using in silico methods, we predicted the pharmacological efficac...

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Autores principales: Borozdenko, Denis A., Ezdoglian, Aiarpi A., Shmigol, Tatiana A., Gonchar, Darya I., Lyakhmun, Dmitri N., Tarasenko, Dmitri V., Golubev, Yaroslav V., Cherkashova, Elvira A., Namestnikova, Daria D., Gubskiy, Ilya L., Lagunin, Alexey A., Gubsky, Leonid V., Chekhonin, Vladimir P., Borisevich, Sophia S., Gureev, Maxim A., Shagina, Anastasia D., Kiseleva, Nina M., Negrebetsky, Vadim V., Baukov, Yuri I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8541353/
https://www.ncbi.nlm.nih.gov/pubmed/34684709
http://dx.doi.org/10.3390/molecules26206124
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author Borozdenko, Denis A.
Ezdoglian, Aiarpi A.
Shmigol, Tatiana A.
Gonchar, Darya I.
Lyakhmun, Dmitri N.
Tarasenko, Dmitri V.
Golubev, Yaroslav V.
Cherkashova, Elvira A.
Namestnikova, Daria D.
Gubskiy, Ilya L.
Lagunin, Alexey A.
Gubsky, Leonid V.
Chekhonin, Vladimir P.
Borisevich, Sophia S.
Gureev, Maxim A.
Shagina, Anastasia D.
Kiseleva, Nina M.
Negrebetsky, Vadim V.
Baukov, Yuri I.
author_facet Borozdenko, Denis A.
Ezdoglian, Aiarpi A.
Shmigol, Tatiana A.
Gonchar, Darya I.
Lyakhmun, Dmitri N.
Tarasenko, Dmitri V.
Golubev, Yaroslav V.
Cherkashova, Elvira A.
Namestnikova, Daria D.
Gubskiy, Ilya L.
Lagunin, Alexey A.
Gubsky, Leonid V.
Chekhonin, Vladimir P.
Borisevich, Sophia S.
Gureev, Maxim A.
Shagina, Anastasia D.
Kiseleva, Nina M.
Negrebetsky, Vadim V.
Baukov, Yuri I.
author_sort Borozdenko, Denis A.
collection PubMed
description We performed an in silico, in vitro, and in vivo assessment of a potassium 2-[2-(2-oxo-4-phenylpyrrolidin-1-yl) acetamido]ethanesulfonate (compound 1) as a potential prodrug for cognitive function improvement in ischemic brain injury. Using in silico methods, we predicted the pharmacological efficacy and possible safety in rat models. In addition, in silico data showed neuroprotective features of compound 1, which were further supported by in vitro experiments in a glutamate excitotoxicity-induced model in newborn rat cortical neuron cultures. Next, we checked whether compound 1 is capable of crossing the blood–brain barrier in intact and ischemic animals. Compound 1 improved animal behavior both in intact and ischemic rats and, even though the concentration in intact brains was low, we still observed a significant anxiety reduction and activity escalation. We used molecular docking and molecular dynamics to support our hypothesis that compound 1 could affect the AMPA receptor function. In a rat model of acute focal cerebral ischemia, we studied the effects of compound 1 on the behavior and neurological deficit. An in vivo experiment demonstrated that compound 1 significantly reduced the neurological deficit and improved neurological symptom regression, exploratory behavior, and anxiety. Thus, here, for the first time, we show that compound 1 can be considered as an agent for restoring cognitive functions.
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spelling pubmed-85413532021-10-24 A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke Borozdenko, Denis A. Ezdoglian, Aiarpi A. Shmigol, Tatiana A. Gonchar, Darya I. Lyakhmun, Dmitri N. Tarasenko, Dmitri V. Golubev, Yaroslav V. Cherkashova, Elvira A. Namestnikova, Daria D. Gubskiy, Ilya L. Lagunin, Alexey A. Gubsky, Leonid V. Chekhonin, Vladimir P. Borisevich, Sophia S. Gureev, Maxim A. Shagina, Anastasia D. Kiseleva, Nina M. Negrebetsky, Vadim V. Baukov, Yuri I. Molecules Article We performed an in silico, in vitro, and in vivo assessment of a potassium 2-[2-(2-oxo-4-phenylpyrrolidin-1-yl) acetamido]ethanesulfonate (compound 1) as a potential prodrug for cognitive function improvement in ischemic brain injury. Using in silico methods, we predicted the pharmacological efficacy and possible safety in rat models. In addition, in silico data showed neuroprotective features of compound 1, which were further supported by in vitro experiments in a glutamate excitotoxicity-induced model in newborn rat cortical neuron cultures. Next, we checked whether compound 1 is capable of crossing the blood–brain barrier in intact and ischemic animals. Compound 1 improved animal behavior both in intact and ischemic rats and, even though the concentration in intact brains was low, we still observed a significant anxiety reduction and activity escalation. We used molecular docking and molecular dynamics to support our hypothesis that compound 1 could affect the AMPA receptor function. In a rat model of acute focal cerebral ischemia, we studied the effects of compound 1 on the behavior and neurological deficit. An in vivo experiment demonstrated that compound 1 significantly reduced the neurological deficit and improved neurological symptom regression, exploratory behavior, and anxiety. Thus, here, for the first time, we show that compound 1 can be considered as an agent for restoring cognitive functions. MDPI 2021-10-11 /pmc/articles/PMC8541353/ /pubmed/34684709 http://dx.doi.org/10.3390/molecules26206124 Text en © 2021 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
Borozdenko, Denis A.
Ezdoglian, Aiarpi A.
Shmigol, Tatiana A.
Gonchar, Darya I.
Lyakhmun, Dmitri N.
Tarasenko, Dmitri V.
Golubev, Yaroslav V.
Cherkashova, Elvira A.
Namestnikova, Daria D.
Gubskiy, Ilya L.
Lagunin, Alexey A.
Gubsky, Leonid V.
Chekhonin, Vladimir P.
Borisevich, Sophia S.
Gureev, Maxim A.
Shagina, Anastasia D.
Kiseleva, Nina M.
Negrebetsky, Vadim V.
Baukov, Yuri I.
A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke
title A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke
title_full A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke
title_fullStr A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke
title_full_unstemmed A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke
title_short A Novel Phenylpyrrolidine Derivative: Synthesis and Effect on Cognitive Functions in Rats with Experimental Ishemic Stroke
title_sort novel phenylpyrrolidine derivative: synthesis and effect on cognitive functions in rats with experimental ishemic stroke
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8541353/
https://www.ncbi.nlm.nih.gov/pubmed/34684709
http://dx.doi.org/10.3390/molecules26206124
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