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Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress

Pterocarpans and related polyphenolics are known as promising neuroprotective agents. We used models of rotenone-, paraquat-, and 6-hydroxydopamine-induced neurotoxicity to study the neuroprotective activity of polyphenolic compounds from Lespedeza bicolor and their effects on mitochondrial membrane...

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Autores principales: Tarbeeva, Darya V., Pislyagin, Evgeny A., Menchinskaya, Ekaterina S., Berdyshev, Dmitrii V., Kalinovskiy, Anatoliy I., Grigorchuk, Valeria P., Mishchenko, Natalia P., Aminin, Dmitry L., Fedoreyev, Sergey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9025851/
https://www.ncbi.nlm.nih.gov/pubmed/35453394
http://dx.doi.org/10.3390/antiox11040709
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author Tarbeeva, Darya V.
Pislyagin, Evgeny A.
Menchinskaya, Ekaterina S.
Berdyshev, Dmitrii V.
Kalinovskiy, Anatoliy I.
Grigorchuk, Valeria P.
Mishchenko, Natalia P.
Aminin, Dmitry L.
Fedoreyev, Sergey A.
author_facet Tarbeeva, Darya V.
Pislyagin, Evgeny A.
Menchinskaya, Ekaterina S.
Berdyshev, Dmitrii V.
Kalinovskiy, Anatoliy I.
Grigorchuk, Valeria P.
Mishchenko, Natalia P.
Aminin, Dmitry L.
Fedoreyev, Sergey A.
author_sort Tarbeeva, Darya V.
collection PubMed
description Pterocarpans and related polyphenolics are known as promising neuroprotective agents. We used models of rotenone-, paraquat-, and 6-hydroxydopamine-induced neurotoxicity to study the neuroprotective activity of polyphenolic compounds from Lespedeza bicolor and their effects on mitochondrial membrane potential. We isolated 11 polyphenolic compounds: a novel coumestan lespebicoumestan A (10) and a novel stilbenoid 5’-isoprenylbicoloketon (11) as well as three previously known pterocarpans, two pterocarpens, one coumestan, one stilbenoid, and a dimeric flavonoid. Pterocarpans 3 and 6, stilbenoid 5, and dimeric flavonoid 8 significantly increased the percentage of living cells after treatment with paraquat (PQ), but only pterocarpan 6 slightly decreased the ROS level in PQ-treated cells. Pterocarpan 3 and stilbenoid 5 were shown to effectively increase mitochondrial membrane potential in PQ-treated cells. We showed that pterocarpans 2 and 3, containing a 3’-methyl-3’-isohexenylpyran ring; pterocarpens 4 and 9, with a double bond between C-6a and C-11a; and coumestan 10 significantly increased the percentage of living cells by decreasing ROS levels in 6-OHDA-treated cells, which is in accordance with their rather high activity in DPPH(•) and FRAP tests. Compounds 9 and 10 effectively increased the percentage of living cells after treatment with rotenone but did not significantly decrease ROS levels.
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spelling pubmed-90258512022-04-23 Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress Tarbeeva, Darya V. Pislyagin, Evgeny A. Menchinskaya, Ekaterina S. Berdyshev, Dmitrii V. Kalinovskiy, Anatoliy I. Grigorchuk, Valeria P. Mishchenko, Natalia P. Aminin, Dmitry L. Fedoreyev, Sergey A. Antioxidants (Basel) Article Pterocarpans and related polyphenolics are known as promising neuroprotective agents. We used models of rotenone-, paraquat-, and 6-hydroxydopamine-induced neurotoxicity to study the neuroprotective activity of polyphenolic compounds from Lespedeza bicolor and their effects on mitochondrial membrane potential. We isolated 11 polyphenolic compounds: a novel coumestan lespebicoumestan A (10) and a novel stilbenoid 5’-isoprenylbicoloketon (11) as well as three previously known pterocarpans, two pterocarpens, one coumestan, one stilbenoid, and a dimeric flavonoid. Pterocarpans 3 and 6, stilbenoid 5, and dimeric flavonoid 8 significantly increased the percentage of living cells after treatment with paraquat (PQ), but only pterocarpan 6 slightly decreased the ROS level in PQ-treated cells. Pterocarpan 3 and stilbenoid 5 were shown to effectively increase mitochondrial membrane potential in PQ-treated cells. We showed that pterocarpans 2 and 3, containing a 3’-methyl-3’-isohexenylpyran ring; pterocarpens 4 and 9, with a double bond between C-6a and C-11a; and coumestan 10 significantly increased the percentage of living cells by decreasing ROS levels in 6-OHDA-treated cells, which is in accordance with their rather high activity in DPPH(•) and FRAP tests. Compounds 9 and 10 effectively increased the percentage of living cells after treatment with rotenone but did not significantly decrease ROS levels. MDPI 2022-04-03 /pmc/articles/PMC9025851/ /pubmed/35453394 http://dx.doi.org/10.3390/antiox11040709 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
Tarbeeva, Darya V.
Pislyagin, Evgeny A.
Menchinskaya, Ekaterina S.
Berdyshev, Dmitrii V.
Kalinovskiy, Anatoliy I.
Grigorchuk, Valeria P.
Mishchenko, Natalia P.
Aminin, Dmitry L.
Fedoreyev, Sergey A.
Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress
title Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress
title_full Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress
title_fullStr Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress
title_full_unstemmed Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress
title_short Polyphenolic Compounds from Lespedeza bicolor Protect Neuronal Cells from Oxidative Stress
title_sort polyphenolic compounds from lespedeza bicolor protect neuronal cells from oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9025851/
https://www.ncbi.nlm.nih.gov/pubmed/35453394
http://dx.doi.org/10.3390/antiox11040709
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