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S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway

Osteoarthritis (OA) is a common chronic disease with increasing prevalence in societies with more aging populations, therefore, it is causing more concern. S-Equol, a kind of isoflavones, was reported to be bioavailable and beneficial to humans in many aspects, such as improving menopausal symptoms,...

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Autores principales: Huang, Li-Wen, Huang, Tzu-Ching, Hu, Yu-Chen, Hsieh, Bau-Shan, Cheng, Hsiao-Ling, Chiu, Pu-Rong, Chang, Kee-Lung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268809/
https://www.ncbi.nlm.nih.gov/pubmed/34209006
http://dx.doi.org/10.3390/ijms22137054
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author Huang, Li-Wen
Huang, Tzu-Ching
Hu, Yu-Chen
Hsieh, Bau-Shan
Cheng, Hsiao-Ling
Chiu, Pu-Rong
Chang, Kee-Lung
author_facet Huang, Li-Wen
Huang, Tzu-Ching
Hu, Yu-Chen
Hsieh, Bau-Shan
Cheng, Hsiao-Ling
Chiu, Pu-Rong
Chang, Kee-Lung
author_sort Huang, Li-Wen
collection PubMed
description Osteoarthritis (OA) is a common chronic disease with increasing prevalence in societies with more aging populations, therefore, it is causing more concern. S-Equol, a kind of isoflavones, was reported to be bioavailable and beneficial to humans in many aspects, such as improving menopausal symptoms, osteoporosis and prevention of cardiovascular disease. This study investigated the effects of S-Equol on OA progress in which rat primary chondrocytes were treated with sodium nitroprusside (SNP) to mimic OA progress with or without the co-addition of S-Equol for the evaluation of S-Equol’s efficacy on OA. Results showed treatment of 0.8 mM SNP caused cell death, and increased oxidative stress (NO and H(2)O(2)), apoptosis, and proteoglycan loss. Furthermore, the expressions of MMPs of MMP-2, MMP-3, MMP-9, and MMP-13 and p53 were increased. The addition of 30 μM S-Equol could lessen those caused by SNP. Moreover, S-Equol activates the PI(3)K/Akt pathway, which is an upstream regulation of p53 and NO production and is associated with apoptosis and matrix degradation. As a pretreatment of phosphoinositide (3)-kinases (PI(3)K) inhibitor, all S-Equol protective functions against SNP decrease or disappear. In conclusion, through PI(3)K/Akt activation, S-Equol can protect chondrocytes against SNP-induced matrix degradation and apoptosis, which are commonly found in OA, suggesting S-Equol is a potential for OA prevention.
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spelling pubmed-82688092021-07-10 S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway Huang, Li-Wen Huang, Tzu-Ching Hu, Yu-Chen Hsieh, Bau-Shan Cheng, Hsiao-Ling Chiu, Pu-Rong Chang, Kee-Lung Int J Mol Sci Article Osteoarthritis (OA) is a common chronic disease with increasing prevalence in societies with more aging populations, therefore, it is causing more concern. S-Equol, a kind of isoflavones, was reported to be bioavailable and beneficial to humans in many aspects, such as improving menopausal symptoms, osteoporosis and prevention of cardiovascular disease. This study investigated the effects of S-Equol on OA progress in which rat primary chondrocytes were treated with sodium nitroprusside (SNP) to mimic OA progress with or without the co-addition of S-Equol for the evaluation of S-Equol’s efficacy on OA. Results showed treatment of 0.8 mM SNP caused cell death, and increased oxidative stress (NO and H(2)O(2)), apoptosis, and proteoglycan loss. Furthermore, the expressions of MMPs of MMP-2, MMP-3, MMP-9, and MMP-13 and p53 were increased. The addition of 30 μM S-Equol could lessen those caused by SNP. Moreover, S-Equol activates the PI(3)K/Akt pathway, which is an upstream regulation of p53 and NO production and is associated with apoptosis and matrix degradation. As a pretreatment of phosphoinositide (3)-kinases (PI(3)K) inhibitor, all S-Equol protective functions against SNP decrease or disappear. In conclusion, through PI(3)K/Akt activation, S-Equol can protect chondrocytes against SNP-induced matrix degradation and apoptosis, which are commonly found in OA, suggesting S-Equol is a potential for OA prevention. MDPI 2021-06-30 /pmc/articles/PMC8268809/ /pubmed/34209006 http://dx.doi.org/10.3390/ijms22137054 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
Huang, Li-Wen
Huang, Tzu-Ching
Hu, Yu-Chen
Hsieh, Bau-Shan
Cheng, Hsiao-Ling
Chiu, Pu-Rong
Chang, Kee-Lung
S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway
title S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway
title_full S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway
title_fullStr S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway
title_full_unstemmed S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway
title_short S-Equol Protects Chondrocytes against Sodium Nitroprusside-Caused Matrix Loss and Apoptosis through Activating PI(3)K/Akt Pathway
title_sort s-equol protects chondrocytes against sodium nitroprusside-caused matrix loss and apoptosis through activating pi(3)k/akt pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268809/
https://www.ncbi.nlm.nih.gov/pubmed/34209006
http://dx.doi.org/10.3390/ijms22137054
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