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Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis

Besides inhalation, a few studies have indicated that the uptake of nicotine through air or clothing may be a significant pathway of its exposure among passive smokers. Nicotine is well known to exert various physiological impacts, including stimulating sympathetic nervous system, causing vascular d...

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Autores principales: Lo, Wen-Cheng, Dubey, Navneet Kumar, Tsai, Feng-Chou, Lu, Jui-Hua, Peng, Bou-Yue, Chiang, Pao-Chang, Singh, Abhinay Kumar, Wu, Chia-Yu, Cheng, Hsin-Chung, Deng, Win-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7563024/
https://www.ncbi.nlm.nih.gov/pubmed/32757664
http://dx.doi.org/10.1177/0963689720947348
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author Lo, Wen-Cheng
Dubey, Navneet Kumar
Tsai, Feng-Chou
Lu, Jui-Hua
Peng, Bou-Yue
Chiang, Pao-Chang
Singh, Abhinay Kumar
Wu, Chia-Yu
Cheng, Hsin-Chung
Deng, Win-Ping
author_facet Lo, Wen-Cheng
Dubey, Navneet Kumar
Tsai, Feng-Chou
Lu, Jui-Hua
Peng, Bou-Yue
Chiang, Pao-Chang
Singh, Abhinay Kumar
Wu, Chia-Yu
Cheng, Hsin-Chung
Deng, Win-Ping
author_sort Lo, Wen-Cheng
collection PubMed
description Besides inhalation, a few studies have indicated that the uptake of nicotine through air or clothing may be a significant pathway of its exposure among passive smokers. Nicotine is well known to exert various physiological impacts, including stimulating sympathetic nervous system, causing vascular disturbances, and inducing cell death. Therefore, we aimed to establish whether exposure of nicotine could induce articular cartilage degeneration in a mouse model of osteoarthritis (OA). We specifically assessed dose-dependent effect of nicotine in vitro to mimic its accumulation. Further, during the in vivo studies, mice subcutaneously administered with nicotine was examined for OA-associated pathologic changes. We found that nicotine significantly suppressed chondrocytes and chondrogenic markers (Sox, Col II, and aggrecan). Nicotine-treated mice also showed altered knee joint ultrastructure with reduced Col II and proteoglycans. After corroborating nicotine-induced OA characteristics, we treated this pathologic condition through employing platelet-derived biomaterial (PDB)-based regenerative therapy. The PDB significantly suppressed OA-like pathophysiological characteristics by 4 weeks. The mechanistic insight underlying this therapy demonstrated that PDB significantly restored levels of insulin-like growth factor 1 (IGF-1) signaling pathway proteins, especially pIGF-1 R, pAKT, and IRS-1, regulating extracellular matrix synthesis by chondrocytes. Taken together, the PDB exerts regenerative and reparative activities in nicotine-mediated initiation and progression of OA, through modulating IGF-1/AKT/IRS-1 signaling axis.
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spelling pubmed-75630242020-10-26 Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis Lo, Wen-Cheng Dubey, Navneet Kumar Tsai, Feng-Chou Lu, Jui-Hua Peng, Bou-Yue Chiang, Pao-Chang Singh, Abhinay Kumar Wu, Chia-Yu Cheng, Hsin-Chung Deng, Win-Ping Cell Transplant Cell Medicine Besides inhalation, a few studies have indicated that the uptake of nicotine through air or clothing may be a significant pathway of its exposure among passive smokers. Nicotine is well known to exert various physiological impacts, including stimulating sympathetic nervous system, causing vascular disturbances, and inducing cell death. Therefore, we aimed to establish whether exposure of nicotine could induce articular cartilage degeneration in a mouse model of osteoarthritis (OA). We specifically assessed dose-dependent effect of nicotine in vitro to mimic its accumulation. Further, during the in vivo studies, mice subcutaneously administered with nicotine was examined for OA-associated pathologic changes. We found that nicotine significantly suppressed chondrocytes and chondrogenic markers (Sox, Col II, and aggrecan). Nicotine-treated mice also showed altered knee joint ultrastructure with reduced Col II and proteoglycans. After corroborating nicotine-induced OA characteristics, we treated this pathologic condition through employing platelet-derived biomaterial (PDB)-based regenerative therapy. The PDB significantly suppressed OA-like pathophysiological characteristics by 4 weeks. The mechanistic insight underlying this therapy demonstrated that PDB significantly restored levels of insulin-like growth factor 1 (IGF-1) signaling pathway proteins, especially pIGF-1 R, pAKT, and IRS-1, regulating extracellular matrix synthesis by chondrocytes. Taken together, the PDB exerts regenerative and reparative activities in nicotine-mediated initiation and progression of OA, through modulating IGF-1/AKT/IRS-1 signaling axis. SAGE Publications 2020-08-06 /pmc/articles/PMC7563024/ /pubmed/32757664 http://dx.doi.org/10.1177/0963689720947348 Text en © The Author(s) 2020 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Cell Medicine
Lo, Wen-Cheng
Dubey, Navneet Kumar
Tsai, Feng-Chou
Lu, Jui-Hua
Peng, Bou-Yue
Chiang, Pao-Chang
Singh, Abhinay Kumar
Wu, Chia-Yu
Cheng, Hsin-Chung
Deng, Win-Ping
Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis
title Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis
title_full Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis
title_fullStr Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis
title_full_unstemmed Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis
title_short Amelioration of Nicotine-Induced Osteoarthritis by Platelet-Derived Biomaterials Through Modulating IGF-1/AKT/IRS-1 Signaling Axis
title_sort amelioration of nicotine-induced osteoarthritis by platelet-derived biomaterials through modulating igf-1/akt/irs-1 signaling axis
topic Cell Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7563024/
https://www.ncbi.nlm.nih.gov/pubmed/32757664
http://dx.doi.org/10.1177/0963689720947348
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