ID | 63388 |
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Inagaki, Junko
Department of Cell Chemistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences
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Nakano, Airi
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Hatipoglu, Omer Faruk
Department of Pharmacology, Faculty of Medicine, Kindai University
Ooka, Yuka
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Tani, Yurina
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Miki, Akane
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Ikemura, Kentaro
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Opoku, Gabriel
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Ando, Ryosuke
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Kodama, Shintaro
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Ohtsuki, Takashi
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
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Yamaji, Hirosuke
Heart Rhythm Center, Okayama Heart Clinic
Yamamoto, Shusei
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Katsuyama, Eri
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Watanabe, Shogo
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
Hirohata, Satoshi
Department of Medical Technology, Graduate School of Health Sciences, Okayama University
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Abstract | Osteoarthritis is a progressive disease characterized by cartilage destruction in the joints. Matrix metalloproteinases (MMPs) and a disintegrin and metalloproteinase with thrombospondin motifs (ADAMTSs) play key roles in osteoarthritis progression. In this study, we screened a chemical compound library to identify new drug candidates that target MMP and ADAMTS using a cytokine-stimulated OUMS-27 chondrosarcoma cells. By screening PCR-based mRNA expression, we selected 2-(8-methoxy-2-methyl-4-oxoquinolin-1(4H)-yl)-N-(3-methoxyphenyl) acetamide as a potential candidate. We found that 2-(8-methoxy-2-methyl-4-oxoquinolin-1(4H)-yl)-N-(3-methoxyphenyl) acetamide attenuated IL-1 beta-induced MMP13 mRNA expression in a dose-dependent manner, without causing serious cytotoxicity. Signaling pathway analysis revealed that 2-(8-methoxy-2-methyl-4-oxoquinolin-1(4H)-yl)-N-(3-methoxyphenyl) acetamide attenuated ERK- and p-38-phosphorylation as well as JNK phosphorylation. We then examined the additive effect of 2-(8-methoxy-2-methyl-4-oxoquinolin-1(4H)-yl)-N-(3-methoxyphenyl) acetamide in combination with low-dose betamethasone on IL-1 beta-stimulated cells. Combined treatment with 2-(8-methoxy-2-methyl-4-oxoquinolin-1(4H)-yl)-N-(3-methoxyphenyl) acetamide and betamethasone significantly attenuated MMP13 and ADAMTS9 mRNA expression. In conclusion, we identified a potential compound of interest that may help attenuate matrix-degrading enzymes in the early osteoarthritis-affected joints.
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Keywords | osteoarthritis
matrix metalloproteinase
MMP13
ADAMTS9
expression screening
chondrocytes
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Published Date | 2022-02-28
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Publication Title |
International Journal Of Molecular Sciences
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Volume | volume23
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Issue | issue5
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Publisher | MDPI
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Start Page | 2681
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ISSN | 1422-0067
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Content Type |
Journal Article
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language |
English
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OAI-PMH Set |
岡山大学
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Copyright Holders | © 2022 by the authors.
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File Version | publisher
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Related Url | isVersionOf https://doi.org/10.3390/ijms23052681
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License | https://creativecommons.org/licenses/by/4.0/
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