Skip to main content
Top
Published in: Inflammation 6/2019

01-12-2019 | Osteoarthrosis | Original Article

Isorhapontigenin Suppresses Interleukin-1β-Induced Inflammation and Cartilage Matrix Damage in Rat Chondrocytes

Authors: Yongzhuang Ma, Chang Tu, Wei Liu, Yifan Xiao, Hua Wu

Published in: Inflammation | Issue 6/2019

Login to get access

Abstract

Osteoarthritis (OA) is a common cause of joint pain and physical disability in the elderly. It is highly associated with local inflammatory reactions and cartilage degradation. Isorhapontigenin (ISO), a natural compound existing in various plants, has shown prominent anti-inflammatory and anti-oxidative properties in several inflammatory diseases. However, the effects of ISO on OA remain to be elucidated. Here, we investigated the effects of ISO on interleukin-1β (IL-1β)-treated rat chondrocytes and cartilage explants. Our results revealed that ISO could suppress the IL-1β-induced elevated levels of nitric oxide (NO), inducible nitric oxide synthase (iNOS), prostaglandin E2 (PGE2), and cyclooxygenase-2 (COX2). Besides, ISO could also inhibit the IL-1β-induced up-regulation of cartilage matrix catabolic enzymes such as matrix metalloproteinases (MMPs) and aggrecanase-2 (ADAMTS5). Moreover, the IL-1β-induced downregulation of collagen II and aggrecan could be reversed by ISO. Furthermore, ISO prevented rat cartilage explant damage induced by IL-1β. Mechanistically, ISO worked partly by suppressing mitogen-activated protein kinase (MAPK)-associated ERK and p38 pathways. Taken together, our study indicated the anti-inflammatory potential of ISO on IL-1β-treated rat chondrocytes, providing a new idea for OA treatment.
Literature
1.
go back to reference Mathiessen, A., and P.G. Conaghan. 2017. Synovitis in osteoarthritis: current understanding with therapeutic implications. Arthritis Research & Therapy 19 (1): 18.CrossRef Mathiessen, A., and P.G. Conaghan. 2017. Synovitis in osteoarthritis: current understanding with therapeutic implications. Arthritis Research & Therapy 19 (1): 18.CrossRef
2.
go back to reference Aicher, W.K., and B. Rolauffs. 2014. The spatial organisation of joint surface chondrocytes: review of its potential roles in tissue functioning, disease and early, preclinical diagnosis of osteoarthritis. Annals of the Rheumatic Diseases 73 (4): 645–653.CrossRef Aicher, W.K., and B. Rolauffs. 2014. The spatial organisation of joint surface chondrocytes: review of its potential roles in tissue functioning, disease and early, preclinical diagnosis of osteoarthritis. Annals of the Rheumatic Diseases 73 (4): 645–653.CrossRef
3.
go back to reference Troeberg, L., and H. Nagase. 2012. Proteases involved in cartilage matrix degradation in osteoarthritis. Biochimica et Biophysica Acta 1824 (1): 133–145.CrossRef Troeberg, L., and H. Nagase. 2012. Proteases involved in cartilage matrix degradation in osteoarthritis. Biochimica et Biophysica Acta 1824 (1): 133–145.CrossRef
4.
go back to reference Glyn-Jones, S., A.J.R. Palmer, R. Agricola, A.J. Price, T.L. Vincent, H. Weinans, and A.J. Carr. 2015. Osteoarthritis. Lancet 386 (9991): 376–387.CrossRef Glyn-Jones, S., A.J.R. Palmer, R. Agricola, A.J. Price, T.L. Vincent, H. Weinans, and A.J. Carr. 2015. Osteoarthritis. Lancet 386 (9991): 376–387.CrossRef
5.
go back to reference Bonnet, C.S., and D.A. Walsh. 2005. Osteoarthritis, angiogenesis and inflammation. Rheumatology (Oxford) 44 (1): 7–16.CrossRef Bonnet, C.S., and D.A. Walsh. 2005. Osteoarthritis, angiogenesis and inflammation. Rheumatology (Oxford) 44 (1): 7–16.CrossRef
6.
go back to reference Dodge, G.R., and A.R. Poole. 1989. Immunohistochemical detection and immunochemical analysis of type II collagen degradation in human normal, rheumatoid, and osteoarthritic articular cartilages and in explants of bovine articular cartilage cultured with interleukin 1. The Journal of Clinical Investigation 83 (2): 647–661.CrossRef Dodge, G.R., and A.R. Poole. 1989. Immunohistochemical detection and immunochemical analysis of type II collagen degradation in human normal, rheumatoid, and osteoarthritic articular cartilages and in explants of bovine articular cartilage cultured with interleukin 1. The Journal of Clinical Investigation 83 (2): 647–661.CrossRef
7.
go back to reference Le Maitre, C.L., et al. 2007. Matrix synthesis and degradation in human intervertebral disc degeneration. Biochemical Society Transactions 35 (Pt 4): 652–655.PubMed Le Maitre, C.L., et al. 2007. Matrix synthesis and degradation in human intervertebral disc degeneration. Biochemical Society Transactions 35 (Pt 4): 652–655.PubMed
8.
go back to reference Goldring, S.R., and M.B. Goldring. 2004. The role of cytokines in cartilage matrix degeneration in osteoarthritis. Clinical Orthopaedics and Related Research (427 Suppl): S27–S36.CrossRef Goldring, S.R., and M.B. Goldring. 2004. The role of cytokines in cartilage matrix degeneration in osteoarthritis. Clinical Orthopaedics and Related Research (427 Suppl): S27–S36.CrossRef
9.
go back to reference Chabane, N., N. Zayed, H. Afif, L. Mfuna-Endam, M. Benderdour, C. Boileau, J. Martel-Pelletier, J.P. Pelletier, N. Duval, and H. Fahmi. 2008. Histone deacetylase inhibitors suppress interleukin-1beta-induced nitric oxide and prostaglandin E2 production in human chondrocytes. Osteoarthritis and Cartilage 16 (10): 1267–1274.CrossRef Chabane, N., N. Zayed, H. Afif, L. Mfuna-Endam, M. Benderdour, C. Boileau, J. Martel-Pelletier, J.P. Pelletier, N. Duval, and H. Fahmi. 2008. Histone deacetylase inhibitors suppress interleukin-1beta-induced nitric oxide and prostaglandin E2 production in human chondrocytes. Osteoarthritis and Cartilage 16 (10): 1267–1274.CrossRef
10.
go back to reference Wang, Q.L., M. Lin, and G.T. Liu. 2001. Antioxidative activity of natural isorhapontigenin. Japanese Journal of Pharmacology 87 (1): 61–66.CrossRef Wang, Q.L., M. Lin, and G.T. Liu. 2001. Antioxidative activity of natural isorhapontigenin. Japanese Journal of Pharmacology 87 (1): 61–66.CrossRef
11.
go back to reference Yeo, S.C.M., P.S. Fenwick, P.J. Barnes, H.S. Lin, and L.E. Donnelly. 2017. Isorhapontigenin, a bioavailable dietary polyphenol, suppresses airway epithelial cell inflammation through a corticosteroid-independent mechanism. British Journal of Pharmacology 174 (13): 2043–2059.CrossRef Yeo, S.C.M., P.S. Fenwick, P.J. Barnes, H.S. Lin, and L.E. Donnelly. 2017. Isorhapontigenin, a bioavailable dietary polyphenol, suppresses airway epithelial cell inflammation through a corticosteroid-independent mechanism. British Journal of Pharmacology 174 (13): 2043–2059.CrossRef
12.
go back to reference Kawakami, S., Y. Kinoshita, H. Maruki-Uchida, K. Yanae, M. Sai, and T. Ito. 2014. Piceatannol and its metabolite, isorhapontigenin, induce SIRT1 expression in THP-1 human monocytic cell line. Nutrients 6 (11): 4794–4804.CrossRef Kawakami, S., Y. Kinoshita, H. Maruki-Uchida, K. Yanae, M. Sai, and T. Ito. 2014. Piceatannol and its metabolite, isorhapontigenin, induce SIRT1 expression in THP-1 human monocytic cell line. Nutrients 6 (11): 4794–4804.CrossRef
13.
go back to reference Liu, Y., and G. Liu. 2004. Isorhapontigenin and resveratrol suppress oxLDL-induced proliferation and activation of ERK1/2 mitogen-activated protein kinases of bovine aortic smooth muscle cells. Biochemical Pharmacology 67 (4): 777–785.CrossRef Liu, Y., and G. Liu. 2004. Isorhapontigenin and resveratrol suppress oxLDL-induced proliferation and activation of ERK1/2 mitogen-activated protein kinases of bovine aortic smooth muscle cells. Biochemical Pharmacology 67 (4): 777–785.CrossRef
14.
go back to reference Oh, J.S., I.A. Cho, K.R. Kang, J.S. You, S.J. Yu, G.J. Lee, Y.S. Seo, C.S. Kim, D.K. Kim, S.G. Kim, Y.W. Seo, H.J. Im, and J.S. Kim. 2016. Biochanin-A antagonizes the interleukin-1beta-induced catabolic inflammation through the modulation of NFkappaB cellular signaling in primary rat chondrocytes. Biochemical and Biophysical Research Communications 477 (4): 723–730.CrossRef Oh, J.S., I.A. Cho, K.R. Kang, J.S. You, S.J. Yu, G.J. Lee, Y.S. Seo, C.S. Kim, D.K. Kim, S.G. Kim, Y.W. Seo, H.J. Im, and J.S. Kim. 2016. Biochanin-A antagonizes the interleukin-1beta-induced catabolic inflammation through the modulation of NFkappaB cellular signaling in primary rat chondrocytes. Biochemical and Biophysical Research Communications 477 (4): 723–730.CrossRef
15.
go back to reference Chen, P., S. Zhu, Y. Wang, Q. Mu, Y. Wu, Q. Xia, X. Zhang, H. Sun, J. Tao, H. Hu, P. Lu, and H. Ouyang. 2014. The amelioration of cartilage degeneration by ADAMTS-5 inhibitor delivered in a hyaluronic acid hydrogel. Biomaterials 35 (9): 2827–2836.CrossRef Chen, P., S. Zhu, Y. Wang, Q. Mu, Y. Wu, Q. Xia, X. Zhang, H. Sun, J. Tao, H. Hu, P. Lu, and H. Ouyang. 2014. The amelioration of cartilage degeneration by ADAMTS-5 inhibitor delivered in a hyaluronic acid hydrogel. Biomaterials 35 (9): 2827–2836.CrossRef
16.
go back to reference Wojdasiewicz, P., L.A. Poniatowski, and D. Szukiewicz. 2014. The role of inflammatory and anti-inflammatory cytokines in the pathogenesis of osteoarthritis. Mediators of Inflammation 2014: 561459.CrossRef Wojdasiewicz, P., L.A. Poniatowski, and D. Szukiewicz. 2014. The role of inflammatory and anti-inflammatory cytokines in the pathogenesis of osteoarthritis. Mediators of Inflammation 2014: 561459.CrossRef
17.
go back to reference Su, S.C., K. Tanimoto, Y. Tanne, R. Kunimatsu, N. Hirose, T. Mitsuyoshi, Y. Okamoto, and K. Tanne. 2014. Celecoxib exerts protective effects on extracellular matrix metabolism of mandibular condylar chondrocytes under excessive mechanical stress. Osteoarthritis and Cartilage 22 (6): 845–851.CrossRef Su, S.C., K. Tanimoto, Y. Tanne, R. Kunimatsu, N. Hirose, T. Mitsuyoshi, Y. Okamoto, and K. Tanne. 2014. Celecoxib exerts protective effects on extracellular matrix metabolism of mandibular condylar chondrocytes under excessive mechanical stress. Osteoarthritis and Cartilage 22 (6): 845–851.CrossRef
18.
go back to reference Dragos, D., M. Gilca, L. Gaman, A. Vlad, L. Iosif, I. Stoian, and O. Lupescu. 2017. Phytomedicine in joint disorders. Nutrients 9 (1): 70.CrossRef Dragos, D., M. Gilca, L. Gaman, A. Vlad, L. Iosif, I. Stoian, and O. Lupescu. 2017. Phytomedicine in joint disorders. Nutrients 9 (1): 70.CrossRef
19.
go back to reference Abbas, A.M. 2016. Cardioprotective effect of resveratrol analogue isorhapontigenin versus omega-3 fatty acids in isoproterenol-induced myocardial infarction in rats. Journal of Physiology and Biochemistry 72 (3): 469–484.CrossRef Abbas, A.M. 2016. Cardioprotective effect of resveratrol analogue isorhapontigenin versus omega-3 fatty acids in isoproterenol-induced myocardial infarction in rats. Journal of Physiology and Biochemistry 72 (3): 469–484.CrossRef
20.
go back to reference Dai, Y., S.C.M. Yeo, P.J. Barnes, L.E. Donnelly, L.C. Loo, and H.S. Lin. 2018. Pre-clinical pharmacokinetic and metabolomic analyses of isorhapontigenin, a dietary resveratrol derivative. Frontiers in Pharmacology 9: 753.CrossRef Dai, Y., S.C.M. Yeo, P.J. Barnes, L.E. Donnelly, L.C. Loo, and H.S. Lin. 2018. Pre-clinical pharmacokinetic and metabolomic analyses of isorhapontigenin, a dietary resveratrol derivative. Frontiers in Pharmacology 9: 753.CrossRef
21.
go back to reference Roos, E.M., and N.K. Arden. 2016. Strategies for the prevention of knee osteoarthritis. Nature Reviews Rheumatology 12 (2): 92–101.CrossRef Roos, E.M., and N.K. Arden. 2016. Strategies for the prevention of knee osteoarthritis. Nature Reviews Rheumatology 12 (2): 92–101.CrossRef
22.
go back to reference Attur, M., I. Belitskaya-Lévy, C. Oh, S. Krasnokutsky, J. Greenberg, J. Samuels, S. Smiles, S. Lee, J. Patel, H. al-Mussawir, G. McDaniel, V.B. Kraus, and S.B. Abramson. 2011. Increased interleukin-1beta gene expression in peripheral blood leukocytes is associated with increased pain and predicts risk for progression of symptomatic knee osteoarthritis. Arthritis and Rheumatism 63 (7): 1908–1917.CrossRef Attur, M., I. Belitskaya-Lévy, C. Oh, S. Krasnokutsky, J. Greenberg, J. Samuels, S. Smiles, S. Lee, J. Patel, H. al-Mussawir, G. McDaniel, V.B. Kraus, and S.B. Abramson. 2011. Increased interleukin-1beta gene expression in peripheral blood leukocytes is associated with increased pain and predicts risk for progression of symptomatic knee osteoarthritis. Arthritis and Rheumatism 63 (7): 1908–1917.CrossRef
23.
go back to reference Wang, P., et al. 2018. Histone deacetylase-4 and histone deacetylase-8 regulate interleukin-1beta-induced cartilage catabolic degradation through MAPK/JNK and ERK pathways. International Journal of Molecular Medicine 41 (4): 2117–2127.PubMedPubMedCentral Wang, P., et al. 2018. Histone deacetylase-4 and histone deacetylase-8 regulate interleukin-1beta-induced cartilage catabolic degradation through MAPK/JNK and ERK pathways. International Journal of Molecular Medicine 41 (4): 2117–2127.PubMedPubMedCentral
24.
go back to reference Cao, M., et al. 1997. Nitric oxide inhibits the synthesis of type-II collagen without altering Col2A1 mRNA abundance: prolyl hydroxylase as a possible target. The Biochemical Journal 324 (Pt 1): 305–310.CrossRef Cao, M., et al. 1997. Nitric oxide inhibits the synthesis of type-II collagen without altering Col2A1 mRNA abundance: prolyl hydroxylase as a possible target. The Biochemical Journal 324 (Pt 1): 305–310.CrossRef
25.
go back to reference Takada, K., et al. 2013. Endoplasmic reticulum stress mediates nitric oxide-induced chondrocyte apoptosis. Biomedical Reports 1 (2): 315–319.CrossRef Takada, K., et al. 2013. Endoplasmic reticulum stress mediates nitric oxide-induced chondrocyte apoptosis. Biomedical Reports 1 (2): 315–319.CrossRef
26.
go back to reference Dumond, H., N. Presle, P. Pottie, S. Pacquelet, B. Terlain, P. Netter, A. Gepstein, E. Livne, and J.Y. Jouzeau. 2004. Site specific changes in gene expression and cartilage metabolism during early experimental osteoarthritis. Osteoarthritis and Cartilage 12 (4): 284–295.CrossRef Dumond, H., N. Presle, P. Pottie, S. Pacquelet, B. Terlain, P. Netter, A. Gepstein, E. Livne, and J.Y. Jouzeau. 2004. Site specific changes in gene expression and cartilage metabolism during early experimental osteoarthritis. Osteoarthritis and Cartilage 12 (4): 284–295.CrossRef
27.
go back to reference Vo, N.V., R.A. Hartman, T. Yurube, L.J. Jacobs, G.A. Sowa, and J.D. Kang. 2013. Expression and regulation of metalloproteinases and their inhibitors in intervertebral disc aging and degeneration. The Spine Journal 13 (3): 331–341.CrossRef Vo, N.V., R.A. Hartman, T. Yurube, L.J. Jacobs, G.A. Sowa, and J.D. Kang. 2013. Expression and regulation of metalloproteinases and their inhibitors in intervertebral disc aging and degeneration. The Spine Journal 13 (3): 331–341.CrossRef
28.
go back to reference Saklatvala, J. 2007. Inflammatory signaling in cartilage: MAPK and NF-kappaB pathways in chondrocytes and the use of inhibitors for research into pathogenesis and therapy of osteoarthritis. Current Drug Targets 8 (2): 305–313.CrossRef Saklatvala, J. 2007. Inflammatory signaling in cartilage: MAPK and NF-kappaB pathways in chondrocytes and the use of inhibitors for research into pathogenesis and therapy of osteoarthritis. Current Drug Targets 8 (2): 305–313.CrossRef
29.
go back to reference Sondergaard, B.C., N. Schultz, S.H. Madsen, A.C. Bay-Jensen, M. Kassem, and M.A. Karsdal. 2010. MAPKs are essential upstream signaling pathways in proteolytic cartilage degradation—divergence in pathways leading to aggrecanase and MMP-mediated articular cartilage degradation. Osteoarthritis and Cartilage 18 (3): 279–288.CrossRef Sondergaard, B.C., N. Schultz, S.H. Madsen, A.C. Bay-Jensen, M. Kassem, and M.A. Karsdal. 2010. MAPKs are essential upstream signaling pathways in proteolytic cartilage degradation—divergence in pathways leading to aggrecanase and MMP-mediated articular cartilage degradation. Osteoarthritis and Cartilage 18 (3): 279–288.CrossRef
30.
go back to reference Cargnello, M., and P.P. Roux. 2011. Activation and function of the MAPKs and their substrates, the MAPK-activated protein kinases. Microbiology and Molecular Biology Reviews 75 (1): 50–83.CrossRef Cargnello, M., and P.P. Roux. 2011. Activation and function of the MAPKs and their substrates, the MAPK-activated protein kinases. Microbiology and Molecular Biology Reviews 75 (1): 50–83.CrossRef
Metadata
Title
Isorhapontigenin Suppresses Interleukin-1β-Induced Inflammation and Cartilage Matrix Damage in Rat Chondrocytes
Authors
Yongzhuang Ma
Chang Tu
Wei Liu
Yifan Xiao
Hua Wu
Publication date
01-12-2019
Publisher
Springer US
Published in
Inflammation / Issue 6/2019
Print ISSN: 0360-3997
Electronic ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-019-01092-0

Other articles of this Issue 6/2019

Inflammation 6/2019 Go to the issue