Skip to main content
Top
Published in: Inflammation 5/2014

01-10-2014

RETRACTED ARTICLE: Bufalin Exerts Inhibitory Effects on IL-1β-Mediated Proliferation and Induces Apoptosis in Human Rheumatoid Arthritis Fibroblast-Like Synoviocytes

Authors: Yue-wen Chang, Yong-fang Zhao, Yue-long Cao, Wei Gu, Jian Pang, Hong-sheng Zhan

Published in: Inflammation | Issue 5/2014

Login to get access

Abstract

Rheumatoid arthritis fibroblast-like synoviocytes (RAFLSs) proliferate abnormally and resist apoptosis. Bufalin inhibits cell proliferation and induces apoptosis in human cancer cells. In this study, we explored the effects of bufalin on interleukin-1beta (IL-1β)-induced proliferation and apoptosis of RAFLSs. The cell proliferation and apoptosis were measured by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazoliumbromide assay and annexin V/propidium iodide staining, respectively. Bufalin dose-dependently inhibited IL-1β-induced RAFLS proliferation. Mechanistically, bufalin decreased the activation of mitogen-activated protein kinases (MAPKs) and nuclear factor-kappa B (NF-κB), both of which are involved in IL-1β-mediated RAFLS proliferation. Moreover, bufalin induced apoptosis and mitochondrial damage of RAFLSs, which was associated with Bcl-2 downregulation, Bax upregulation, mitochondrial cytochrome c release, and enhanced cleavages of caspase-3 and poly-(ADP-ribose) polymerase. Collectively, our results reveal that bufalin suppresses IL-1β-induced proliferation of RAFLSs through MAPK and NF-κB signaling pathways and induces RAFLS apoptosis via the mitochondria-dependent pathway.
Appendix
Available only for authorised users
Literature
1.
go back to reference Pope, R.M. 2002. Apoptosis as a therapeutic tool in rheumatoid arthritis. Nature Reviews Immunology 2: 527–535.CrossRefPubMed Pope, R.M. 2002. Apoptosis as a therapeutic tool in rheumatoid arthritis. Nature Reviews Immunology 2: 527–535.CrossRefPubMed
2.
go back to reference Huang, H., Y. Xiao, H. Lin, D. Fu, Z. Zhan, L. Liang, X. Yang, J. Fan, Y. Ye, L. Sun, and H. Xu. 2011. Increased phosphorylation of ezrin/radixin/moesin proteins contributes to proliferation of rheumatoid fibroblast-like synoviocytes. Rheumatology (Oxford) 50: 1045–1053.CrossRefPubMed Huang, H., Y. Xiao, H. Lin, D. Fu, Z. Zhan, L. Liang, X. Yang, J. Fan, Y. Ye, L. Sun, and H. Xu. 2011. Increased phosphorylation of ezrin/radixin/moesin proteins contributes to proliferation of rheumatoid fibroblast-like synoviocytes. Rheumatology (Oxford) 50: 1045–1053.CrossRefPubMed
4.
go back to reference Jang, J., D.S. Lim, Y.E. Choi, Y. Jeong, S.A. Yoo, W.U. Kim, and Y.S. Bae. 2006. MLN51 and GM-CSF involvement in the proliferation of fibroblast-like synoviocytes in the pathogenesis of rheumatoid arthritis. Arthritis Research and Therapy 8: R170.CrossRefPubMedPubMedCentral Jang, J., D.S. Lim, Y.E. Choi, Y. Jeong, S.A. Yoo, W.U. Kim, and Y.S. Bae. 2006. MLN51 and GM-CSF involvement in the proliferation of fibroblast-like synoviocytes in the pathogenesis of rheumatoid arthritis. Arthritis Research and Therapy 8: R170.CrossRefPubMedPubMedCentral
5.
go back to reference Farahat, M.N., G. Yanni, R. Poston, and G.S. Panayi. 1993. Cytokine expression in synovial membranes of patients with rheumatoid arthritis and osteoarthritis. Annals of the Rheumatic Diseases 52: 870–875.CrossRefPubMedPubMedCentral Farahat, M.N., G. Yanni, R. Poston, and G.S. Panayi. 1993. Cytokine expression in synovial membranes of patients with rheumatoid arthritis and osteoarthritis. Annals of the Rheumatic Diseases 52: 870–875.CrossRefPubMedPubMedCentral
6.
go back to reference Lim, D.S., and Y.S. Bae. 2011. Metastatic lymph node 51 and fibroblast-like synoviocyte hyperproliferation in rheumatoid arthritis pathogenesis. Rheumatology International 31: 843–847.CrossRefPubMed Lim, D.S., and Y.S. Bae. 2011. Metastatic lymph node 51 and fibroblast-like synoviocyte hyperproliferation in rheumatoid arthritis pathogenesis. Rheumatology International 31: 843–847.CrossRefPubMed
7.
go back to reference Byun, H.S., J.K. Song, Y.R. Kim, L. Piao, M. Won, K.A. Park, B.L. Choi, H. Lee, J.H. Hong, J. Park, J.H. Seok, Y.J. Lee, S.W. Kang, and G.M. Hur. 2008. Caspase-8 has an essential role in resveratrol-induced apoptosis of rheumatoid fibroblast-like synoviocytes. Rheumatology (Oxford) 47: 301–308.CrossRefPubMed Byun, H.S., J.K. Song, Y.R. Kim, L. Piao, M. Won, K.A. Park, B.L. Choi, H. Lee, J.H. Hong, J. Park, J.H. Seok, Y.J. Lee, S.W. Kang, and G.M. Hur. 2008. Caspase-8 has an essential role in resveratrol-induced apoptosis of rheumatoid fibroblast-like synoviocytes. Rheumatology (Oxford) 47: 301–308.CrossRefPubMed
8.
go back to reference Baier, A., I. Meineckel, S. Gay, and T. Pap. 2003. Apoptosis in rheumatoid arthritis. Current Opinion in Rheumatology 15: 274–279.CrossRefPubMed Baier, A., I. Meineckel, S. Gay, and T. Pap. 2003. Apoptosis in rheumatoid arthritis. Current Opinion in Rheumatology 15: 274–279.CrossRefPubMed
9.
go back to reference Bai, S., H. Liu, K.H. Chen, P. Eksarko, H. Perlman, T.L. Moore, and R.M. Pope. 2004. NF-kappaB-regulated expression of cellular FLIP protects rheumatoid arthritis synovial fibroblasts from tumor necrosis factor alpha-mediated apoptosis. Arthritis and Rheumatism 50: 3844–3855.CrossRefPubMed Bai, S., H. Liu, K.H. Chen, P. Eksarko, H. Perlman, T.L. Moore, and R.M. Pope. 2004. NF-kappaB-regulated expression of cellular FLIP protects rheumatoid arthritis synovial fibroblasts from tumor necrosis factor alpha-mediated apoptosis. Arthritis and Rheumatism 50: 3844–3855.CrossRefPubMed
10.
go back to reference Perlman, H., L.J. Pagliari, C. Georganas, T. Mano, K. Walsh, and R.M. Pope. 1999. FLICE-inhibitory protein expression during macrophage differentiation confers resistance to fas-mediated apoptosis. Journal of Experimental Medicine 190: 1679–1688.CrossRefPubMedPubMedCentral Perlman, H., L.J. Pagliari, C. Georganas, T. Mano, K. Walsh, and R.M. Pope. 1999. FLICE-inhibitory protein expression during macrophage differentiation confers resistance to fas-mediated apoptosis. Journal of Experimental Medicine 190: 1679–1688.CrossRefPubMedPubMedCentral
11.
go back to reference Schedel, J., R.E. Gay, P. Kuenzler, C. Seemayer, B. Simmen, B.A. Michel, and S. Gay. 2002. FLICE-inhibitory protein expression in synovial fibroblasts and at sites of cartilage and bone erosion in rheumatoid arthritis. Arthritis and Rheumatism 46: 1512–1518.CrossRefPubMed Schedel, J., R.E. Gay, P. Kuenzler, C. Seemayer, B. Simmen, B.A. Michel, and S. Gay. 2002. FLICE-inhibitory protein expression in synovial fibroblasts and at sites of cartilage and bone erosion in rheumatoid arthritis. Arthritis and Rheumatism 46: 1512–1518.CrossRefPubMed
12.
go back to reference Asahara, H., T. Hasumuna, T. Kobata, H. Yagita, K. Okumura, H. Inoue, S. Gay, T. Sumida, and K. Nishioka. 1996. Expression of Fas antigen and Fas ligand in the rheumatoid synovial tissue. Clinical Immunology and Immunopathology 81: 27–34.CrossRefPubMed Asahara, H., T. Hasumuna, T. Kobata, H. Yagita, K. Okumura, H. Inoue, S. Gay, T. Sumida, and K. Nishioka. 1996. Expression of Fas antigen and Fas ligand in the rheumatoid synovial tissue. Clinical Immunology and Immunopathology 81: 27–34.CrossRefPubMed
13.
go back to reference Asahara, H., T. Hasunuma, T. Kobata, H. Inoue, U. Muller-Ladner, S. Gay, T. Sumida, and K. Nishioka. 1997. In situ expression of protooncogenes and Fas/Fas ligand in rheumatoid arthritis synovium. Journal of Rheumatology 24: 430–435.PubMed Asahara, H., T. Hasunuma, T. Kobata, H. Inoue, U. Muller-Ladner, S. Gay, T. Sumida, and K. Nishioka. 1997. In situ expression of protooncogenes and Fas/Fas ligand in rheumatoid arthritis synovium. Journal of Rheumatology 24: 430–435.PubMed
14.
go back to reference Chou, C.T., J.S. Yang, and M.R. Lee. 2001. Apoptosis in rheumatoid arthritis—expression of Fas, Fas-L, p53, and Bcl-2 in rheumatoid synovial tissues. Journal of Pathology 193: 110–116.CrossRefPubMed Chou, C.T., J.S. Yang, and M.R. Lee. 2001. Apoptosis in rheumatoid arthritis—expression of Fas, Fas-L, p53, and Bcl-2 in rheumatoid synovial tissues. Journal of Pathology 193: 110–116.CrossRefPubMed
15.
go back to reference Hamaguchi, M., Y. Kawahito, A. Omoto, Y. Tsubouchi, M. Kohno, T. Seno, M. Kadoya, A. Yamamoto, H. Ishino, M. Matsuyama, R. Yoshimura, and T. Yoshikawa. 2008. Eicosapentaenoic acid suppresses the proliferation of synoviocytes from rheumatoid arthritis. Journal of Clinical Biochemistry and Nutrition 43: 126–128.CrossRefPubMedPubMedCentral Hamaguchi, M., Y. Kawahito, A. Omoto, Y. Tsubouchi, M. Kohno, T. Seno, M. Kadoya, A. Yamamoto, H. Ishino, M. Matsuyama, R. Yoshimura, and T. Yoshikawa. 2008. Eicosapentaenoic acid suppresses the proliferation of synoviocytes from rheumatoid arthritis. Journal of Clinical Biochemistry and Nutrition 43: 126–128.CrossRefPubMedPubMedCentral
16.
go back to reference Liagre, B., P. Vergne-Salle, C. Corbiere, J.L. Charissoux, and J.L. Beneytout. 2004. Diosgenin, a plant steroid, induces apoptosis in human rheumatoid arthritis synoviocytes with cyclooxygenase-2 overexpression. Arthritis Research and Therapy 6: R373–R383.CrossRefPubMedPubMedCentral Liagre, B., P. Vergne-Salle, C. Corbiere, J.L. Charissoux, and J.L. Beneytout. 2004. Diosgenin, a plant steroid, induces apoptosis in human rheumatoid arthritis synoviocytes with cyclooxygenase-2 overexpression. Arthritis Research and Therapy 6: R373–R383.CrossRefPubMedPubMedCentral
17.
go back to reference Xu, Z., G. Wu, X. Wei, X. Chen, Y. Wang, and L. Chen. 2013. Celastrol induced DNA damage, cell cycle arrest, and apoptosis in human rheumatoid fibroblast-like synovial cells. American Journal of Chinese Medicine 41: 615–628.CrossRefPubMed Xu, Z., G. Wu, X. Wei, X. Chen, Y. Wang, and L. Chen. 2013. Celastrol induced DNA damage, cell cycle arrest, and apoptosis in human rheumatoid fibroblast-like synovial cells. American Journal of Chinese Medicine 41: 615–628.CrossRefPubMed
18.
go back to reference Li, L., C. Liu, M. Liu, L. Shi, Q. Liu, H. Guan, and P. Li. 2013. Taurochenodeoxycholic acid induces apoptosis of fibroblast-like synoviocytes. European Journal of Pharmacology 706: 36–40.CrossRefPubMed Li, L., C. Liu, M. Liu, L. Shi, Q. Liu, H. Guan, and P. Li. 2013. Taurochenodeoxycholic acid induces apoptosis of fibroblast-like synoviocytes. European Journal of Pharmacology 706: 36–40.CrossRefPubMed
19.
go back to reference Takai, N., N. Kira, T. Ishii, T. Yoshida, M. Nishida, Y. Nishida, K. Nasu, and H. Narahara. 2012. Bufalin, a traditional oriental medicine, induces apoptosis in human cancer cells. Asian Pacific Journal of Cancer Prevention 13: 399–402.CrossRefPubMed Takai, N., N. Kira, T. Ishii, T. Yoshida, M. Nishida, Y. Nishida, K. Nasu, and H. Narahara. 2012. Bufalin, a traditional oriental medicine, induces apoptosis in human cancer cells. Asian Pacific Journal of Cancer Prevention 13: 399–402.CrossRefPubMed
20.
go back to reference Krenn, L., and B. Kopp. 1998. Bufadienolides from animal and plant sources. Phytochemistry 48: 1–29.CrossRefPubMed Krenn, L., and B. Kopp. 1998. Bufadienolides from animal and plant sources. Phytochemistry 48: 1–29.CrossRefPubMed
21.
go back to reference Bartok, B., and G.S. Firestein. 2010. Fibroblast-like synoviocytes: key effector cells in rheumatoid arthritis. Immunology Reviews 233: 233–255.CrossRef Bartok, B., and G.S. Firestein. 2010. Fibroblast-like synoviocytes: key effector cells in rheumatoid arthritis. Immunology Reviews 233: 233–255.CrossRef
22.
go back to reference Choy, E.H., and G.S. Panayi. 2001. Cytokine pathways and joint inflammation in rheumatoid arthritis. New England Journal of Medicine 344: 907–916.CrossRefPubMed Choy, E.H., and G.S. Panayi. 2001. Cytokine pathways and joint inflammation in rheumatoid arthritis. New England Journal of Medicine 344: 907–916.CrossRefPubMed
23.
go back to reference Arnett, F.C., S.M. Edworthy, D.A. Bloch, D.J. McShane, J.F. Fries, N.S. Cooper, L.A. Healey, S.R. Kaplan, M.H. Liang, H.S. Luthra, et al. 1988. The American Rheumatism Association 1987 revised criteria for the classification of rheumatoid arthritis. Arthritis and Rheumatism 31: 315–324.CrossRefPubMed Arnett, F.C., S.M. Edworthy, D.A. Bloch, D.J. McShane, J.F. Fries, N.S. Cooper, L.A. Healey, S.R. Kaplan, M.H. Liang, H.S. Luthra, et al. 1988. The American Rheumatism Association 1987 revised criteria for the classification of rheumatoid arthritis. Arthritis and Rheumatism 31: 315–324.CrossRefPubMed
24.
go back to reference Hochberg, M.C., R.W. Chang, I. Dwosh, S. Lindsey, T. Pincus, and F. Wolfe. 1992. The American College of Rheumatology 1991 revised criteria for the classification of global functional status in rheumatoid arthritis. Arthritis and Rheumatism 35: 498–502.CrossRefPubMed Hochberg, M.C., R.W. Chang, I. Dwosh, S. Lindsey, T. Pincus, and F. Wolfe. 1992. The American College of Rheumatology 1991 revised criteria for the classification of global functional status in rheumatoid arthritis. Arthritis and Rheumatism 35: 498–502.CrossRefPubMed
25.
go back to reference Nikitopoulou, Il., N. Oikonomou, E. Karouzakis, I. Sevastou, N. Nikolaidou-Katsaridou, Z. Zhao, V. Mersinias, M. Armaka, Y. Xu, M. Masu, G.B. Mills, S. Gay, G. Kollias, and V. Aidinis. 2012. Autotaxin expression from synovial fibroblasts is essential for the pathogenesis of modeled arthritis. Journal of Experimental Medicine 209(5): 925–933.CrossRefPubMedPubMedCentral Nikitopoulou, Il., N. Oikonomou, E. Karouzakis, I. Sevastou, N. Nikolaidou-Katsaridou, Z. Zhao, V. Mersinias, M. Armaka, Y. Xu, M. Masu, G.B. Mills, S. Gay, G. Kollias, and V. Aidinis. 2012. Autotaxin expression from synovial fibroblasts is essential for the pathogenesis of modeled arthritis. Journal of Experimental Medicine 209(5): 925–933.CrossRefPubMedPubMedCentral
26.
go back to reference Foxwell, B., K. Browne, J. Bondeson, C. Clarke, R. Demartin, and F. Brennan. 1998. Efficient adenoviral infection with IκBα reveals that macrophage tumor necrosis factor α production in rheumatoid arthritis is NF-κB dependent. Proceedings of the National Academy of Sciences of the United States of America 95: 8211–8215.CrossRefPubMedPubMedCentral Foxwell, B., K. Browne, J. Bondeson, C. Clarke, R. Demartin, and F. Brennan. 1998. Efficient adenoviral infection with IκBα reveals that macrophage tumor necrosis factor α production in rheumatoid arthritis is NF-κB dependent. Proceedings of the National Academy of Sciences of the United States of America 95: 8211–8215.CrossRefPubMedPubMedCentral
27.
go back to reference Schett, G., M. Tohidast-Akrad, J.S. Smolen, B.J. Schmid, C.W. Steiner, P. Bitzan, P. Zenz, K. Redlich, Q. Xu, and G. Steiner. 2000. Activation, differential localization, and regulation of the stress-activated protein kinases, extracellular signal-regulated kinase, c-JUN N-terminal kinase, and p38 mitogen-activated protein kinase, in synovial tissue and cells in rheumatoid arthritis. Arthritis and Rheumatism 43: 2501–2512.CrossRefPubMed Schett, G., M. Tohidast-Akrad, J.S. Smolen, B.J. Schmid, C.W. Steiner, P. Bitzan, P. Zenz, K. Redlich, Q. Xu, and G. Steiner. 2000. Activation, differential localization, and regulation of the stress-activated protein kinases, extracellular signal-regulated kinase, c-JUN N-terminal kinase, and p38 mitogen-activated protein kinase, in synovial tissue and cells in rheumatoid arthritis. Arthritis and Rheumatism 43: 2501–2512.CrossRefPubMed
28.
go back to reference Inoue, H., M. Takamori, N. Nagata, T. Nishikawa, H. Oda, S. Yamamoto, and Y. Koshihara. 2001. An investigation of cell proliferation and soluble mediators induced by interleukin 1beta in human synovial fibroblasts: comparative response in osteoarthritis and rheumatoid arthritis. Inflammation Research 50: 65–72.PubMed Inoue, H., M. Takamori, N. Nagata, T. Nishikawa, H. Oda, S. Yamamoto, and Y. Koshihara. 2001. An investigation of cell proliferation and soluble mediators induced by interleukin 1beta in human synovial fibroblasts: comparative response in osteoarthritis and rheumatoid arthritis. Inflammation Research 50: 65–72.PubMed
29.
go back to reference Chueh, F.S., Y.Y. Chen, A.C. Huang, H.C. Ho, C.L. Liao, J.S. Yang, C.L. Kuo, and J.G. Chung. 2014. Bufalin-inhibited migration and invasion in human osteosarcoma U-2 OS cells is carried out by suppression of the matrix metalloproteinase-2, ERK, and JNK signaling pathways. Environmental Toxicology 29: 21–29.CrossRefPubMed Chueh, F.S., Y.Y. Chen, A.C. Huang, H.C. Ho, C.L. Liao, J.S. Yang, C.L. Kuo, and J.G. Chung. 2014. Bufalin-inhibited migration and invasion in human osteosarcoma U-2 OS cells is carried out by suppression of the matrix metalloproteinase-2, ERK, and JNK signaling pathways. Environmental Toxicology 29: 21–29.CrossRefPubMed
30.
go back to reference Jiang, Y., Y. Zhang, J. Luan, H. Duan, F. Zhang, K. Yagasaki, and G. Zhang. 2010. Effects of bufalin on the proliferation of human lung cancer cells and its molecular mechanisms of action. Cytotechnology 62: 573–583.CrossRefPubMedPubMedCentral Jiang, Y., Y. Zhang, J. Luan, H. Duan, F. Zhang, K. Yagasaki, and G. Zhang. 2010. Effects of bufalin on the proliferation of human lung cancer cells and its molecular mechanisms of action. Cytotechnology 62: 573–583.CrossRefPubMedPubMedCentral
31.
go back to reference Perlman, H., C. Georganas, L.J. Pagliari, A.E. Koch, K. Haines 3rd, and R.M. Pope. 2000. Bcl-2 expression in synovial fibroblasts is essential for maintaining mitochondrial homeostasis and cell viability. Journal of Immunology 164: 5227–5235.CrossRef Perlman, H., C. Georganas, L.J. Pagliari, A.E. Koch, K. Haines 3rd, and R.M. Pope. 2000. Bcl-2 expression in synovial fibroblasts is essential for maintaining mitochondrial homeostasis and cell viability. Journal of Immunology 164: 5227–5235.CrossRef
32.
go back to reference Zamzami, N., C. Brenner, I. Marzo, S.A. Susin, and G. Kroemer. 1998. Subcellular and submitochondrial mode of action of Bcl-2-like oncoproteins. Oncogene 16: 2265.CrossRefPubMed Zamzami, N., C. Brenner, I. Marzo, S.A. Susin, and G. Kroemer. 1998. Subcellular and submitochondrial mode of action of Bcl-2-like oncoproteins. Oncogene 16: 2265.CrossRefPubMed
34.
go back to reference Yang, J., X. Liu, K. Bhalla, C.N. Kim, A.M. Ibrado, J. Cai, T.I. Peng, D.P. Jones, and X. Wang. 1997. Prevention of apoptosis by Bcl-2: release of cytochrome c from mitochondria blocked. Science 275: 1129–1132.CrossRefPubMed Yang, J., X. Liu, K. Bhalla, C.N. Kim, A.M. Ibrado, J. Cai, T.I. Peng, D.P. Jones, and X. Wang. 1997. Prevention of apoptosis by Bcl-2: release of cytochrome c from mitochondria blocked. Science 275: 1129–1132.CrossRefPubMed
35.
go back to reference Kluck, R.M., E. Bossy-Wetzel, D.R. Green, and D.D. Newmeyer. 1997. The release of cytochrome c from mitochondria: a primary site for Bcl-2 regulation of apoptosis. Science 275: 1132–1136.CrossRefPubMed Kluck, R.M., E. Bossy-Wetzel, D.R. Green, and D.D. Newmeyer. 1997. The release of cytochrome c from mitochondria: a primary site for Bcl-2 regulation of apoptosis. Science 275: 1132–1136.CrossRefPubMed
36.
go back to reference Hardwick, J.M., Y.B. Chen, and E.A. Jonas. 2012. Multipolar functions of BCL-2 proteins link energetics to apoptosis. Trends in Cell Biology 22: 318–328.CrossRefPubMedPubMedCentral Hardwick, J.M., Y.B. Chen, and E.A. Jonas. 2012. Multipolar functions of BCL-2 proteins link energetics to apoptosis. Trends in Cell Biology 22: 318–328.CrossRefPubMedPubMedCentral
37.
38.
go back to reference Rossé, T., R. Olivier, L. Monney, M. Rager, S. Conus, I. Fellay, B. Jansen, and C. Borner. 1998. Bcl-2 prolongs cell survival after Bax-induced release of cytochrome c. Nature 391: 496–499.CrossRefPubMed Rossé, T., R. Olivier, L. Monney, M. Rager, S. Conus, I. Fellay, B. Jansen, and C. Borner. 1998. Bcl-2 prolongs cell survival after Bax-induced release of cytochrome c. Nature 391: 496–499.CrossRefPubMed
39.
go back to reference Zou, H., W.J. Henzel, X. Liu, A. Lutschg, and X. Wang. 1997. Apaf-1, a human protein homologous to C. elegans CED-4, participates in cytochrome c-dependent activation of caspase-3. Cell 90: 405–413.CrossRefPubMed Zou, H., W.J. Henzel, X. Liu, A. Lutschg, and X. Wang. 1997. Apaf-1, a human protein homologous to C. elegans CED-4, participates in cytochrome c-dependent activation of caspase-3. Cell 90: 405–413.CrossRefPubMed
40.
go back to reference Marek, Ł. 2013. The role of the apoptosome in the activation of procaspase-9. Postȩpy Higieny i Medycyny Doświadczalnej (Online) 67: 54–64.CrossRefPubMed Marek, Ł. 2013. The role of the apoptosome in the activation of procaspase-9. Postȩpy Higieny i Medycyny Doświadczalnej (Online) 67: 54–64.CrossRefPubMed
41.
go back to reference Zhao, C.Q., Y.H. Zhang, S.D. Jiang, L.S. Jiang, and L.Y. Dai. 2010. Both endoplasmic reticulum and mitochondria are involved in disc cell apoptosis and intervertebral disc degeneration in rats. Age (Dordrecht, Netherlands) 32: 161–177.CrossRefPubMed Zhao, C.Q., Y.H. Zhang, S.D. Jiang, L.S. Jiang, and L.Y. Dai. 2010. Both endoplasmic reticulum and mitochondria are involved in disc cell apoptosis and intervertebral disc degeneration in rats. Age (Dordrecht, Netherlands) 32: 161–177.CrossRefPubMed
42.
go back to reference Graziani, G., and C. Szabo. 2005. Clinical perspectives of PARP inhibitors. Pharmacological Research 52: 109–118.CrossRefPubMed Graziani, G., and C. Szabo. 2005. Clinical perspectives of PARP inhibitors. Pharmacological Research 52: 109–118.CrossRefPubMed
43.
go back to reference Qi, F., Y. Inagaki, B. Gao, X. Cui, H. Xu, N. Kokudo, A. Li, and W. Tang. 2011. Bufalin and cinobufagin induce apoptosis of human hepatocellular carcinoma cells via Fas- and mitochondria-mediated pathways. Cancer Science 102: 951–958.CrossRefPubMed Qi, F., Y. Inagaki, B. Gao, X. Cui, H. Xu, N. Kokudo, A. Li, and W. Tang. 2011. Bufalin and cinobufagin induce apoptosis of human hepatocellular carcinoma cells via Fas- and mitochondria-mediated pathways. Cancer Science 102: 951–958.CrossRefPubMed
44.
go back to reference Huang, W.W., J.S. Yang, S.J. Pai, P.P. Wu, S.J. Chang, F.S. Chueh, M.J. Fan, S.M. Chiou, H.M. Kuo, C.C. Yeh, P.Y. Chen, M. Tsuzuki, and J.G. Chung. 2012. Bufalin induces G(0)/G(1) phase arrest through inhibiting the levels of cyclin D, cyclin E, CDK2 and CDK4, and triggers apoptosis via mitochondrial signaling pathway in T24 human bladder cancer cells. Mutation Research 732: 26–33.CrossRefPubMed Huang, W.W., J.S. Yang, S.J. Pai, P.P. Wu, S.J. Chang, F.S. Chueh, M.J. Fan, S.M. Chiou, H.M. Kuo, C.C. Yeh, P.Y. Chen, M. Tsuzuki, and J.G. Chung. 2012. Bufalin induces G(0)/G(1) phase arrest through inhibiting the levels of cyclin D, cyclin E, CDK2 and CDK4, and triggers apoptosis via mitochondrial signaling pathway in T24 human bladder cancer cells. Mutation Research 732: 26–33.CrossRefPubMed
45.
go back to reference Tas, S.W., M.J. Vervoordeldonk, N. Hajji, M.J. May, S. Ghosh, and P.P. Tak. 2006. Local treatment with the selective IkappaB kinase beta inhibitor NEMO-binding domain peptide ameliorates synovial inflammation. Arthritis Research and Therapy 8: R86.CrossRefPubMedPubMedCentral Tas, S.W., M.J. Vervoordeldonk, N. Hajji, M.J. May, S. Ghosh, and P.P. Tak. 2006. Local treatment with the selective IkappaB kinase beta inhibitor NEMO-binding domain peptide ameliorates synovial inflammation. Arthritis Research and Therapy 8: R86.CrossRefPubMedPubMedCentral
46.
go back to reference Rong ,X., Ni, W., Liu, Y., Wen, J., Qian, C., Sun, L., Wang, J, 2014. Bufalin, a bioactive component of the Chinese Medicine Chansu, inhibits inflammation and invasion of human rheumatoid arthritis fibroblast-like synoviocytes. Inflammation. doi:10.1007/s10753-014-9828-y. Rong ,X., Ni, W., Liu, Y., Wen, J., Qian, C., Sun, L., Wang, J, 2014. Bufalin, a bioactive component of the Chinese Medicine Chansu, inhibits inflammation and invasion of human rheumatoid arthritis fibroblast-like synoviocytes. Inflammation. doi:10.​1007/​s10753-014-9828-y.
Metadata
Title
RETRACTED ARTICLE: Bufalin Exerts Inhibitory Effects on IL-1β-Mediated Proliferation and Induces Apoptosis in Human Rheumatoid Arthritis Fibroblast-Like Synoviocytes
Authors
Yue-wen Chang
Yong-fang Zhao
Yue-long Cao
Wei Gu
Jian Pang
Hong-sheng Zhan
Publication date
01-10-2014
Publisher
Springer New York
Published in
Inflammation / Issue 5/2014
Print ISSN: 0360-3997
Electronic ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-014-9882-5

Other articles of this Issue 5/2014

Inflammation 5/2014 Go to the issue