Cepharanthine Inhibits IFN-γ-Induced CXCL10 by Suppressing the JAK2/STAT1 Signal Pathway in Human Salivary Gland Ductal Cells

被引:0
作者
Keiko Aota
Tomoko Yamanoi
Koichi Kani
Masayuki Azuma
机构
[1] Tokushima University Graduate School of Biomedical Sciences,Department of Oral Medicine
来源
Inflammation | 2018年 / 41卷
关键词
cepharanthine; CXCL10; IFN-γ; JAK/STAT1 signaling; salivary gland ductal cells; primary Sjögren’s syndrome;
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学科分类号
摘要
Cepharanthine, a biscolaurine alkaloid isolated from the plant Stephania cephalantha Hayata, has been reported to have potent anti-inflammatory properties. Here, we investigated the effects of cepharanthine on the expression of CXCL10 (a CXC chemokine induced by interferon-gamma [IFN-γ] that has been observed in a wide variety of chronic inflammatory disorders and autoimmune conditions) in IFN-γ-treated human salivary gland cell lines. We observed that IFN-γ-induced CXCL10 production in NS-SV-DC cells (a human salivary gland ductal cell line), but not in NS-SV-AC cells (a human salivary gland acinar cell line). Cepharanthine inhibited the IFN-γ-induced CXCL10 production in NS-SV-DC cells. A Western blot analysis showed that cepharanthine prevented the phosphorylation of JAK2 and STAT1, but did not interfere with the NF-κB pathway. Moreover, cepharanthine inhibited the IFN-γ-mediated chemotaxis of Jurkat T cells. These results suggest that cepharanthine suppresses IFN-γ-induced CXCL10 production via the inhibition of the JAK2/STAT1 signaling pathway in human salivary gland ductal cells. Our findings also indicate that cepharanthine could inhibit the chemotaxis of Jurkat T cells by reducing CXCL10 production.
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页码:50 / 58
页数:8
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  • [1] Daniels TE(1984)Labial salivary gland biopsy in Sjögren's syndrome: Assessment as a diagnostic criterion in 362 suspected cases Arthritis and Rheumatism 27 147-156
  • [2] Hamano H(1993)Expressions of cytokine genes during development of autoimmune sialadenitis in MRL/lpr mice European Journal of Immunology 23 2387-2391
  • [3] Saito I(1994)Cytokine mRNA expression in salivary gland biopsies of Sjögren's syndrome Journal of Immunology 152 5532-5529
  • [4] Haneji N(2013)Interferons in Sjögren’s syndrome: genes, mechanisms, and effects Frontiers in Immunology 20 290-2446
  • [5] Mitsuhashi Y(2015)Molecular subsetting of interferon pathways in Sjögren's syndrome Arthritis & Rhematology 67 2437-556
  • [6] MiyasakaN HY(2013)Advances in understanding the pathogenesis of primary Sjögren’s syndrome Nature Reviews. Rheumatology 9 544-676
  • [7] Fox RI(1985)Gamma-interferon transcriptionally regulates an early-response gene containing homology to platelet proteins Nature 315 672-418
  • [8] Kang HI(2001)CXCR3 chemokine receptor distribution in normal and inflamed tissues: Expression on activated lymphocytes, endothelial cells, and dendritic cells Laboratory Investigation 81 409-215
  • [9] Ando D(2011)CXCR3 ligands: redundant, collaborative and antagonistic functions Immunology and Cell Biology 89 207-8067
  • [10] Abrams J(2008)Infiltrated neutrophils acquire novel chemokine receptor expression and chemokine responsiveness in chronic inflammatory lung diseases Journal of Immunology 181 8053-2741