Advertisement
Original Article| Volume 103, ISSUE 2, P101-108, August 2021

Download started.

Ok

2-Aminoethyl diphenylborinate inhibits bleomycin-induced skin and pulmonary fibrosis via interrupting intracellular Ca2+ regulation

  • Wen-Li Hsu
    Affiliations
    Department of Dermatology, Kaohsiung Municipal Ta-Tung Hospital, Kaohsiung Medical University Hospital, Kaohsiung Medical University, Kaohsiung, Taiwan

    Regenerative Medicine and Cell Therapy Research Center, Kaohsiung Medical University, Kaohsiung, Taiwan
    Search for articles by this author
  • Yi-Chun Hsieh
    Affiliations
    Regenerative Medicine and Cell Therapy Research Center, Kaohsiung Medical University, Kaohsiung, Taiwan
    Search for articles by this author
  • Hsin-Su Yu
    Affiliations
    Graduate Institute of Clinical Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan
    Search for articles by this author
  • Tohru Yoshioka
    Affiliations
    Regenerative Medicine and Cell Therapy Research Center, Kaohsiung Medical University, Kaohsiung, Taiwan

    Graduate Institute of Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan
    Search for articles by this author
  • Ching-Ying Wu
    Correspondence
    Corresponding author at: Department of Dermatology, Kaohsiung Municipal Ta-Tung Hospital, Kaohsiung Medical University Hospital, Kaohsiung Medical University, Kaohsiung, No. 68, Jhonghua 3rd Rd, Cianjin District, Kaohsiung, 80145, Taiwan.
    Affiliations
    Department of Dermatology, Kaohsiung Municipal Ta-Tung Hospital, Kaohsiung Medical University Hospital, Kaohsiung Medical University, Kaohsiung, Taiwan

    Department of Cosmetic Science, Chang Gung University of Science and Technology, Taoyuan, Taiwan
    Search for articles by this author

      Highlights

      • 2-APB induces dedifferentiation in TGF-β1-induced myofibroblasts.
      • Inhibition of intracellular Ca2+ regulation by 2-APB restrains the expression of fibrotic markers through inhibiting TGF-β1/SMAD3 signaling.
      • Treatment with 2-APB in the bleomycin-induced SSc mice alleviates SSc pathogenesis.
      • 2-APB is a potential candidate for treating fibrotic diseases.

      Abstract

      Background

      Systemic sclerosis (SSc) causes progressive fibrosis of multiple organs with the low efficacy of immunosuppressive therapies. Our previous study indicated the SSc pathological pathways are closely correlated with Ca2+ signals, and blockage of the intracellular Ca2+ elevation facilitates inhibition of SSc pathogenesis.

      Objective

      Transforming growth factor β (TGF-β)-modulated SMAD signaling is crucial in regulating SSc pathogenesis. Whether Ca2+ signals are involved in TGF-β1/SMAD signaling-induced fibrotic process has been further investigated.

      Methods

      We utilized TGF-β1-induced myofibroblasts as a model to detect how Ca2+ signals affected SSc pathogenesis, and investigated the combination of treatment with store-operated Ca2+ entry (SOCE) associated inhibitors, 2-aminoethyl diphenylborinate (2-APB) and SKF96365 to restrain the increased Ca2+ signaling in myofibroblasts. In addition, the SSc bleomycin mouse model was used to detect the effect of 2-APB on SSc pathogenesis in vivo.

      Results

      Our findings revealed increased levels of TGF-β1 production in SSc was associated with intracellular Ca2+ activity, and inhibition of intracellular Ca2+ regulation by 2-APB resulted in the dedifferentiation of TGF-β1-induced myofibroblasts. This was due to the fact that 2-APB restrained the expression fibrotic markers, α-SMA, fibronectin and vimentin through inhibiting TGF-β1/SMAD3 signaling. Thus, subcutaneous injection of 2-APB improved bleomycin-induced skin and pulmonary fibrosis.

      Conclusion

      2-APB is a potential candidate for treating fibrosis, by disrupting intracellular Ca2+ regulation in SSc to induce the dedifferentiation of myofibroblasts and meliorates fibrosis pathogenesis via inhibiting TGF-β1/SMAD3 signaling.

      Keywords

      To read this article in full you will need to make a payment

      Purchase one-time access:

      Academic & Personal: 24 hour online accessCorporate R&D Professionals: 24 hour online access
      One-time access price info
      • For academic or personal research use, select 'Academic and Personal'
      • For corporate R&D use, select 'Corporate R&D Professionals'

      Subscribe:

      Subscribe to Journal of Dermatological Science
      Already a print subscriber? Claim online access
      Already an online subscriber? Sign in
      Institutional Access: Sign in to ScienceDirect

      References

        • Cabrera S.
        • Selman M.
        • Lonzano-Bolanos A.
        • Konishi K.
        • Richards T.J.
        • Kaminski N.
        • Pardo A.
        Gene expression profiles reveal molecular mechanisms involved in the progression and resolution of bleomycin-induced lung fibrosis.
        Am. J. Physiol. Lung Cell Mol. Physiol. 2013; 304: L593-601
        • Tyndall A.J.
        • Bannert B.
        • Vonk M.
        • Airo P.
        • Cozzi F.
        • Carreira P.E.
        • Bancel D.F.
        • Allanore Y.
        • Muller-Ladner U.
        • Distler O.
        • Iannone F.
        • Pellerito R.
        • Pileckyte M.
        • Miniati I.
        • Ananieva L.
        • Gurman A.B.
        • Damjanov N.
        • Mueller A.
        • Valentini G.
        • Riemekasten G.
        • Tikly M.
        • Hummers L.
        • Henriques M.J.
        • Caramaschi P.
        • Scheja A.
        • Rozman B.
        • Ton E.
        • Kumanovics G.
        • Coleiro B.
        • Feierl E.
        • Szucs G.
        • Von Muhlen C.A.
        • Riccieri V.
        • Novak S.
        • Chizzolini C.
        • Kotulska A.
        • Denton C.
        • Coelho P.C.
        • Kotter I.
        • Simsek I.
        • de la Pena Lefebvre P.G.
        • Hachulla E.
        • Seibold J.R.
        • Rednic S.
        • Stork J.
        • Morovic-Vergles J.
        • Walker U.A.
        Causes and risk factors for death in systemic sclerosis: a study from the EULAR Scleroderma Trials and Research (EUSTAR) database.
        Ann. Rheum. Dis. 2010; 69: 1809-1815
        • Ayers N.B.
        • Sun C.M.
        • Chen S.Y.
        Transforming growth factor-beta signaling in systemic sclerosis.
        J. Biomed. Res. 2018; 32: 3-12
        • Rosenbloom J.
        • Mendoza F.A.
        • Jimenez S.A.
        Strategies for anti-fibrotic therapies.
        Biochim. Biophys. Acta. 2013; 1832: 1088-1103
        • Gu L.
        • Zhu Y.J.
        • Yang X.
        • Guo Z.J.
        • Xu W.B.
        • Tian X.L.
        Effect of TGF-beta/Smad signaling pathway on lung myofibroblast differentiation.
        Acta Pharmacol. Sin. 2007; 28: 382-391
        • Walton K.L.
        • Johnson K.E.
        • Harrison C.A.
        Targeting TGF-beta mediated SMAD signaling for the prevention of fibrosis.
        Front. Pharmacol. 2017; 8: 461
        • Sisto M.
        • Lorusso L.
        • Ingravallo G.
        • Tamma R.
        • Ribatti D.
        • Lisi S.
        The TGF-beta1 signaling pathway as an attractive target in the fibrosis pathogenesis of Sjogren’s syndrome.
        Mediators Inflamm. 2018; 20181965935
        • Varga J.
        • Pasche B.
        Antitransforming growth factor-beta therapy in fibrosis: recent progress and implications for systemic sclerosis.
        Curr. Opin. Rheumatol. 2008; 20: 720-728
        • Wu C.Y.
        • Hsu W.L.
        • Tsai M.H.
        • Chai C.Y.
        • Yen C.J.
        • Chen C.H.
        • Lu J.H.
        • Yu H.S.
        • Yoshioka T.
        A potential new approach for treating systemic sclerosis: dedifferentiation of SSc fibroblasts and change in the microenvironment by blocking store-operated Ca2+ entry.
        PLoS One. 2019; 14e0213400
        • Hsu W.L.
        • Lu J.H.
        • Noda M.
        • Wu C.Y.
        • Liu J.D.
        • Sakakibara M.
        • Tsai M.H.
        • Yu H.S.
        • Lin M.W.
        • Huang Y.B.
        • Yan S.J.
        • Yoshioka T.
        Derinat protects skin against Ultraviolet-B (UVB)-Induced cellular damage.
        Molecules. 2015; 20: 20297-20311
        • Kafaja S.
        • Valera I.
        • Divekar A.A.
        • Saggar R.
        • Abtin F.
        • Furst D.E.
        • Khanna D.
        • Singh R.R.
        pDCs in lung and skin fibrosis in a bleomycin-induced model and patients with systemic sclerosis.
        JCI Insight. 2018; 3
        • Hsu W.L.
        • Tsai M.H.
        • Wu C.Y.
        • Liang J.L.
        • Lu J.H.
        • Kahle J.S.
        • Yu H.S.
        • Yen C.J.
        • Yen C.T.
        • Hsieh Y.C.
        • Huang Y.Y.
        • Lin L.C.
        • Tsai T.F.
        • Chen C.H.
        • Yoshioka T.
        Nociceptive transient receptor potential canonical 7 (TRPC7) mediates aging-associated tumorigenesis induced by ultraviolet B.
        Aging Cell. 2020; 19e13075
        • Chia H.N.
        • Vigen M.
        • Kasko A.M.
        Effect of substrate stiffness on pulmonary fibroblast activation by TGF-beta.
        Acta Biomater. 2012; 8: 2602-2611
        • Brenmoehl J.
        • Miller S.N.
        • Hofmann C.
        • Vogl D.
        • Falk W.
        • Scholmerich J.
        • Rogler G.
        Transforming growth factor-beta 1 induces intestinal myofibroblast differentiation and modulates their migration.
        World J. Gastroenterol. 2009; 15: 1431-1442
        • Cutroneo K.R.
        • White S.L.
        • Phan S.H.
        • Ehrlich H.P.
        Therapies for bleomycin induced lung fibrosis through regulation of TGF-beta1 induced collagen gene expression.
        J. Cell. Physiol. 2007; 211: 585-589
        • Hu B.
        • Wu Z.
        • Phan S.H.
        Smad3 mediates transforming growth factor-beta-induced alpha-smooth muscle actin expression.
        Am. J. Respir. Cell Mol. Biol. 2003; 29: 397-404
        • Sampson N.
        • Berger P.
        • Zenzmaier C.
        Therapeutic targeting of redox signaling in myofibroblast differentiation and age-related fibrotic disease.
        Oxid. Med. Cell. Longev. 2012; 2012458276
        • Wen J.
        • Lin X.
        • Gao W.
        • Qu B.
        • Ling Y.
        • Liu R.
        • Yu M.
        MEK inhibition prevents TGFbeta1induced myofibroblast transdifferentiation in human tenon fibroblasts.
        Mol. Med. Rep. 2019; 19: 468-476
        • Bollong M.J.
        • Yang B.
        • Vergani N.
        • Beyer B.A.
        • Chin E.N.
        • Zambaldo C.
        • Wang D.
        • Chatterjee A.K.
        • Lairson L.L.
        • Schultz P.G.
        Small molecule-mediated inhibition of myofibroblast transdifferentiation for the treatment of fibrosis.
        Proc Natl Acad Sci U S A. 2017; 114: 4679-4684
        • Lopez-Guerrero A.M.
        • Pascual-Caro C.
        • Martin-Romero F.J.
        • Pozo-Guisado E.
        Store-operated calcium entry is dispensable for the activation of ERK1/2 pathway in prostate cancer cells.
        Cell. Signal. 2017; 40: 44-52
        • Shrishrimal S.
        • Kosmacek E.A.
        • Oberley-Deegan R.E.
        Reactive oxygen species drive epigenetic changes in radiation-induced fibrosis.
        Oxid. Med. Cell. Longev. 2019; 20194278658
        • Ronald R.
        The Nature of the Role of Calcium in Secretion, Calcium and the Secretory Process.
        Springer US, Boston, MA1974 (pp. XIII, 189)