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1311 related items for PubMed ID: 19168435

  • 1. CXCL10 inhibits viral replication through recruitment of natural killer cells in coxsackievirus B3-induced myocarditis.
    Yuan J, Liu Z, Lim T, Zhang H, He J, Walker E, Shier C, Wang Y, Su Y, Sall A, McManus B, Yang D.
    Circ Res; 2009 Mar 13; 104(5):628-38. PubMed ID: 19168435
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  • 3. Persistent expression of cytokines in the chronic stage of CVB3-induced myocarditis in NMRI mice.
    Glück B, Schmidtke M, Merkle I, Stelzner A, Gemsa D.
    J Mol Cell Cardiol; 2001 Sep 13; 33(9):1615-26. PubMed ID: 11549341
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  • 4. Pancreatic expression of interferon-gamma protects mice from lethal coxsackievirus B3 infection and subsequent myocarditis.
    Horwitz MS, La Cava A, Fine C, Rodriguez E, Ilic A, Sarvetnick N.
    Nat Med; 2000 Jun 13; 6(6):693-7. PubMed ID: 10835688
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  • 5. Adiponectin promotes coxsackievirus B3 myocarditis by suppression of acute anti-viral immune responses.
    Jenke A, Holzhauser L, Löbel M, Savvatis K, Wilk S, Weithäuser A, Pinkert S, Tschöpe C, Klingel K, Poller W, Scheibenbogen C, Schultheiss HP, Skurk C.
    Basic Res Cardiol; 2014 May 13; 109(3):408. PubMed ID: 24691762
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  • 6. Blocking the CD40-CD40L interaction by CD40-Ig reduces disease progress in murine myocarditis induced by CVB3.
    Bo H, Zhenhu L, Lijian Z.
    Cardiovasc Pathol; 2010 May 13; 19(6):371-6. PubMed ID: 19914091
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  • 7. Expression of intercellular adhesion molecule-1 in murine hearts with acute myocarditis caused by coxsackievirus B3.
    Seko Y, Matsuda H, Kato K, Hashimoto Y, Yagita H, Okumura K, Yazaki Y.
    J Clin Invest; 1993 Apr 13; 91(4):1327-36. PubMed ID: 8097205
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  • 9. Coxsackievirus B3 infection promotes generation of myeloid dendritic cells from bone marrow and accumulation in the myocardium.
    Chen P, Chen R, Yang Y, Yu Y, Xie Y, Zou Y, Ge J, Chen H.
    Int Immunopharmacol; 2009 Oct 13; 9(11):1304-12. PubMed ID: 19664723
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  • 11. The adapter protein c-Cbl-associated protein (CAP) protects from acute CVB3-mediated myocarditis through stabilization of type I interferon production and reduced cytotoxicity.
    Valaperti A, Nishii M, Liu Y, Yang H, Naito K, Liu PP, Eriksson U.
    Basic Res Cardiol; 2014 May 13; 109(3):411. PubMed ID: 24763933
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  • 13. Differential roles for CXCR3 in CD4+ and CD8+ T cell trafficking following viral infection of the CNS.
    Stiles LN, Hosking MP, Edwards RA, Strieter RM, Lane TE.
    Eur J Immunol; 2006 Mar 13; 36(3):613-22. PubMed ID: 16479546
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  • 14. Remission of CVB3-induced viral myocarditis by in vivo Th2 polarization via hydrodynamics-based interleukin-4 gene transfer.
    Jiang Z, Xu W, Li K, Yue Y, Xu L, Ye F, Xiong S.
    J Gene Med; 2008 Aug 13; 10(8):918-29. PubMed ID: 18512734
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  • 16. The viral genetic background determines the outcome of coxsackievirus B3 infection in outbred NMRI mice.
    Schmidtke M, Merkle I, Klingel K, Hammerschmidt E, Zautner AE, Wutzler P.
    J Med Virol; 2007 Sep 13; 79(9):1334-42. PubMed ID: 17607777
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  • 17. Myeloid differentiation factor-88 plays a crucial role in the pathogenesis of Coxsackievirus B3-induced myocarditis and influences type I interferon production.
    Fuse K, Chan G, Liu Y, Gudgeon P, Husain M, Chen M, Yeh WC, Akira S, Liu PP.
    Circulation; 2005 Oct 11; 112(15):2276-85. PubMed ID: 16216974
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  • 18. The role of CD8+ T lymphocytes in coxsackievirus B3-induced myocarditis.
    Henke A, Huber S, Stelzner A, Whitton JL.
    J Virol; 1995 Nov 11; 69(11):6720-8. PubMed ID: 7474082
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  • 20. Osteopontin: a fibrosis-related marker molecule in cardiac remodeling of enterovirus myocarditis in the susceptible host.
    Szalay G, Sauter M, Haberland M, Zuegel U, Steinmeyer A, Kandolf R, Klingel K.
    Circ Res; 2009 Apr 10; 104(7):851-9. PubMed ID: 19246678
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