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    Results: 1 to 20 of 1065

    1.

    Kinin B2 receptor regulates chemokines CCL2 and CCL5 expression and modulates leukocyte recruitment and pathology in experimental autoimmune encephalomyelitis (EAE) in mice.

    Dos Santos AC, Roffê E, Arantes RM, Juliano L, Pesquero JL, Pesquero JB, Bader M, Teixeira MM, Carvalho-Tavares J.

    J Neuroinflammation. 2008 Nov 5;5:49.PMID: 18986535 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    CCL2 and CCL5 mediate leukocyte adhesion in experimental autoimmune encephalomyelitis--an intravital microscopy study.

    dos Santos AC, Barsante MM, Arantes RM, Bernard CC, Teixeira MM, Carvalho-Tavares J.

    J Neuroimmunol. 2005 May;162(1-2):122-9.PMID: 15833367 [PubMed - indexed for MEDLINE]Related articles

    3.

    Diminished cytokine and chemokine expression in the central nervous system of GMF-deficient mice with experimental autoimmune encephalomyelitis.

    Zaheer A, Sahu SK, Wu Y, Zaheer A, Haas J, Lee K, Yang B.

    Brain Res. 2007 May 4;1144:239-47. Epub 2007 Jan 27.PMID: 17316572 [PubMed - indexed for MEDLINE]Related articlesFree article

    4.

    Effects of cytokine deficiency on chemokine expression in CNS of mice with EAE.

    Matejuk A, Dwyer J, Ito A, Bruender Z, Vandenbark AA, Offner H.

    J Neurosci Res. 2002 Mar 1;67(5):680-8.PMID: 11891780 [PubMed - indexed for MEDLINE]Related articles

    6.

    Modulation of experimental autoimmune encephalomyelitis: effect of altered peptide ligand on chemokine and chemokine receptor expression.

    Fischer FR, Santambrogio L, Luo Y, Berman MA, Hancock WW, Dorf ME.

    J Neuroimmunol. 2000 Oct 2;110(1-2):195-208.PMID: 11024550 [PubMed - indexed for MEDLINE]Related articles

    7.

    Resistance to experimental autoimmune encephalomyelitis in mice lacking the CC chemokine receptor (CCR)2.

    Izikson L, Klein RS, Charo IF, Weiner HL, Luster AD.

    J Exp Med. 2000 Oct 2;192(7):1075-80.PMID: 11015448 [PubMed - indexed for MEDLINE]Related articlesFree article

    9.

    The heat shock response reduces myelin oligodendrocyte glycoprotein-induced experimental autoimmune encephalomyelitis in mice.

    Heneka MT, Sharp A, Murphy P, Lyons JA, Dumitrescu L, Feinstein DL.

    J Neurochem. 2001 Apr;77(2):568-79.PMID: 11299319 [PubMed - indexed for MEDLINE]Related articles

    10.

    Severe disease, unaltered leukocyte migration, and reduced IFN-gamma production in CXCR3-/- mice with experimental autoimmune encephalomyelitis.

    Liu L, Huang D, Matsui M, He TT, Hu T, Demartino J, Lu B, Gerard C, Ransohoff RM.

    J Immunol. 2006 Apr 1;176(7):4399-409.PMID: 16547278 [PubMed - indexed for MEDLINE]Related articlesFree article

    11.

    Critical role of antigen-specific antibody in experimental autoimmune encephalomyelitis induced by recombinant myelin oligodendrocyte glycoprotein.

    Lyons JA, Ramsbottom MJ, Cross AH.

    Eur J Immunol. 2002 Jul;32(7):1905-13.PMID: 12115610 [PubMed - indexed for MEDLINE]Related articles

    12.

    IFN-inducible protein 10/CXC chemokine ligand 10-independent induction of experimental autoimmune encephalomyelitis.

    Klein RS, Izikson L, Means T, Gibson HD, Lin E, Sobel RA, Weiner HL, Luster AD.

    J Immunol. 2004 Jan 1;172(1):550-9.PMID: 14688366 [PubMed - indexed for MEDLINE]Related articlesFree article

    13.

    Treatment of experimental autoimmune encephalomyelitis with the chemokine receptor antagonist Met-RANTES.

    Matsui M, Weaver J, Proudfoot AE, Wujek JR, Wei T, Richer E, Trapp BD, Rao A, Ransohoff RM.

    J Neuroimmunol. 2002 Jul;128(1-2):16-22.PMID: 12098506 [PubMed - indexed for MEDLINE]Related articles

    14.

    Functional interleukin-17 receptor A is expressed in central nervous system glia and upregulated in experimental autoimmune encephalomyelitis.

    Das Sarma J, Ciric B, Marek R, Sadhukhan S, Caruso ML, Shafagh J, Fitzgerald DC, Shindler KS, Rostami A.

    J Neuroinflammation. 2009 Apr 28;6:14.PMID: 19400960 [PubMed - indexed for MEDLINE]Related articlesFree article

    15.

    Chemokine-like receptor-1 expression by central nervous system-infiltrating leukocytes and involvement in a model of autoimmune demyelinating disease.

    Graham KL, Zabel BA, Loghavi S, Zuniga LA, Ho PP, Sobel RA, Butcher EC.

    J Immunol. 2009 Nov 15;183(10):6717-23. Epub 2009 Oct 28.PMID: 19864606 [PubMed - indexed for MEDLINE]Related articles

    17.

    IL-12p35-deficient mice are susceptible to experimental autoimmune encephalomyelitis: evidence for redundancy in the IL-12 system in the induction of central nervous system autoimmune demyelination.

    Gran B, Zhang GX, Yu S, Li J, Chen XH, Ventura ES, Kamoun M, Rostami A.

    J Immunol. 2002 Dec 15;169(12):7104-10.PMID: 12471147 [PubMed - indexed for MEDLINE]Related articlesFree article

    18.

    Critical requirement of CD11b (Mac-1) on T cells and accessory cells for development of experimental autoimmune encephalomyelitis.

    Bullard DC, Hu X, Schoeb TR, Axtell RC, Raman C, Barnum SR.

    J Immunol. 2005 Nov 15;175(10):6327-33.PMID: 16272284 [PubMed - indexed for MEDLINE]Related articlesFree article

    19.

    IFN-gamma regulates murine interferon-inducible T cell alpha chemokine (I-TAC) expression in dendritic cell lines and during experimental autoimmune encephalomyelitis (EAE).

    Hamilton NH, Banyer JL, Hapel AJ, Mahalingam S, Ramsay AJ, Ramshaw IA, Thomson SA.

    Scand J Immunol. 2002 Feb;55(2):171-7.PMID: 11896933 [PubMed - indexed for MEDLINE]Related articles

    20.

    Leukocyte recruitment during onset of experimental allergic encephalomyelitis is CCR1 dependent.

    Rottman JB, Slavin AJ, Silva R, Weiner HL, Gerard CG, Hancock WW.

    Eur J Immunol. 2000 Aug;30(8):2372-7.PMID: 10940928 [PubMed - indexed for MEDLINE]Related articles

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