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Items: 1 to 20 of 299

1.
2.

Critical role for CXCR3 chemokine biology in the pathogenesis of bronchiolitis obliterans syndrome.

Belperio JA, Keane MP, Burdick MD, Lynch JP 3rd, Xue YY, Li K, Ross DJ, Strieter RM.

J Immunol. 2002 Jul 15;169(2):1037-49.

3.

Blockade of CXCR3 receptor:ligand interactions reduces leukocyte recruitment to the lung and the severity of experimental idiopathic pneumonia syndrome.

Hildebrandt GC, Corrion LA, Olkiewicz KM, Lu B, Lowler K, Duffner UA, Moore BB, Kuziel WA, Liu C, Cooke KR.

J Immunol. 2004 Aug 1;173(3):2050-9.

4.

Cross reactivity of three T cell attracting murine chemokines stimulating the CXC chemokine receptor CXCR3 and their induction in cultured cells and during allograft rejection.

Meyer M, Hensbergen PJ, van der Raaij-Helmer EM, Brandacher G, Margreiter R, Heufler C, Koch F, Narumi S, Werner ER, Colvin R, Luster AD, Tensen CP, Werner-Felmayer G.

Eur J Immunol. 2001 Aug;31(8):2521-7.

5.

CXCR3 and its ligands in a murine model of obliterative bronchiolitis: regulation and function.

Medoff BD, Wain JC, Seung E, Jackobek R, Means TK, Ginns LC, Farber JM, Luster AD.

J Immunol. 2006 Jun 1;176(11):7087-95.

6.
7.

Expression of rat I-TAC/CXCL11/SCYA11 during central nervous system inflammation: comparison with other CXCR3 ligands.

McColl SR, Mahalingam S, Staykova M, Tylaska LA, Fisher KE, Strick CA, Gladue RP, Neote KS, Willenborg DO.

Lab Invest. 2004 Nov;84(11):1418-29.

8.
9.

Chemokine expression during the development and resolution of a pulmonary leukocyte response to influenza A virus infection in mice.

Wareing MD, Lyon AB, Lu B, Gerard C, Sarawar SR.

J Leukoc Biol. 2004 Oct;76(4):886-95. Epub 2004 Jul 7.

11.

CXCR3 expression and activation of eosinophils: role of IFN-gamma-inducible protein-10 and monokine induced by IFN-gamma.

Jinquan T, Jing C, Jacobi HH, Reimert CM, Millner A, Quan S, Hansen JB, Dissing S, Malling HJ, Skov PS, Poulsen LK.

J Immunol. 2000 Aug 1;165(3):1548-56.

12.

Heparin displaces interferon-gamma-inducible chemokines (IP-10, I-TAC, and Mig) sequestered in the vasculature and inhibits the transendothelial migration and arterial recruitment of T cells.

Ranjbaran H, Wang Y, Manes TD, Yakimov AO, Akhtar S, Kluger MS, Pober JS, Tellides G.

Circulation. 2006 Sep 19;114(12):1293-300. Epub 2006 Aug 28.

14.

Role of CXCL9/CXCR3 chemokine biology during pathogenesis of acute lung allograft rejection.

Belperio JA, Keane MP, Burdick MD, Lynch JP 3rd, Zisman DA, Xue YY, Li K, Ardehali A, Ross DJ, Strieter RM.

J Immunol. 2003 Nov 1;171(9):4844-52.

15.

Effects of CXCR3 signaling on development of fatal encephalitis and corneal and periocular skin disease in HSV-infected mice are mouse-strain dependent.

Lundberg P, Openshaw H, Wang M, Yang HJ, Cantin E.

Invest Ophthalmol Vis Sci. 2007 Sep;48(9):4162-70.

PMID:
17724202
16.

Chemokine monokine induced by IFN-gamma/CXC chemokine ligand 9 stimulates T lymphocyte proliferation and effector cytokine production.

Whiting D, Hsieh G, Yun JJ, Banerji A, Yao W, Fishbein MC, Belperio J, Strieter RM, Bonavida B, Ardehali A.

J Immunol. 2004 Jun 15;172(12):7417-24.

17.

Amino-terminal truncation of CXCR3 agonists impairs receptor signaling and lymphocyte chemotaxis, while preserving antiangiogenic properties.

Proost P, Schutyser E, Menten P, Struyf S, Wuyts A, Opdenakker G, Detheux M, Parmentier M, Durinx C, Lambeir AM, Neyts J, Liekens S, Maudgal PC, Billiau A, Van Damme J.

Blood. 2001 Dec 15;98(13):3554-61.

18.

Both CXCR3 and CXCL10/IFN-inducible protein 10 are required for resistance to primary infection by dengue virus.

Hsieh MF, Lai SL, Chen JP, Sung JM, Lin YL, Wu-Hsieh BA, Gerard C, Luster A, Liao F.

J Immunol. 2006 Aug 1;177(3):1855-63.

19.

The CXC chemokine murine monokine induced by IFN-gamma (CXC chemokine ligand 9) is made by APCs, targets lymphocytes including activated B cells, and supports antibody responses to a bacterial pathogen in vivo.

Park MK, Amichay D, Love P, Wick E, Liao F, Grinberg A, Rabin RL, Zhang HH, Gebeyehu S, Wright TM, Iwasaki A, Weng Y, DeMartino JA, Elkins KL, Farber JM.

J Immunol. 2002 Aug 1;169(3):1433-43.

20.

Bacterial clearance and survival are dependent on CXC chemokine receptor-2 ligands in a murine model of pulmonary Nocardia asteroides infection.

Moore TA, Newstead MW, Strieter RM, Mehrad B, Beaman BL, Standiford TJ.

J Immunol. 2000 Jan 15;164(2):908-15.

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