^Lee HH, Farber JM (1996). „Localization of the gene for the human MIG cytokine on chromosome 4q21 adjacent to INP10 reveals a chemokine "mini-cluster"”. Cytogenet. Cell Genet. 74 (4): 255—8. PMID8976378. doi:10.1159/000134428.
^O'Donovan N, Galvin M, Morgan JG (1999). „Physical mapping of the CXC chemokine locus on human chromosome 4”. Cytogenet. Cell Genet. 84 (1-2): 39—42. PMID10343098. doi:10.1159/000015209.
^Weng, Y; Siciliano S J (1998). „Binding and functional properties of recombinant and endogenous CXCR3 chemokine receptors”. J. Biol. Chem. UNITED STATES. 273 (29): 18288—91. ISSN0021-9258. PMID9660793. doi:10.1074/jbc.273.29.18288.
Farber JM (1993). „HuMig: a new human member of the chemokine family of cytokines.”. Biochem. Biophys. Res. Commun. 192 (1): 223—30. PMID8476424. doi:10.1006/bbrc.1993.1403.
Lee HH, Farber JM (1997). „Localization of the gene for the human MIG cytokine on chromosome 4q21 adjacent to INP10 reveals a chemokine "mini-cluster".”. Cytogenet. Cell Genet. 74 (4): 255—8. PMID8976378. doi:10.1159/000134428.
Weng Y; Siciliano SJ; Waldburger KE (1998). „Binding and functional properties of recombinant and endogenous CXCR3 chemokine receptors.”. J. Biol. Chem. 273 (29): 18288—91. PMID9660793. doi:10.1074/jbc.273.29.18288.
Erdel M; Laich A; Utermann G (1998). „The human gene encoding SCYB9B, a putative novel CXC chemokine, maps to human chromosome 4q21 like the closely related genes for MIG (SCYB9) and INP10 (SCYB10).”. Cytogenet. Cell Genet. 81 (3-4): 271—2. PMID9730616. doi:10.1159/000015043.
Jenh CH; Cox MA; Kaminski H (1999). „Cutting edge: species specificity of the CC chemokine 6Ckine signaling through the CXC chemokine receptor CXCR3: human 6Ckine is not a ligand for the human or mouse CXCR3 receptors.”. J. Immunol. 162 (7): 3765—9. PMID10201891.
Rabin RL; Park MK; Liao F (1999). „Chemokine receptor responses on T cells are achieved through regulation of both receptor expression and signaling.”. J. Immunol. 162 (7): 3840—50. PMID10201901.
Shields PL; Morland CM; Salmon M (1999). „Chemokine and chemokine receptor interactions provide a mechanism for selective T cell recruitment to specific liver compartments within hepatitis C-infected liver.”. J. Immunol. 163 (11): 6236—43. PMID10570316.
Jinquan T; Jing C; Jacobi HH (2000). „CXCR3 expression and activation of eosinophils: role of IFN-gamma-inducible protein-10 and monokine induced by IFN-gamma.”. J. Immunol. 165 (3): 1548—56. PMID10903763.
Loetscher P; Pellegrino A; Gong JH (2001). „The ligands of CXC chemokine receptor 3, I-TAC, Mig, and IP10, are natural antagonists for CCR3.”. J. Biol. Chem. 276 (5): 2986—91. PMID11110785. doi:10.1074/jbc.M005652200.
Romagnani P; Annunziato F; Lazzeri E (2001). „Interferon-inducible protein 10, monokine induced by interferon gamma, and interferon-inducible T-cell alpha chemoattractant are produced by thymic epithelial cells and attract T-cell receptor (TCR) alphabeta+ CD8+ single-positive T cells, TCRgammadelta+ T cells, and natural killer-type cells in human thymus.”. Blood. 97 (3): 601—7. PMID11157474.
Lambeir AM; Proost P; Durinx C (2001). „Kinetic investigation of chemokine truncation by CD26/dipeptidyl peptidase IV reveals a striking selectivity within the chemokine family.”. J. Biol. Chem. 276 (32): 29839—45. PMID11390394. doi:10.1074/jbc.M103106200.
Campbell JD; Stinson MJ; Simons FE (2001). „In vivo stability of human chemokine and chemokine receptor expression.”. Hum. Immunol. 62 (7): 668—78. PMID11423172. doi:10.1016/S0198-8859(01)00260-9.