High concentrations of ELR-containing chemokines (IL-8, gro-a) in patient samples have been associated with poor outcome of both inflammatory diseases and cancers. In animal models blockade of IL-8 was protective in acute inflammation and inhibited angiogenesis and the growth and metastasis of certain tumors. Cell migration is the theme that is common to all the IL-8 receptor mediated events, which result in such varied in vivo responses. Neutrophil chemotaxis in acute inflammation is mostly mediated by the IL-8 receptor type I (CXCR1), but the physiological role of the CXCR2 and the role of IL-8 receptors on adherent cells remain poorly defined. Both the CXCR1 and the CXCR2 are expressed on various cancer cells and as shown here on endothelial cells, where their function is far from clear. The migratory and growth promoting role of IL-8 receptors on endothelial and on cancer cells will be assessed in this grant both in vitro and in vivo with emphasis on the in vivo situation. In vitro the signal transduction cascade that leads from receptor stimulation to cytoskeletal responses will be addressed, since cytoskeletal changes are the prerequisite for the migratory responses induced by IL-8. Following this the role of the CXCR1 and CXCR2 on microvascular endothelial cells will be assessed in cell migration assays and in neutrophil/endothelial cell interaction experiments. Finally, following up on our recent observation that the CXCR2 expressed in NIH 3T3 cells causes tumors in nude mice the role of the CXCR2 in tumorigenesis and metastasis will be examined and sought to be prevented with antibody inhibition.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL055657-09
Application #
6751880
Study Section
Lung Biology and Pathology Study Section (LBPA)
Program Officer
Harabin, Andrea L
Project Start
1996-07-01
Project End
2006-02-28
Budget Start
2004-03-01
Budget End
2006-02-28
Support Year
9
Fiscal Year
2004
Total Cost
$362,775
Indirect Cost
Name
La Jolla Institute
Department
Type
DUNS #
941462285
City
San Diego
State
CA
Country
United States
Zip Code
92121
Wimmer, Antonia; Khaldoyanidi, Sophia K; Judex, Martin et al. (2006) CCL18/PARC stimulates hematopoiesis in long-term bone marrow cultures indirectly through its effect on monocytes. Blood 108:3722-9
DiScipio, Richard G; Schraufstatter, Ingrid U; Sikora, Lyudmila et al. (2006) C5a mediates secretion and activation of matrix metalloproteinase 9 from human eosinophils and neutrophils. Int Immunopharmacol 6:1109-18
Zhao, Ming; Discipio, Richard G; Wimmer, Antonia G et al. (2006) Regulation of CXCR4-mediated nuclear translocation of extracellular signal-related kinases 1 and 2. Mol Pharmacol 69:66-75
Burger, Meike; Hartmann, Tanja; Burger, Jan A et al. (2005) KSHV-GPCR and CXCR2 transforming capacity and angiogenic responses are mediated through a JAK2-STAT3-dependent pathway. Oncogene 24:2067-75
Liu-Bryan, Ru; Pay, Salih; Schraufstatter, Ingrid U et al. (2005) The CXCR1 tail mediates beta1 integrin-dependent cell migration via MAP kinase signaling. Biochem Biophys Res Commun 332:117-25
Schraufstatter, Ingrid; Takamori, Hiroshi; Sikora, Lyudmila et al. (2004) Eosinophils and monocytes produce pulmonary and activation-regulated chemokine, which activates cultured monocytes/macrophages. Am J Physiol Lung Cell Mol Physiol 286:L494-501
Zhao, Ming; Wimmer, Antonia; Trieu, Khanh et al. (2004) Arrestin regulates MAPK activation and prevents NADPH oxidase-dependent death of cells expressing CXCR2. J Biol Chem 279:49259-67
Schraufstatter, Ingrid U; Trieu, Khanh; Zhao, Ming et al. (2003) IL-8-mediated cell migration in endothelial cells depends on cathepsin B activity and transactivation of the epidermal growth factor receptor. J Immunol 171:6714-22
Schraufstatter, Ingrid U; Trieu, Khanh; Sikora, Lyudmila et al. (2002) Complement c3a and c5a induce different signal transduction cascades in endothelial cells. J Immunol 169:2102-10
Schraufstatter, I U; Chung, J; Burger, M (2001) IL-8 activates endothelial cell CXCR1 and CXCR2 through Rho and Rac signaling pathways. Am J Physiol Lung Cell Mol Physiol 280:L1094-103

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