Tumor development elicits responses from both the innate and adaptive arms of the immune system that could be beneficial to eradicate tumors. In turn, progressive tumor growth in humans and laboratory animals is frequently accompanied by a concomitant immunosuppression regardless of tumor location or etiology. The elements responsible for this downregulation of the immune responses are not clearly understood, however, current technology has allowed new insights into the mechanisms underlying these alterations. We propose to continue our studies using our well-characterized murine mammary tumor model to further elucidate the interactions between the growing neoplasms and the immune effector cells. Based on our previous findings we plan: (1) to evaluate the possible contributions of vascular endothelial growth factor (VEGF) and other tumor derived factors as well as the interactions between thymocytes and thymic microenvironment in the thymic involution of mammary tumor bearers; (2) to additionally analyze the mechanisms of disregulation of tumor bearers' macrophage functions and to delineate the effects of tumor development on Toll-like receptor 4 (TLR4) expression and its signaling pathway; (3) to further analyze the molecular bases leading to the overexpression of matrix metalloproteinase-9 (MMP-9) on T cells from tumor bearers and the possible role of this molecule in lymphocyte and tumor cell migration; (4) to extend our investigations into the tumor cell characteristics and immune effector cells involved in the lack of growth of DA-3/sec cells in vivo and the protective effects they confer against the growth of other tumors. An understanding of the cellular and molecular mechanisms responsible for the host-tumor interactions and the tumor-induced immunological alterations will help develop novel immunotherapeutic interventions.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA025583-29
Application #
7241493
Study Section
Transplantation, Tolerance, and Tumor Immunology (TTT)
Program Officer
Howcroft, Thomas K
Project Start
1996-02-01
Project End
2009-06-30
Budget Start
2007-07-01
Budget End
2009-06-30
Support Year
29
Fiscal Year
2007
Total Cost
$290,891
Indirect Cost
Name
University of Miami School of Medicine
Department
Microbiology/Immun/Virology
Type
Schools of Medicine
DUNS #
052780918
City
Coral Gables
State
FL
Country
United States
Zip Code
33146
Ilkovitch, Dan; Carrio, Roberto; Lopez, Diana M (2012) uPA and uPA-receptor are involved in cancer-associated myeloid-derived suppressor cell accumulation. Anticancer Res 32:4263-70
Carrio, Roberto; Torroella-Kouri, Marta; Iragavarapu-Charyulu, Vijaya et al. (2011) Tumor-induced thymic atrophy: alteration in interferons and Jak/Stats signaling pathways. Int J Oncol 38:547-53
Carrio, Roberto; Torroella-Kouri, Marta; Libreros, Stephania et al. (2011) Decreased accumulation of immune regulatory cells is correlated to the antitumor effect of IFN-ýý overexpression in the tumor. Int J Oncol 39:1619-27
Carrio, Roberto; Altman, Norman H; Lopez, Diana M (2009) Downregulation of interleukin-7 and hepatocyte growth factor in the thymic microenvironment is associated with thymus involution in tumor-bearing mice. Cancer Immunol Immunother 58:2059-72
Torroella-Kouri, Marta; Silvera, Risset; Rodriguez, Dayron et al. (2009) Identification of a subpopulation of macrophages in mammary tumor-bearing mice that are neither M1 nor M2 and are less differentiated. Cancer Res 69:4800-9
Carrio, Roberto; Lopez, Diana M (2009) Impaired thymopoiesis occurring during the thymic involution of tumor-bearing mice is associated with a down-regulation of the antiapoptotic proteins Bcl-XL and A1. Int J Mol Med 23:89-98
Ilkovitch, Dan; Lopez, Diana M (2009) Urokinase-mediated recruitment of myeloid-derived suppressor cells and their suppressive mechanisms are blocked by MUC1/sec. Blood 113:4729-39
Ilkovitch, Dan; Lopez, Diana M (2009) The liver is a site for tumor-induced myeloid-derived suppressor cell accumulation and immunosuppression. Cancer Res 69:5514-21
Handel-Fernandez, Mary Ellen; Ilkovitch, Dan; Iragavarapu-Charyulu, Vijaya et al. (2009) Decreased levels of both Stat1 and Stat3 in T lymphocytes from mice bearing mammary tumors. Anticancer Res 29:2051-8
Calderon, Cesar L; Torroella-Kouri, Marta; Dinapoli, Michael R et al. (2008) Involvement of protein kinase C and not of NF kappa B in the modulation of macrophage nitric oxide synthase by tumor-derived phosphatidyl serine. Int J Oncol 32:713-21

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