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PMID: 12794167 Published · ppublish English Journal Article

Irradiation of tumor cells up-regulates Fas and enhances CTL lytic activity and CTL adoptive immunotherapy.

Journal of immunology (Baltimore, Md. : 1950) ·Vol. 170 ·No. 12 ·2003-06-15 ·Pages 6338-47

Chakraborty M, Abrams SI, Camphausen K, Liu K, Scott T, Coleman CN, Hodge JW

Abstract

CD8(+) CTL play important roles against malignancy in both active and passive immunotherapy. Nonetheless, the success of antitumor CTL responses may be improved by additional therapeutic modalities. Radiotherapy, which has a long-standing use in treating neoplastic disease, has been found to induce unique biologic alterations in cancer cells affecting Fas gene expression, which, consequently, may influence the overall lytic efficiency of CTL. Here, in a mouse adenocarcinoma cell model, we examined whether exposure of these tumor cells to sublethal doses of irradiation 1) enhances Fas expression, leading to more efficient CTL killing via Fas-dependent mechanisms in vitro; and 2) improves antitumor activity in vivo by adoptive transfer of these Ag-specific CTL. Treatment of carcinoembryonic Ag-expressing MC38 adenocarcinoma cells with irradiation (20 Gy) in vitro enhanced Fas expression at molecular, phenotypic, and functional levels. Furthermore, irradiation sensitized these targets to Ag-specific CTL killing via the Fas/Fas ligand pathway. We examined the effect of localized irradiation of s.c. growing tumors on the efficiency of CTL adoptive immunotherapy. Irradiation caused up-regulation of Fas by these tumor cells in situ, based on immunohistochemistry. Moreover, localized irradiation of the tumor significantly potentiated tumor rejection by these carcinoembryonic Ag-specific CTL. Overall, these results showed for the first time that 1) regulation of the Fas pathway in tumor cells by irradiation plays an important role in their sensitization to Ag-specific CTL; and 2) a combination regimen of tumor-targeted irradiation and CTL promotes more effective antitumor responses in vivo, which may have implications for the combination of immunotherapy and radiation therapy.

MeSH Terms
Animals Antibodies, Blocking/pharmacology Antibodies, Monoclonal/pharmacology Apoptosis/immunology,radiation effects Cell Division/immunology,radiation effects Colonic Neoplasms/immunology,pathology,radiotherapy Cytotoxicity, Immunologic/radiation effects Dose-Response Relationship, Radiation Epitopes, T-Lymphocyte/immunology,radiation effects Fas Ligand Protein Female Humans Immunotherapy, Adoptive/methods Intercellular Adhesion Molecule-1/biosynthesis,radiation effects Ligands Membrane Glycoproteins/immunology Mice Mice, Inbred C57BL Mice, Transgenic Neoplasm Transplantation T-Lymphocytes, Cytotoxic/immunology,radiation effects,transplantation Time Factors Tumor Cells, Cultured/immunology,pathology,radiation effects,transplantation Up-Regulation/immunology,radiation effects fas Receptor/biosynthesis,physiology,radiation effects
Chemicals
Antibodies, Blocking Antibodies, Monoclonal Epitopes, T-Lymphocyte FASLG protein, human Fas Ligand Protein Fasl protein, mouse Ligands Membrane Glycoproteins fas Receptor Intercellular Adhesion Molecule-1
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Chakraborty Mala
Laboratory of Tumor Immunology and Biology and Radiation Oncology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Abrams Scott I
Camphausen Kevin
Liu Kebin
Scott Tamalee
Coleman C Norman
Hodge James W
Article Info
Journal
Journal of immunology (Baltimore, Md. : 1950)
Abbr.
J Immunol
ISSN
0022-1767
Published
2003-06-15
Pages
6338-47
Language
English
Region
United States
NLM ID
2985117R
Subset
IM
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