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Published on: September 30, 2016
Epigenetic modulation to enable antigen-specific T-cell therapy of colorectal cancer
Jeffrey Chou1, Lilien N Voong, Christie L Mortales
1Program in Immunology, Fred Hutchinson Cancer Research Center, Clinical Research Division, Seattle, WA 98109-1024, USA. jchou@fhcrc.org
Abstract:
Development of specific immunotherapy for colorectal cancer (CRC) will require identification of antigens selectively or exclusively expressed on CRC cells and strategies to induce and enhance immune responses against these antigenic targets. Cancer-testis (C-T) antigens are proving to be excellent targets for immunotherapy of solid tumors such as melanoma, but their clinical utility for treatment of CRC has to date been limited by their infrequent expression in CRC cells. Here we report that the hypomethylating agent 5-aza-2'-deoxycytidine (DAC) induces expression of NY-ESO-1 and other C-T genes in CRC cells both in vitro and in vivo in a dose-dependent manner but has negligible effects on the expression of C-T genes in normal nontransformed cells such as fibroblasts. The induction by DAC of NY-ESO-1 expression in CRC cells persists over 100 days after DAC exposure and is associated with increased levels of NY-ESO-1 protein. CRC cells exposed to DAC at concentrations that can be readily achieved in vivo are rendered susceptible to major histocompatibility complex-restricted recognition by CD8 NY-ESO-1-specific T cells. We also demonstrate that retroviral transduction of polyclonal peripheral blood T cells from a metastatic CRC patient with the T-cell receptor α-chain and β-chain genes encoding a human leukocyte antigen-A2-restricted, NY-ESO-1157-165-specific T-cell receptor can be used to generate both CD8 and CD4 NY-ESO-1157-165-specific T cells that selectively recognize DAC-treated CRC but not nontransformed cells. Collectively, these results suggest that the combination of epigenetic modulation and adoptive transfer of genetically engineered T lymphocytes may enable specific immunotherapy for CRC.
Insights
Epigenetic drug 5-aza-2'-deoxycytidine (DAC) can reawaken cancer-testis antigens in colorectal cancer (CRC) cells, making them visible to T cells. This, combined with engineered T cells, shows promise for CRC immunotherapy.
Area of Science:
- Oncology
- Immunology
- Epigenetics
Background:
- Specific immunotherapy for colorectal cancer (CRC) requires identifying tumor-specific antigens and enhancing immune responses.
- Cancer-testis (C-T) antigens are potential targets, but their limited expression in CRC hinders clinical utility.
Purpose of the Study:
- To investigate if 5-aza-2 -deoxycytidine (DAC) can induce C-T antigen expression in CRC cells for immunotherapy.
- To assess the susceptibility of DAC-treated CRC cells to T cell-mediated recognition.
- To evaluate the combination of epigenetic modulation and adoptive T cell transfer for CRC treatment.
Main Methods:
- Treatment of CRC cells with DAC in vitro and in vivo.
- Analysis of C-T gene expression (e.g., NY-ESO-1) and protein levels.
- Generation of NY-ESO-1-specific T cells via retroviral transduction.
- Assessment of T cell recognition of DAC-treated CRC cells.
Main Results:
- DAC dose-dependently induced NY-ESO-1 and other C-T gene expression in CRC cells, with minimal effect on normal cells.
- Induced expression persisted for over 100 days, increasing NY-ESO-1 protein levels.
- DAC-treated CRC cells became susceptible to recognition by NY-ESO-1-specific CD8 T cells.
- Engineered T cells recognized DAC-treated CRC cells but not normal cells.
Conclusions:
- Epigenetic modulation with DAC can overcome limited C-T antigen expression in CRC.
- Combining DAC with adoptive T cell transfer offers a potential strategy for specific CRC immunotherapy.
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