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Colon adenocarcinoma cells inhibit anti-CD3-activated killer cell induction
D W Hoskin1, T Reynolds, J Blay
1Department of Microbiology and Immunology, Dalhousie University, Halifax, Nova Scotia, Canada.
Abstract:
Adoptive immunotherapy with lymphokine-activated killer (LAK) cells has shown some promise in the treatment of certain cancers that are unresponsive to conventional treatment approaches. However, colon adenocarcinomas tend to respond poorly to LAK therapy, possibly as a result of tumor-induced immunosuppression. Recently, in vivo administration of anti-CD3 antibody has been shown to induce mouse T lymphocytes to mediate major-histocompatibility-complex(MHC)-unrestricted tumoricidal activity which is distinct from natural-killer-cell-derived LAK activity. It has therefore been suggested that anti-CD3 therapy may find application in tumor immunotherapy in humans. However, the effectiveness of anti-CD3-activated killer cell induction within the environment found in the vicinity of colon adenocarcinoma cells has not been evaluated. The present report demonstrates that colon cancer cells of human (HT-29) and mouse (MCA-38) origin markedly inhibit the generation of activated killer cells in murine spleen cell cultures. DNA synthesis and interleukin-2 production by spleen cells following stimulation with anti-CD3 antibody are also profoundly depressed in the presence of MCA-38 and HT-29 adenocarcinoma cells. MCA-38- and HT-29-mediated inhibition of activated killer cell development is exerted through the production of a tumor-associated soluble factor that is distinct from transforming growth factor beta or prostaglandins. Local immunosuppression associated with sites of tumor growth may therefore represent a major obstacle to successful anti-CD3 immunotherapy of certain colon adenocarcinomas.
Insights
Colon cancer cells suppress the development of anti-CD3-activated killer cells. This local immunosuppression may hinder anti-CD3 immunotherapy for colon adenocarcinomas.
Area of Science:
- Immunology
- Cancer Research
- Immunotherapy
Background:
- Adoptive immunotherapy using lymphokine-activated killer (LAK) cells shows promise for some cancers.
- Colon adenocarcinomas often respond poorly to LAK therapy, potentially due to tumor-induced immunosuppression.
- Anti-CD3 antibody therapy can induce T lymphocytes to mediate tumoricidal activity, distinct from LAK cells.
Purpose of the Study:
- To evaluate the effectiveness of anti-CD3-activated killer cell induction near colon adenocarcinoma cells.
- To investigate the impact of colon cancer cells on anti-CD3 therapy efficacy.
Main Methods:
- Co-culture of murine spleen cells with human (HT-29) and mouse (MCA-38) colon cancer cell lines.
- Assessment of activated killer cell generation following anti-CD3 antibody stimulation.
- Measurement of DNA synthesis and interleukin-2 production in spleen cells.
Main Results:
- Colon cancer cells (HT-29 and MCA-38) significantly inhibited the generation of anti-CD3-activated killer cells in murine spleen cell cultures.
- Spleen cell DNA synthesis and interleukin-2 production were profoundly depressed in the presence of these cancer cells.
- The inhibitory effect was mediated by a tumor-associated soluble factor, distinct from TGF-beta or prostaglandins.
Conclusions:
- Colon adenocarcinoma cells create a local immunosuppressive environment that impairs the development of anti-CD3-activated killer cells.
- This tumor-induced immunosuppression represents a significant barrier to successful anti-CD3 immunotherapy for colon adenocarcinomas.