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Updated: Jul 10, 2026

Isolation and Expansion of Cytotoxic Cytokine-induced Killer T Cells for Cancer Treatment
Published on: January 24, 2020
Cancer therapy with local oncolysis and topical cytokine secretion
Masatoshi Tagawa1, Kiyoko Kawamura, Taro Ueyama
1Division of Pathology, Chiba Cancer Center Research Institute, 666-2 Nitona, Chuo-ku, Chiba 260-8717 Japan. mtagawa@chiba-cc.jp
Abstract:
Direct destruction of targeted tumors and subsequent induction of systemic immunity is not pertinent to gene therapy but gene therapy is probably the most suitable therapeutic modality to achieve the local and systemic anti-tumor effects. Current strategies for cancer gene therapy in fact consist of direct inhibition of tumor growth and activation of systemic host defense mechanisms. We have been working on development of oncolytic adenoviruses and cytokine-mediated activation of host immune systems to produce better therapeutic effects. The adenoviruses in which the E1A expression is controlled by an exogenous regulatory region are preferentially cytotoxic to target tumor cells depending on the specificity of the regulatory region and cytokines that differentiate naive T cells into T helper type 1 cells can amplify immune responses generated. Combination of the two strategies has an advantage. Tumor destruction by oncolytic viruses does not impair immune systems in contract to chemotherapy and radiotherapy but enable to produce anti-tumor responses against putative tumor antigens that are subsequently released from the destroyed tumor. In this process, dendritic cells play a pivotal role since they act as professional antigen presenting cells and are involved in an initial phase of immune responses, either activation of immunity or induction of immune tolerance. Antigen loading with subsequent appropriate activation of dendritic cells is thereby crucial for activated anti-tumor responses, which possibly eliminate even distant metastatic foci. Combinatory gene therapy with oncolytic viruses and activation of host immune system thereby can evoke immune responses against all the tumor antigens expressed by the process of "antigen-spreading" mechanisms.
Insights
Gene therapy using oncolytic adenoviruses and immune system activation offers a dual approach to cancer treatment. This combination destroys tumors locally and stimulates a systemic immune response for broader anti-tumor effects.
Area of Science:
- Oncology
- Immunology
- Gene Therapy
Background:
- Current cancer gene therapy strategies focus on direct tumor inhibition and immune system activation.
- Oncolytic adenoviruses and cytokine-mediated immune activation are being developed for enhanced therapeutic effects.
Purpose of the Study:
- To investigate the combined efficacy of oncolytic adenoviruses and host immune system activation for cancer treatment.
- To explore how this combination can achieve both local tumor destruction and systemic anti-tumor immunity.
Main Methods:
- Development of oncolytic adenoviruses with E1A expression controlled by exogenous regulatory regions for targeted tumor cell cytotoxicity.
- Utilizing cytokines to differentiate naive T cells into T helper type 1 cells to amplify immune responses.
- Combining oncolytic virotherapy with immune system activation strategies.
Main Results:
- Oncolytic adenoviruses selectively kill tumor cells based on regulatory region specificity.
- Cytokines promote T helper type 1 cell differentiation, enhancing immune responses.
- Combination therapy leverages tumor destruction to release antigens, activating dendritic cells and promoting systemic anti-tumor immunity through antigen spreading.
Conclusions:
- Combining oncolytic adenoviruses with immune system activation provides a synergistic approach to cancer gene therapy.
- This combinatory strategy enhances local tumor destruction and induces systemic anti-tumor immunity, potentially eliminating distant metastases.
- Dendritic cell activation is crucial for translating tumor antigen release into effective, widespread anti-tumor responses.
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