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Cancer treatment: the combination of vaccination with other therapies
Mads Hald Andersen1, Rikke Baek Sørensen, David Schrama
1Department of Hematology, Center for Cancer Immune Therapy (CCIT), Herlev University Hospital, 54P4, Herlev Ringvej 75, 2730 Herlev, Denmark.
Abstract:
Harnessing of the immune system by the development of 'therapeutic' vaccines, for the battle against cancer has been the focus of tremendous research efforts over the past two decades. As an illustration of the impressive amounts of data gathered over the past years, numerous antigens expressed on the surface of cancer cells, have been characterized. To this end, recent years research has focussed on characterization of antigens that play an important role for the growth and survival of cancer cells. Anti-apoptotic molecules like survivin that enhance the survival of cancer cells and facilitate their escape from cytotoxic therapies represent prime vaccination candidates. The characterization of a high number of tumor antigens allow the concurrent or serial immunological targeting of different proteins associated with such cancer traits. Moreover, while vaccination in itself is a promising new approach to fight cancer, the combination with additional therapy could create a number of synergistic effects. Herein we discuss the possibilities and prospects of vaccination when combined with other treatments. In this regard, cell death upon drug exposure may be immunogenic or non-immunogenic depending on the specific chemotherapeutics. Also, chemotherapy represents one of several options available for clearance of CD4+ Foxp3+ regulatory T cells. Moreover, therapies based on monoclonal antibodies may have synergistic potential in combination with vaccination, both when used for targeting of tumor cells and endothelial cells. The efficacy of therapeutic vaccination against cancer will over the next few years be studied in settings taking advantage of strategies in which vaccination is combined with other treatment modalities. These combinations should be based on current knowledge not only regarding the biology of the cancer cell per se, but also considering how treatment may influence the malignant cell population as well as the immune system.
Insights
Therapeutic cancer vaccines harness the immune system, targeting tumor antigens like survivin. Combining vaccination with chemotherapy or monoclonal antibodies may enhance treatment efficacy by improving tumor cell death and modulating immune responses.
Area of Science:
- Oncology
- Immunology
- Vaccinology
Background:
- Therapeutic cancer vaccines aim to stimulate an immune response against tumor cells.
- Characterization of tumor antigens, such as survivin, is crucial for vaccine development.
- Survivin is an anti-apoptotic molecule promoting cancer cell survival and therapy resistance.
Purpose of the Study:
- To explore the potential of therapeutic cancer vaccination strategies.
- To discuss the synergistic effects of combining vaccination with other cancer treatments.
- To highlight the importance of understanding treatment-induced immunogenic cell death and immune modulation.
Main Methods:
- Review of current research on therapeutic cancer vaccines and tumor antigens.
- Analysis of potential combination therapies, including chemotherapy and monoclonal antibodies.
- Discussion of immunogenic cell death and regulatory T cell modulation.
Main Results:
- Numerous tumor antigens have been identified, offering targets for vaccination.
- Combination therapies, including chemotherapy and monoclonal antibodies, show promise for synergistic effects.
- Chemotherapy can impact regulatory T cells, potentially enhancing vaccine efficacy.
Conclusions:
- Therapeutic vaccination is a promising approach to cancer treatment.
- Combining vaccination with other modalities, such as chemotherapy or monoclonal antibodies, may improve outcomes.
- Future research should focus on optimizing combination strategies based on cancer biology and immune system interactions.
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