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Methods for improving the immunogenicity and efficacy of cancer vaccines
Lorenzo Pilla1, Soldano Ferrone2, Cristina Maccalli3
1a Medical Oncology Unit , San Gerardo Hospital , Monza , Italy.
Introduction:
Cancer vaccines represent one of the oldest immunotherapy strategies. A variety of tumor-associated antigens have been exploited to investigate their immunogenicity as well as multiple strategies for vaccine administration. These efforts have led to the development of several clinical trials in tumors with different histological origins to test the clinical efficacy of cancer vaccines. However, suboptimal clinical results have been reported mainly due to the lack of optimized strategies to induce strong and sustained systemic tumor antigen-specific immune responses.
Areas Covered:
We provide an overview of different types of cancer vaccines that have been developed and used in the context of clinical studies. Moreover, we review different preclinical and clinical strategies pursued to enhance the immunogenicity, stability, and targeting at tumor site of cancer vaccines.
Expert Opinion:
Additional and appropriate preclinical studies are warranted to optimize the immunogenicity and delivery of cancer vaccines. The appropriate choice of target antigens is challenging; however, the exploitation of neoantigens generated from somatic mutations of tumor cells represents a promising approach to target highly immunogenic tumor-specific antigens. Remarkably, the investigation of the combination of cancer vaccines with immunomodulating agents able to skew the tumor microenvironment from immunosuppressive to immunostimulating will dramatically improve their clinical efficacy.
Insights
Cancer vaccines are a long-standing immunotherapy. Enhancing immune responses and combining vaccines with immunomodulators show promise for improving cancer vaccine efficacy.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- Cancer vaccines are a foundational immunotherapy strategy.
- Extensive research has explored tumor antigens and vaccine delivery methods.
- Clinical trials have tested cancer vaccines across various tumor types, but results are often suboptimal.
Purpose of the Study:
- To review existing cancer vaccine types used in clinical studies.
- To examine strategies for improving vaccine immunogenicity, stability, and tumor targeting.
- To highlight future directions for optimizing cancer vaccine therapy.
Main Methods:
- Literature review of preclinical and clinical cancer vaccine studies.
- Analysis of strategies to enhance immune responses against tumors.
- Evaluation of novel antigen selection and combination therapies.
Main Results:
- Various cancer vaccine platforms have been developed and tested clinically.
- Strategies to boost immunogenicity and tumor targeting are under investigation.
- Suboptimal clinical outcomes are often linked to insufficient systemic anti-tumor immunity.
Conclusions:
- Further preclinical research is needed to optimize cancer vaccine immunogenicity and delivery.
- Neoantigens from somatic mutations offer a promising avenue for targeting tumor-specific antigens.
- Combining cancer vaccines with immunomodulatory agents can significantly enhance clinical efficacy by altering the tumor microenvironment.
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