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Translating tumor antigens into cancer vaccines
Luigi Buonaguro1, Annacarmen Petrizzo, Maria Lina Tornesello
1Laboratory of Molecular Biology and Viral Oncogenesis & AIDS Reference Center, Istituto Nazionale Tumori Fondazione G. Pascale, Via Mariano Semmola 1, 80131 Naples, Italy. irccsvir@unina.it
Abstract:
Vaccines represent a strategic successful tool used to prevent or contain diseases with high morbidity and/or mortality. However, while vaccines have proven to be effective in combating pathogenic microorganisms, based on the immune recognition of these foreign antigens, vaccines aimed at inducing effective antitumor activity are still unsatisfactory. Nevertheless, the effectiveness of the two licensed cancer-preventive vaccines targeting tumor-associated viral agents (anti-HBV [hepatitis B virus], to prevent HBV-associated hepatocellular carcinoma, and anti-HPV [human papillomavirus], to prevent HPV-associated cervical carcinoma), along with the recent FDA approval of sipuleucel-T (for the therapeutic treatment of prostate cancer), represents a significant advancement in the field of cancer vaccines and a boost for new studies in the field. Specific active immunotherapies based on anticancer vaccines represent, indeed, a field in continuous evolution and expansion. Significant improvements may result from the selection of the appropriate tumor-specific target antigen (to overcome the peripheral immune tolerance) and/or the development of immunization strategies effective at inducing a protective immune response. This review aims to describe the vast spectrum of tumor antigens and strategies to develop cancer vaccines.
Insights
Cancer vaccines show promise for preventing viral-associated cancers and treating prostate cancer. Future advancements depend on identifying tumor-specific antigens and effective immunization strategies for better antitumor responses.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- Vaccines are highly effective against infectious diseases by targeting foreign antigens.
- Current cancer vaccines are less satisfactory in inducing antitumor activity, despite successes in viral-preventive vaccines.
Purpose of the Study:
- To review the spectrum of tumor antigens.
- To discuss strategies for developing effective cancer vaccines.
Main Methods:
- Literature review of existing cancer vaccines and immunotherapies.
- Analysis of advancements in tumor antigen identification and immunization strategies.
Main Results:
- Licensed vaccines against hepatitis B virus (HBV) and human papillomavirus (HPV) prevent associated cancers.
- Sipuleucel-T, a therapeutic cancer vaccine, has been approved for prostate cancer treatment.
Conclusions:
- Cancer vaccines are an evolving field with significant potential.
- Optimizing cancer vaccines requires selecting appropriate tumor-specific antigens and developing robust immunization strategies to overcome immune tolerance and induce protective responses.
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