Trial Watch: Peptide vaccines in cancer therapy
Fernando Aranda1, Erika Vacchelli1, Alexander Eggermont2
1Gustave Roussy; Villejuif, France ; INSERM, U848; Villejuif, France ; Université Paris-Sud/Paris XI; Le Kremlin-Bicêtre, France ; Equipe 11 labellisée par la Lique Nationale contre le Cancer; Centre de Recherche des Cordeliers; Paris, France.
Abstract:
Throughout the past 3 decades, along with the recognition that the immune system not only influences oncogenesis and tumor progression, but also determines how established neoplastic lesions respond therapy, renovated enthusiasm has gathered around the possibility of using vaccines as anticancer agents. Such an enthusiasm quickly tempered when it became clear that anticancer vaccines would have to be devised as therapeutic, rather than prophylactic, measures, and that malignant cells often fail to elicit (or actively suppress) innate and adaptive immune responses. Nonetheless, accumulating evidence indicates that a variety of anticancer vaccines, including cell-based, DNA-based, and purified component-based preparations, are capable of circumventing the poorly immunogenic and highly immunosuppressive nature of most tumors and elicit (at least under some circumstances) therapeutically relevant immune responses. Great efforts are currently being devoted to the identification of strategies that may provide anticancer vaccines with the capacity of breaking immunological tolerance and eliciting tumor-associated antigen-specific immunity in a majority of patients. In this sense, promising results have been obtained by combining anticancer vaccines with a relatively varied panels of adjuvants, including multiple immunostimulatory cytokines, Toll-like receptor agonists as well as inhibitors of immune checkpoints. One year ago, in the December issue of OncoImmunology, we discussed the biological mechanisms that underlie the antineoplastic effects of peptide-based vaccines and presented an abundant literature demonstrating the prominent clinical potential of such an approach. Here, we review the latest developments in this exciting area of research, focusing on high-profile studies that have been published during the last 13 mo and clinical trials launched in the same period to evaluate purified peptides or full-length proteins as therapeutic anticancer agents.
Insights
Anticancer vaccines, including peptide-based options, are being developed to overcome tumor-induced immune suppression. Recent advancements focus on strategies to enhance immune responses against cancer.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- The immune system plays a crucial role in cancer development and response to therapy.
- Anticancer vaccines are being investigated as therapeutic agents, shifting from prophylactic approaches.
- Tumors often evade immune detection through poor immunogenicity and active suppression of immune responses.
Approach:
- Reviewing recent advancements in therapeutic anticancer vaccines, focusing on purified peptides and proteins.
- Highlighting strategies to overcome tumor-induced immune tolerance and suppression.
- Examining the combination of anticancer vaccines with adjuvants like cytokines and immune checkpoint inhibitors.
Key Points:
- Various anticancer vaccine types (cell-based, DNA-based, purified components) show potential in eliciting therapeutic immune responses.
- Strategies to break immunological tolerance and induce tumor-associated antigen-specific immunity are under active investigation.
- Combining vaccines with immunostimulatory adjuvants and immune checkpoint inhibitors shows promising results.
Conclusions:
- Therapeutic anticancer vaccines, particularly peptide-based ones, demonstrate significant clinical potential.
- Ongoing research focuses on optimizing vaccine strategies to enhance efficacy in a broader patient population.
- Recent studies and clinical trials are evaluating purified peptides and proteins as novel anticancer agents.
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