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Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Cancer immunotherapy using novel tumor-associated antigenic peptides identified by genome-wide cDNA microarray
Yasuharu Nishimura1, Yusuke Tomita1,2, Akira Yuno1,3
1Department of Immunogenetics, Graduate School of Medical Sciences, Kumamoto University, Kumamoto, Japan.
Abstract:
Recent genome-wide cDNA microarray analysis of gene expression profiles in comprehensive tumor types coupled with isolation of cancer tissues by laser-microbeam microdissection have revealed ideal tumor-associated antigens (TAAs) that are frequently overexpressed in various cancers including head and neck squamous cell cancer (HNSCC) and lung cancer, but not in most normal tissues except for testis, placenta, and fetal organs. Preclinical studies using HLA-transgenic mice and human T cells in vitro showed that TAA-derived CTL-epitope short peptides (SPs) are highly immunogenic and induce HLA-A2 or -A24-restricted CTLs. Based on the accumulated evidence, we carried out a phase II clinical trial of the TAA-SP vaccine in advanced 37 HNSCC patients. This study showed a significant induction of TAA-specific CTLs in the majority of patients without serious adverse effects. Importantly, clinical responses including a complete response were observed in this study. Another phase II clinical trial of therapeutic TAA-SP vaccine, designed to evaluate the ability of prevention of recurrence, is ongoing in HNSCC patients who have received curative operations. Further studies in human preclinical studies and in vivo studies using HLA class I transgenic mice showed TAA-derived long peptides (TAA-LPs) have the capacity to induce not only promiscuous HLA class II-restricted CD4(+) T helper type 1 cells but also tumor-specific CTLs through a cross-presentation mechanism. Moreover, we observed an augmentation of TAA-LP-specific T helper type 1 cell responses and tumor antigen-spreading in HNSCC patients vaccinated with TAA-SPs. This accumulated evidence suggests that therapeutic TAA-SPs and LPs vaccines may provide a promising cancer immunotherapy.
Insights
Therapeutic cancer vaccines using tumor-associated antigen peptides (TAA-SPs and TAA-LPs) show promise. These vaccines effectively induce tumor-specific T cells and have demonstrated clinical responses in head and neck squamous cell cancer patients.
Area of Science:
- Oncology
- Immunology
- Vaccine Development
Background:
- Tumor-associated antigens (TAAs) are overexpressed in various cancers, including HNSCC and lung cancer.
- TAA-derived peptides can induce cytotoxic T lymphocytes (CTLs) in preclinical models.
Purpose of the Study:
- To evaluate the safety and efficacy of a TAA-short peptide (SP) vaccine in advanced head and neck squamous cell cancer (HNSCC) patients.
- To investigate the immunogenicity and clinical activity of TAA-derived peptides (SPs and long peptides - LPs) as cancer immunotherapy.
Main Methods:
- Phase II clinical trials involving HNSCC patients vaccinated with TAA-SPs.
- Preclinical studies using HLA-transgenic mice and human T cells to assess TAA-peptide immunogenicity.
- Analysis of TAA-specific CTL induction, clinical responses, and T helper cell responses.
Main Results:
- TAA-SP vaccination in HNSCC patients induced TAA-specific CTLs without serious adverse effects.
- Clinical responses, including complete response, were observed in the phase II trial.
- TAA-LPs were shown to induce both CD4+ T helper type 1 cells and CTLs via cross-presentation.
Conclusions:
- Therapeutic vaccines based on TAA-short peptides (SPs) and long peptides (LPs) show potential for cancer immunotherapy.
- TAA-SP vaccines are immunogenic and clinically active in HNSCC.
- TAA-LP vaccines can elicit broader immune responses, including T helper cells and CTLs.
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