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Updated: Aug 15, 2025

Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Melanoma antigens recognized by T cells and their use for immunotherapy
Shigeki Ohta1,2, Aya Misawa1, Chaw Kyi-Tha-Thu1
1Department of Immunology, School of Medicine, International University of Health and Welfare, Chiba, Japan.
Abstract:
Melanoma has been a prototype for cancer immunology research, and the mechanisms of anti-tumor T-cell responses have been extensively investigated in patients treated with various immunotherapies. Individual differences in cancer-immune status are defined mainly by cancer cell characteristics such as DNA mutations generating immunogenic neo-antigens, and oncogene activation causing immunosuppression, but also by patients' genetic backgrounds such as HLA types and genetic polymorphisms of immune related molecules, and environmental and lifestyle factors such as UV rays, smoking, gut microbiota and concomitant medications; these factors have an influence on the efficacy of immunotherapy. Recent comparative studies on responders and non-responders in immune-checkpoint inhibitor therapy using various new technologies including multi-omics analyses on genomic DNA, mRNA, metabolites and microbiota and single cell analyses of various immune cells have led to the advance of human tumor immunology and the development of new immunotherapy. Based on the new findings from these investigations, personalized cancer immunotherapies along with appropriate biomarkers and therapeutic targets are being developed for patients with melanoma. Here, we will discuss one of the essential subjects in tumor immunology: identification of immunogenic tumor antigens and their effective use in various immunotherapies including cancer vaccines and adoptive T-cell therapy.
Insights
Understanding melanoma immunotherapy requires examining tumor antigens. Research explores how genetic, environmental, and lifestyle factors influence treatment response, paving the way for personalized cancer vaccines and T-cell therapies.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Melanoma serves as a key model for cancer immunology research.
- Anti-tumor T-cell responses are crucial in immunotherapy efficacy.
- Individual responses to immunotherapy are influenced by tumor genetics, host genetics, and environmental factors.
Purpose of the Study:
- To explore the mechanisms of anti-tumor T-cell responses in melanoma.
- To discuss the identification of immunogenic tumor antigens.
- To highlight the application of tumor antigens in novel immunotherapies.
Main Methods:
- Comparative studies of responders and non-responders.
- Multi-omics analyses (genomic DNA, mRNA, metabolites, microbiota).
- Single-cell analyses of immune cells.
Main Results:
- Identified factors influencing immunotherapy efficacy, including neo-antigens and host genetics.
- Advanced understanding of human tumor immunology through multi-omics and single-cell data.
- Development of personalized cancer immunotherapies.
Conclusions:
- Personalized melanoma immunotherapies are emerging based on new research.
- Identifying and utilizing immunogenic tumor antigens is key for effective cancer vaccines and adoptive T-cell therapy.
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