Immunopeptidomics-guided cancer vaccine design: Advances, challenges, and emerging opportunities

Selecting clinically relevant tumor antigens remains a major challenge in the development of therapeutic cancer vaccines. Although computational approaches have considerably improved neoantigen prediction, many candidate epitopes identified in silico are not ultimately presented on the tumor cell surface. The emergence of immunopeptidomics has provided direct access to naturally processed HLA-associated peptides and has offered new opportunities for antigen discovery. Increasing evidence has shown that information derived from the immunopeptidome becomes considerably more informative when interpreted alongside genomic, transcriptomic, and proteomic data. This integrative view has broadened the spectrum of targetable antigens and has also revealed important limitations related to peptide abundance, HLA diversity, tumor heterogeneity, and the imperfect relationship between antigen presentation and immunogenicity. These issues have renewed interest in multi-antigen vaccine strategies designed to better reflect the complexity of tumor antigen landscapes. Advances in bioinformatics and artificial intelligence are facilitating the interpretation of increasingly complex datasets and are beginning to support more systematic approaches to antigen prioritization. In this review, we discuss how immunopeptidomics is contributing to next-generation cancer vaccine development, summarize the major translational challenges, and highlight emerging concepts that may improve the clinical applicability of immunopeptidomics-guided immunotherapy.

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Journal
Biomedicine & Pharmacotherapy
Published
2026-09-15
DOI
https://doi.org/10.1016/j.biopha.2026.119926
Primary Topic
vaccines and immunoinformatics approaches
Type
article
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article

Immunopeptidomics-guided cancer vaccine design: Advances, challenges, and emerging opportunities

Hamid Nickho, Rasoul Baharlou, Akram Hoseinzadeh, Mohammad Mahdi Behzadifar et al.
Biomedicine & Pharmacotherapy
vaccines and immunoinformatics approaches
article

Immunopeptidomics-guided cancer vaccine design: Advances, challenges, and emerging opportunities

Hamid Nickho, Rasoul Baharlou, Akram Hoseinzadeh, Mohammad Mahdi Behzadifar, Elahe Mirsamiei, Mahshid Shadkam, Saba Kazemi
article en

Abstract

Selecting clinically relevant tumor antigens remains a major challenge in the development of therapeutic cancer vaccines. Although computational approaches have considerably improved neoantigen prediction, many candidate epitopes identified in silico are not ultimately presented on the tumor cell surface. The emergence of immunopeptidomics has provided direct access to naturally processed HLA-associated peptides and has offered new opportunities for antigen discovery. Increasing evidence has shown that information derived from the immunopeptidome becomes considerably more informative when interpreted alongside genomic, transcriptomic, and proteomic data. This integrative view has broadened the spectrum of targetable antigens and has also revealed important limitations related to peptide abundance, HLA diversity, tumor heterogeneity, and the imperfect relationship between antigen presentation and immunogenicity. These issues have renewed interest in multi-antigen vaccine strategies designed to better reflect the complexity of tumor antigen landscapes. Advances in bioinformatics and artificial intelligence are facilitating the interpretation of increasingly complex datasets and are beginning to support more systematic approaches to antigen prioritization. In this review, we discuss how immunopeptidomics is contributing to next-generation cancer vaccine development, summarize the major translational challenges, and highlight emerging concepts that may improve the clinical applicability of immunopeptidomics-guided immunotherapy.

Biomedicine & PharmacotherapyVol. 204
Semnan University of Medical Sciences (IR)
Openalex Percentile: Top 19%
vaccines and immunoinformatics approaches
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Immunopeptidomics-guided cancer vaccine design: Advances, challenges, and emerging opportunities — Hamid Nickho, Rasoul Baharlou, et al. · Biomedicine & Pharmacotherapy (2026) | TGRS Research Map | TGRS