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February 27, 20263 citations

Development of a Self-Adjuvanting Influenza Peptide-Glycolipid Conjugate Inducing CD8+ T-Cell Immunity.

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SKShunya KikuchiHOHideki OguraTMTakanori Matsumaru

Key Points

  • The aim is to develop a self-adjuvanting conjugate to enhance CD8+ T-cell immunity against influenza.
  • Used α-GalCer as lipid antigen adjuvant
  • Applied covalent antigen-adjuvant complexation
  • Optimized linker designs influencing immune response
  • Utilized HLA-transgenic mice for testing
  • Successfully induced peptide antigen-specific CD8+ T cell expansion
  • Demonstrated selective immune activation with synthesized complexes
  • Showed potential for application to other viral antigens

Abstract

Effective immune activation against infectious diseases is achieved through the coordinated interplay of peptide antigen presentation and adjuvant-mediated stimulation, including lipid antigen-type adjuvants. For optimal immune activation with viral antigens, we applied covalent antigen-adjuvant complexation at the molecular level, which enables refined modulation of immune responses. This antigen-complex strategy was applied to viral peptide antigens containing sequence regions with lower variability, a particularly valuable approach for rapidly mutating viruses such as influenza. To construct these conjugated antigen complex structures, we used α-GalCer as the lipid antigen adjuvant and optimized linker designs that markedly influenced immunomodulatory activity. Using the precisely synthesized antigen complexes along with human leukocyte antigen (HLA)-transgenic mice, we successfully demonstrated selective immune activation, particularly the peptide antigen-specific CD8+ T cell expansion. These methods can be extended to other viral antigens and may facilitate the development of CD8+ T cell-based self-adjuvanting conjugate vaccines.

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Cite This Study

Kikuchi et al. (2026) studied this question.

synapsesocial.com/papers/69a13550ed1d949a99abf1a8https://doi.org/10.1002/cbic.202500979
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