Live Attenuated Influenza Virus as a Vector for Multivalent T-Cell Vaccines: Targeting RSV, hMPV, and PIV3

Tatiana Kotomina1, Pei Fong Wong1, Victoria Matyushenko1

  • 1Department of Virology and Immunology, Institute of Experimental Medicine, 12, Acad. Pavlov Street, Saint Petersburg 197022, Russia.

Vaccines
|June 25, 2026
PubMed

Insights

Researchers developed new T-cell vaccine candidates against respiratory syncytial virus (RSV) and human metapneumovirus (hMPV) using a live attenuated influenza virus (LAIV) vector. These candidates show promise for future T-cell based immunotherapies against common respiratory infections.

Area of Science:

  • Vaccinology and Virology
  • Infectious Disease Research
  • Immunology

Background:

  • Respiratory syncytial virus (RSV), human metapneumovirus (hMPV), and parainfluenza virus type 3 (PIV3) are significant causes of pediatric and elderly respiratory infections.
  • Current therapeutic options are limited, with no licensed T-cell vaccines available for these prevalent viral pathogens.
  • The need for effective T-cell based vaccines against these viruses is critical for public health.

Purpose of the Study:

  • To engineer multivalent T-cell vaccine candidates targeting RSV, hMPV, and PIV3.
  • To utilize a live attenuated influenza virus (LAIV) vector for vaccine development.
  • To assess the feasibility and characteristics of recombinant LAIV carrying viral T-cell epitopes.

Main Methods:

  • Identification of conserved T-cell epitopes from RSV, hMPV, and PIV3 F, N, and M proteins.
  • Design of polyepitope immunogenic cassettes optimized for mRNA secondary structure.
  • Cloning of cassettes into a cold-adapted LAIV vector and rescue of recombinant viruses.

Main Results:

  • Successful rescue of recombinant LAIV vectors encoding T-cell epitopes for RSV and hMPV.
  • Rescued viruses demonstrated comparable replication fitness to the parental LAIV and genetic stability.
  • Neuraminidase (NA) enzymatic activity of the LAIV vector remained unaffected by insertional modifications.

Conclusions:

  • A panel of recombinant T-cell based vaccine candidates against RSV and hMPV was successfully developed using the LAIV platform.
  • These candidates encode conserved viral T-cell epitopes while maintaining the biological properties of the LAIV vector.
  • Further in vitro evaluation is warranted to assess the immunogenicity and T-cell stimulating potential of these novel vaccine candidates.