The continued emergence of genetically diverse high pathogenicity avian influenza (HPAI) H5N1 viruses with zoonotic potential highlights the urgent need for developing vaccines capable of providing broad protection against multiple circulating clades. Here, we developed a one-shot, multivalent, live-attenuated influenza vaccine (LAIV) based on the temperature-sensitive (ts), cold-adapted (ca), and attenuated (att) influenza A/Ann Arbor/6/1960 master donor virus (MDV) that incorporates the hemagglutinin (HA) and neuraminidase (NA) glycoproteins from representative clades 2.3.4.4b (A/Louisiana/12/2024), 2.3.2.1a (A/Victoria/149/2024), and 2.3.2.1e (A/Cambodia/2302009/2023) H5N1 viruses. A single intranasal (IN) immunization of C57BL/6 mice with the multivalent LAIV elicited robust humoral immune responses, with immune sera exhibiting broad cross-reactivity against antigens from all three H5N1 clades included in the vaccine. Following homologous viral challenge, vaccinated C57BL/6 mice were completely protected from disease, demonstrating the immunogenicity and protective efficacy of the multivalent LAIV. By simultaneously targeting antigenically distinct H5N1 lineages with pandemic potential, this strategy expands antigenic coverage within a single LAIV to confirm pan-H5N1 protection. Together, these findings support the development and implementation of this multivalent LAIV as a broadly protective pan-H5N1 LAIV for pandemic preparedness. Significance The increasing genetic diversity of zoonotic H5N1 viruses complicates vaccine design. We developed a multivalent live-attenuated influenza vaccine (LAIV) based on the temperature-sensitive, cold-adapted, and attenuated (ts, ca, att) master donor virus (MDV) influenza A/Ann Arbor/6/1960 backbone that expresses the hemagglutinin (HA) and neuraminidase (NA) glycoproteins of H5N1 clades 2.3.4.4b, 2.3.2.1a, and 2.3.2.1e. A single intranasal (IN) immunization with the multivalent LAIV induced broadly cross-reactive neutralizing antibody (NAb) responses and protected experimental vaccinated animals against homologous lethal viral challenge, demonstrating the feasibility of the multivalent LAIV to protect against H5N1 clades of highest concern to humans. These findings demonstrate the feasibility of developing and implementing this multivalent LAIV as a broad protective pan-H5N1 LAIV against divergent H5N1 viruses for human use.
Ahmed M. Elsayed, Ramya S. Barre, Arash Rahmani et al.· bioRxiv· 0 citations
Self-amplifying mRNA (samRNA) vaccines can induce potent immune responses at lower doses than conventional non-replicating mRNA vaccines; however, large RNA size and manufacturing considerations associated with 5' capping remain important challenges. Here, we developed a capless samRNA (CLsamRNA) vaccine platform derived from a Coxsackievirus B5 replicon that uses IRES-mediated cap-independent translation. Systematic optimization of key genetic elements enhanced antigen expression from the CLsamRNA backbone. Using reporter RNAs, LNP-formulated CLsamRNA showed rapid early expression and RNA amplification, with expression kinetics distinct from VEEV-based saRNA and nucleoside-modified mRNA comparators. When encoding the hemagglutinin antigen of highly pathogenic avian influenza clade 2.3.4.4 H5 viruses, CLsamRNA induced potent immune responses after LNP formulation. In mouse models, CLsamRNA induced potent neutralizing antibody responses, cross-reactive activity against clade 2.3.4.4b H5N1 virus, Th1-skewed humoral immunity, and strong antigen-specific cellular immune responses. CLsamRNA also elicited platform-specific early inflammatory and lymph-node immune gene signatures associated with antigen presentation, costimulation, and cellular immune priming. Notably, a minimal 0.01 μg dose of CLsamRNA conferred complete protection against lethal H5N8 influenza virus challenge in BALB/c mice. These findings support CLsamRNA as a distinct cap-independent RNA vaccine platform with dose-sparing protective efficacy against HPAI H5 viruses.
Beom Kyu Kim, Ji-Hyun Park, Won-Suk Choi et al.· Molecular Therapy· 0 citations
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