Skip to content

Safety, humoral and cellular immune responses to a pre-pandemic adjuvanted influenza A (H5N8) vaccine.

Sep 2026 · Vaccine · Vol 92, pp. 129049 · 0 citations · 46 references
Medicine

TL;DR

The H5N8 vaccine with the IB160 adjuvant was well tolerated locally and systemically, without compromising vital organ function and consistent with expectations for adjuvanted influenza vaccines, demonstrating strong and durable humoral and cellular immune responses.

Abstract

Highly pathogenic avian influenza (HPAI) A(H5) viruses can be transmitted from infected birds to various mammalian species, including humans. Avian influenza viruses (AIVs), members of the Orthomyxoviridae family, possess segmented RNA genomes prone to reassortment, favoring the emergence of novel genetic traits that may alter transmissibility, pathogenicity, and antigenicity. Although no sustained human-to-human transmission has been reported, the potential adaptation of these viruses poses a significant pandemic threat. This study aimed to evaluate the non-clinical safety, toxicity, and humoral immune responses induced by an adjuvanted H5 influenza vaccine in rats and rabbits, to support future clinical safety trials in humans. Male and female Wistar rats and New Zealand rabbits were observed for 14, 28, and 90 days after receiving two intramuscular doses of the H5N8 vaccine (15 μg HA/dose) formulated with the IB160 oil-in-water emulsion adjuvant. No systemic comorbidities, central nervous system alterations, or relevant clinical signs were observed. Hematological parameters remained within normal ranges, with total and differential leukocyte counts showing only minor fluctuations (<1% of total leukocytes). Mild biochemical variations in urea and hepatic transaminase levels were not correlated with histopathological alterations. The vaccine elicited a robust humoral response soon after immunization, with all groups reaching protective HAI-antibody titers. Although antibody levels declined over time, particularly in males, they remained significantly above baseline, indicating durable immunological memory. Furthermore, the vaccine induced a specific cellular immune response, confirmed by IL-2 and TNF production by antigen-specific T lymphocytes in splenic cell cultures after the booster dose. In conclusion, the H5N8 vaccine with the IB160 adjuvant was well tolerated locally and systemically, without compromising vital organ function. The safety and immunogenicity findings are consistent with expectations for adjuvanted influenza vaccines, demonstrating strong and durable humoral and cellular immune responses.

View source

Similar papers

Oct 2026

Protective efficacy of bacterial sialidase-based intranasal inactivated avian influenza vaccine against H5N1 infection in poultry.

The avian influenza virus (AIV) poses a serious threat to the poultry industry, leading to substantial economic losses and having the potential to cause severe zoonotic diseases worldwide. The development of mucosal vaccines has prompted greater attention due to their ability to mimic the natural infection process and...

R. S. Kurnia, C. M. Nugroho, O. M. Silaen et al. · 0 citations
#protein folding Open access Oct 2026

A multi-epitope-based DNA vaccine confers cross-protection against influenza A H1N1 and H3N2 viruses

Background and Objectives: Influenza A virus remains a major global health concern because antigenic drift reduces the long-term efficacy of current vaccines. This study evaluated a multi-epitope DNA vaccine targeting conserved regions of hemagglutinin (HA) and polymerase acidic (PA) proteins from influenza A/H1N1 and...

K. Barkhordari, F. Rezaei, V. Salimi et al. · 0 citations

Generation of two bat influenza-vectored H5 vaccine candidates against HPAI H5N1 in chickens

H5N1 highly pathogenic avian influenza (HPAI) represents a persistent global threat to both poultry and public health, necessitating the development of safe and effective vaccines. We utilized an established bat influenza vector to develop live attenuated vaccines, and demonstrated their safety and immunogenicity. In t...

Chao Dai · 0 citations
Open access Sep 2026

Immunogen selection and prior immunity shape antibody breadth following immunisation with avian H5 hemagglutinin

A considerable variability in the potential of H5 vaccine antigens to induce neutralisation breadth is demonstrated, as well as the potential for multivalent vaccines and ferritin nanoparticle-based strategies to robustly augment immunity across antigenic variants.

Yee-Chen Liu, Andrew Kelly, R. Esterbauer et al. · 0 citations
Open access Sep 2026

Development and evaluation of bovine adenovirus vector-based avian influenza vaccine efficacy in poultry.

Avian influenza virus (AIV) remains a persistent threat to global poultry health and production, necessitating the development of novel and effective vaccination strategies. This study evaluated the immunogenicity and protective efficacy of a newly developed bovine adenovirus-vector-based avian influenza virus (BAdV-AI...

Shekoni Olaitan Comfort, Ekramy E. Sayedahmed, Wen-Chien Wang et al. · 0 citations
Open access Aug 2026

Protective effect of A(H5N8) stockpiled vaccine against a virus genetically identical to a human isolate of bovine A(H5N1) influenza virus

It is demonstrated that the AS03-adjuvanted A(H5N8)-based stockpiled vaccine provides strong cross-protective efficacy against bovine A(H5N1) viruses during the early phase of a pandemic.

Ryuta Uraki, M. Kiso, Kiyoko Iwatsuki-Horimoto et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.