Literature DB >> 22796139

Development of VAX128, a recombinant hemagglutinin (HA) influenza-flagellin fusion vaccine with improved safety and immune response.

David N Taylor1, John J Treanor, Eric A Sheldon, Casey Johnson, Scott Umlauf, Langzhou Song, Uma Kavita, Ge Liu, Lynda Tussey, Karen Ozer, Thomas Hofstaetter, Alan Shaw.   

Abstract

BACKGROUND: We evaluated the safety and immunogenicity profiles of 3 novel influenza vaccine constructs consisting of the globular head of the HA1 domain of the Novel H1N1 genetically fused to the TLR5 ligand, flagellin. HA1 was fused to the C-terminus of flagellin in VAX128A, replaced the D3 domain of flagellin in VAX128B and was fused in both positions in VAX128C.
METHODS: In a dose escalation trial, 112 healthy subjects 18-49 and 100 adults ≥65 years old were enrolled in a double blind, placebo controlled clinical trial at two centers. Vaccines were administered IM at doses ranging from 0.5 to 20 μg. VAX128C was selected for second study performed in 100 subjects 18-64 years old comparing 1.25 and 2.5 μg doses. All subjects were followed for safety and sera collected pre- and post-vaccination were tested by hemagglutination-inhibition (HAI). Serum C-reactive protein and cytokine levels were also measured.
CONCLUSIONS: In the first study high HAI titers and high seroconversion and seroprotection rates were observed at doses ≥2.5 μg in adults 18-49. In adults ≥65 years, the vaccines doses of ≥4 μg were required to induce a ≥4-fold rise in HAI titer, 50% seroconversion and 70% seroprotection. Based on safety, VAX128A was tested up to 8 μg, VAX128B to 16 μg and VAX128C to 20 μg. Dose escalation for VAX128A was stopped at 8 μg because one subject had temperature 101.6°F associated with a high CRP response, VAX128B was stopped at 16 μg because of a severe AE associated with a high CRP and IL-6 response. VAX128C was not stopped before reaching the 20 μg dose. In the second study VAX128C was well tolerated among 100 subjects who received 1.25 or 2.5 μg. The peak GMT was 385 (95%CI 272-546), 79% (71-87%) seroconversion and 92% (84-96%) seroprotection. DISCUSSION: Flagellin adjuvanted vaccines can be designed to minimize reactogenicity and retain immunogenicity, thereby representing a promising next generation vaccine technology.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22796139     DOI: 10.1016/j.vaccine.2012.06.086

Source DB:  PubMed          Journal:  Vaccine        ISSN: 0264-410X            Impact factor:   3.641


  54 in total

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Authors:  Annette Fox; Kylie M Quinn; Kanta Subbarao
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Journal:  Hum Vaccin Immunother       Date:  2013-02-01       Impact factor: 3.452

7.  Amino acids 89-96 of Salmonella typhimurium flagellin represent the major domain responsible for TLR5-independent adjuvanticity in the humoral immune response.

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10.  BNT162b2 vaccine induces neutralizing antibodies and poly-specific T cells in humans.

Authors:  Ugur Sahin; Alexander Muik; Isabel Vogler; Evelyna Derhovanessian; Lena M Kranz; Mathias Vormehr; Jasmin Quandt; Nicole Bidmon; Alexander Ulges; Alina Baum; Kristen E Pascal; Daniel Maurus; Sebastian Brachtendorf; Verena Lörks; Julian Sikorski; Peter Koch; Rolf Hilker; Dirk Becker; Ann-Kathrin Eller; Jan Grützner; Manuel Tonigold; Carsten Boesler; Corinna Rosenbaum; Ludwig Heesen; Marie-Cristine Kühnle; Asaf Poran; Jesse Z Dong; Ulrich Luxemburger; Alexandra Kemmer-Brück; David Langer; Martin Bexon; Stefanie Bolte; Tania Palanche; Armin Schultz; Sybille Baumann; Azita J Mahiny; Gábor Boros; Jonas Reinholz; Gábor T Szabó; Katalin Karikó; Pei-Yong Shi; Camila Fontes-Garfias; John L Perez; Mark Cutler; David Cooper; Christos A Kyratsous; Philip R Dormitzer; Kathrin U Jansen; Özlem Türeci
Journal:  Nature       Date:  2021-05-27       Impact factor: 49.962

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