Ibarz-Pavon, AB; Bielsky, M-C; Bose, R; Cavaleri, M; Crump, JA; Hombach, J; Kaslow, DC; Khaman, F; MacLennan, CA; Mehring-LeDoare, K; et al. Ibarz-Pavon, AB; Bielsky, M-C; Bose, R; Cavaleri, M; Crump, JA; Hombach, J; Kaslow, DC; Khaman, F; MacLennan, CA; Mehring-LeDoare, K; Pollard, AJ; Quadri, F; John, J; Wilder-Smith, A (2025) Consultation report – considerations for a regulatory pathway for bivalent Salmonella Typhi/Paratyphi A vaccines for use in endemic countries. Vaccine, 56. p. 127189. ISSN 0264-410X https://doi.org/10.1016/j.vaccine.2025.127189
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Abstract
Enteric fever caused by Salmonella enterica serovars Typhi and Paratyphi A and, to a lesser extent, S. Paratyphi B and C, remains a significant cause of mortality and morbidity in resource-constrained settings. Typhoid conjugate vaccines (TCVs) protect against S. Typhi but no vaccine to date protects against paratyphoid fever. There are several bivalent S. Typhi/Paratyphi A products in development; however, the low incidence of paratyphoid fever in many settings limits the feasibility of phase 3 efficacy studies. Two bivalent vaccines adding the S. Paratyphi A-specific O:2 lipopolysaccharide conjugated to a protein carrier to TCV constructs have successfully completed phase 1 studies and will progress rapidly in their development. The WHO's Product Development for Vaccines Advisory Committee (PDVAC) endorsed a regulatory pathway for a bivalent S. Typhi/Paratyphi A vaccine that contemplates demonstrating protective efficacy against S. Paratyphi A infection in a controlled human infection model (CHIM). Since the use of CHIM data in lieu of phase 3 efficacy studies and to identify markers of immune protection is not yet widely accepted by regulatory bodies, the WHO organized a consultation with vaccine developers, manufacturers, and regulators. The purpose of the meeting was to discuss the feasibility and considerations for the licensure of a bivalent S. Typhi/Paratyphi A vaccine. The aim of the consultation was to gain alignment among key stakeholders and facilitate the pathway to licensure in endemic countries.
Item Type: | Article | ||||||
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Additional Information: | © 2025 Published by Elsevier Ltd. This is an open access article under the CC BY IGO license (http://creativecommons.org/licenses/by/3.0/igo/). | ||||||
Keywords: | Enteric fever, Salmonella Paratyphi A, Paratyphoid fever, Vaccines, Phase 3 study, Regulatory pathway | ||||||
SGUL Research Institute / Research Centre: | Academic Structure > Infection and Immunity Research Institute (INII) | ||||||
Journal or Publication Title: | Vaccine | ||||||
ISSN: | 0264-410X | ||||||
Language: | en | ||||||
Publisher License: | Creative Commons: Attribution 3.0 IGO | ||||||
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URI: | https://openaccess.sgul.ac.uk/id/eprint/117744 | ||||||
Publisher's version: | https://doi.org/10.1016/j.vaccine.2025.127189 |
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