Completed Infection & Immunity

A single-blind, randomised, phase II UK multi-centre study to determine reactogenicity and immunogenicity of booster vaccination against ancestral and novel variants of SARS-CoV-2 (COV-BOOST)

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The COV-BOOST trial is giving thousands of UK volunteers who received two doses of either the Pfizer or Oxford/AstraZeneca vaccine a third booster shot, including experimental jabs designed to target new coronavirus variants. This matters because immunity from the initial two-dose regimen wanes over time, and new variants such as Delta and Omicron can partially evade the original vaccines. While early studies tested mixing different vaccine types for the first two doses, no large-scale trial had yet established which booster—and for whom—is safest and most effective when given months after the primary course. If successful, the trial will provide the evidence needed for the NHS to roll out annual or seasonal booster programmes with confidence. It will tell policymakers which vaccine combinations produce the strongest and broadest immune response, and whether variant-specific boosters offer meaningful extra protection against emerging strains. This directly affects public health planning, vaccine procurement, and the logistics of delivering millions of booster doses each year. The results will also inform global vaccination strategies, helping other countries decide how to deploy limited booster supplies.

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The 2 vaccines which have been delivered at scale in the UK so far have been the mRNA vaccine BNT162b2 (Pfizer) and the chimpanzee adenovirus vector vaccine ChAdOx1-nCov19 (Oxford/AstraZeneca). Studies are underway currently to examine the effect of heterologous prime-boost regimens using these differing vaccine technologies (the COM-COV trial, IRAS Project ID: 291055 EudraCT Number: 2020-005085-33). The COV-BOOST trial aims to establish the safety and efficacy of annual boosting vaccination with different authorised vaccine candidates for participants who have received homologous prim-boosting with either BNT162b2 or ChAdOx1-nCov19 early in the UK NHS deployment campaign. In addition, this study will examine the safety and efficacy of boosting using vaccines designed specifically to target novel variants of the SARS-CoV-2 virus when these vaccines become available.

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Related Research

Grants with similar aims, by meaning.

A single-blind, randomised, phase II UK multi-centre study to determine reactogenicity and immunogenicity of heterologous prime/boost COVID-19 vaccine schedules Stage 2
Randomised, phase II UK multi-centre study to determine reactogenicity and immunogenicity of booster vaccination against ancestral and novel variants of SARS-CoV-2(COV-Boost)
A single-blind, randomised, phase II UK multi-centre study to determine reactogenicity and immunogenicity of booster vaccination against ancestral and novel variants of SARS-CoV-2
A randomised, phase II UK multi-centre study to determine reactogenicity and immunogenicity of booster vaccination against ancestral and novel variants of SARS-CoV-2
A randomised phase II UK multi-centre study to determine reactogencity and immunogencity of booster vaccination against ancestral and novel variants of SARS-COV-2

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