Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.

There is an urgent need for an immunological correlate of protection against tuberculosis (TB) with which to evaluate candidate TB vaccines in clinical trials. Development of a human challenge model of Mycobacterium tuberculosis (M.tb) could facilitate the detection of such correlate(s). Here we pro...

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Main Authors: Minassian, A, Ronan, E, Poyntz, H, Hill, A, McShane, H
Format: Journal article
Language:English
Published: Public Library of Science 2011
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author Minassian, A
Ronan, E
Poyntz, H
Hill, A
McShane, H
author_facet Minassian, A
Ronan, E
Poyntz, H
Hill, A
McShane, H
author_sort Minassian, A
collection OXFORD
description There is an urgent need for an immunological correlate of protection against tuberculosis (TB) with which to evaluate candidate TB vaccines in clinical trials. Development of a human challenge model of Mycobacterium tuberculosis (M.tb) could facilitate the detection of such correlate(s). Here we propose a novel in vivo Bacille Calmette-Guerin (BCG) challenge model using BCG immunization as a surrogate for M.tb infection. Culture and quantitative PCR methods have been developed to quantify BCG in the skin, using the mouse ear as a surrogate for human skin. Candidate TB vaccines have been evaluated for their ability to protect against a BCG skin challenge, using this model, and the results indicate that protection against a BCG skin challenge is predictive of BCG vaccine efficacy against aerosol M.tb challenge. Translation of these findings to a human BCG challenge model could enable more rapid assessment and down selection of candidate TB vaccines and ultimately the identification of an immune correlate of protection.
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spelling oxford-uuid:2ef20077-7daa-4041-b325-434b43296a812022-03-26T12:52:10ZPreclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:2ef20077-7daa-4041-b325-434b43296a81EnglishSymplectic Elements at OxfordPublic Library of Science2011Minassian, ARonan, EPoyntz, HHill, AMcShane, HThere is an urgent need for an immunological correlate of protection against tuberculosis (TB) with which to evaluate candidate TB vaccines in clinical trials. Development of a human challenge model of Mycobacterium tuberculosis (M.tb) could facilitate the detection of such correlate(s). Here we propose a novel in vivo Bacille Calmette-Guerin (BCG) challenge model using BCG immunization as a surrogate for M.tb infection. Culture and quantitative PCR methods have been developed to quantify BCG in the skin, using the mouse ear as a surrogate for human skin. Candidate TB vaccines have been evaluated for their ability to protect against a BCG skin challenge, using this model, and the results indicate that protection against a BCG skin challenge is predictive of BCG vaccine efficacy against aerosol M.tb challenge. Translation of these findings to a human BCG challenge model could enable more rapid assessment and down selection of candidate TB vaccines and ultimately the identification of an immune correlate of protection.
spellingShingle Minassian, A
Ronan, E
Poyntz, H
Hill, A
McShane, H
Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.
title Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.
title_full Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.
title_fullStr Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.
title_full_unstemmed Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.
title_short Preclinical development of an in vivo BCG challenge model for testing candidate TB vaccine efficacy.
title_sort preclinical development of an in vivo bcg challenge model for testing candidate tb vaccine efficacy
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