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Protein energy malnutrition during vaccination has limited influence on vaccine efficacy but abolishes immunity if administered during Mycobacterium tuberculosis infection.

Infect Immun. 2015; 
Hoang T, Agger EM, Cassidy JP, Christensen JP, Andersen P.
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Peptide Synthesis Synthetic overlapping peptides (15- or 18-mers) covering the complete primary structure of ESAT-6 and TB10.4 were synthesized by standard solid-phase methods on a SyRo peptide synthesizer (MultiSynTech; New England) at JPT Peptide Technologies (Berlin, Germany) or GenScript. Peptides were lyophilized and stored dry at −20°C until reconstitution in PBS and dimethyl sulfoxide (1:1 ratio). Get A Quote

摘要

Protein energy malnutrition (PEM) increases susceptibility to infectious diseases, including tuberculosis (TB), but it is not clear how PEM influences vaccine-promoted immunity to TB. We demonstrate that PEM during low-level steady-state TB infection in a mouse model results in rapid relapse of Mycobacterium tuberculosis, as well as increased pathology, in both Mycobacterium bovis BCG-vaccinated and unvaccinated animals. PEM did not change the overall numbers of CD4 T cells in BCG-vaccinated animals but resulted in an almost complete loss of antigen-specific cytokine production. Furthermore, there was a change in cytokine expression characterized by a gradual loss of multifunctional antigen-specific CD4 T cells... More

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