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BCG vaccination elicits protection against M. tuberculosis infection mediated by two phases of T cell immunity
Abiola F. Ogunsola, Rocky Lai, Kelly Cavallo, Anthony V. Tran, Gillian L. Beamer, Samuel M. Behar
Abiola F. Ogunsola, Rocky Lai, Kelly Cavallo, Anthony V. Tran, Gillian L. Beamer, Samuel M. Behar
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Research Article Immunology Infectious disease Inflammation

BCG vaccination elicits protection against M. tuberculosis infection mediated by two phases of T cell immunity

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Abstract

Vaccine development for tuberculosis (TB) is a global priority. Our studies using Collaborative Cross (CC) mice show that genetic diversity influences the efficacy of BCG, the most widely used TB vaccine. BCG vaccination of CC042 mice reduced their lung bacillary burden and increased their survival following low-dose aerosol Mycobacterium tuberculosis infection (MTBI), despite impaired T cell trafficking due to a defective Itgal gene. BCG vaccination conferred early bacillary control that appeared to be independent of B cell or T cell recall responses following MTBI. In contrast, long-term survival of BCG-vaccinated CC042 mice after MTBI required T cells. Thus, CC042 mice reveal two phases of immunity induced by BCG: an early phase mediated by innate immunity or innate-like T cells and a later phase mediated by conventional memory CD4+ and/or CD8+ T cells. Although measurement of vaccine-induced protection 30 days after MTBI is a standard measure of vaccine efficacy in the TB model, this time point might be independent of memory T cells in CC042 mice. Our results suggest that vaccine-elicited innate/innate-like responses could have a larger role in protection than previously considered. The concordance between lung CFU, pathology, and survival makes CC042 mice useful for mechanistic studies on vaccine-induced immunity.

Authors

Abiola F. Ogunsola, Rocky Lai, Kelly Cavallo, Anthony V. Tran, Gillian L. Beamer, Samuel M. Behar

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Figure 1

BCG protects CC042 mice against TB.

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BCG protects CC042 mice against TB.
(A) Experimental scheme. B6 and CC04...
(A) Experimental scheme. B6 and CC042 mice were vaccinated or not vaccinated with BCG in the flank and rested for 12 weeks. Then, all mice were infected with Rv.YFP and analyzed after 4 weeks. (B–D) Representative experiment showing CFU in the lung (B), mLN (C), and spleen (D); n = 4–5 mice per group. Each point is an individual mouse. (E–G) Results combined from 7 (lung; E), 3 (mLN; F), and 5 (spleen; G) experiments. Each point is the mean of an independent experiment. (H) CFU reduction in the lung from 7 experiments. Δlog10CFU = log10CFU (BCG) – log10CFU (unvaccinated). Each point represents an independent experiment. (I) Cumulative survival of non-vaccinated B6, non-vaccinated CC042, and BCG-vaccinated mice after aerosolized Mtb Erdman infection. Data compiled from 3 independent experiments; 15 B6 female mice, 10 B6 male mice, 15 CC042 female mice, 12 CC042 male mice, 19 CC042 female BCG-vaccinated mice, 11 CC042 male BCG-vaccinated mice. The difference between non-vaccinated B6 and non-vaccinated CC042 and the difference between non-vaccinated CC042 and BCG-vaccinated CC042 are statistically significant (P < 0.0001). (B–G) One-way ANOVA with Šidák’s multiple-comparison test. Box-and-whisker plots indicate median (middle line), 25th and 75th percentiles (box), and minimum and maximum (whiskers). (H) Paired t test. Line, mean. (I) Mantel-Cox log-rank test.

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