Protective intravenous BCG vaccination induces enhanced immune signaling in the airways
Peters, J. M.; Irvine, E. B.; Rosenberg, J. M.; Wadsworth, M. H.; Hughes, T. K.; Sutton, M.; Nyquist, S. K.; Bromley, J. D.; Mondal, R.; Roederer, M.; Seder, R.; Darrah, P. A.; Flynn, J. L.; Shalek, A. K.; Fortune, S. M.; Bryson, B. D.
Show abstract
Intradermal (ID) Bacillus Calmette-Guerin (BCG) is the most widely administered vaccine in the world. However, ID-BCG fails to achieve the level of protection needed in adults to alter the course of the tuberculosis epidemic. Recent studies in non-human primates have demonstrated high levels of protection against Mycobacterium tuberculosis (Mtb) following intravenous (IV) administration of BCG. However, the protective immune features that emerge following IV BCG vaccination remain incompletely defined. Here we used single-cell RNA-sequencing (scRNAseq) to transcriptionally profile 157,114 unstimulated and purified protein derivative (PPD)-stimulated bronchoalveolar lavage (BAL) cells from 29 rhesus macaques immunized with BCG across routes of administration and doses to uncover cell composition-, gene expression-, and biological network-level signatures associated with IV BCG-mediated protection. Our analyses revealed that high-dose IV BCG drove an influx of polyfunctional T cells and macrophages into the airways. These macrophages exhibited a basal activation phenotype even in the absence of PPD-stimulation, defined in part by IFN and TNF- signaling up to 6 months following BCG immunization. Furthermore, intercellular immune signaling pathways between key myeloid and T cell subsets were enhanced following PPD-stimulation in high-dose IV BCG-vaccinated macaques. High-dose IV BCG also engendered quantitatively and qualitatively stronger transcriptional responses to PPD-stimulation, with a robust Th1-Th17 transcriptional phenotype in T cells, and augmented transcriptional signatures of reactive oxygen species production, hypoxia, and IFN-{gamma} response within alveolar macrophages. Collectively, this work supports that IV BCG immunization creates a unique cellular ecosystem in the airways, which primes and enables local myeloid cells to effectively clear Mtb upon challenge.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Single-Cell Multiomics Defines Tolerogenic Extrathymic Aire-Expressing Populations with Unique Homology to Thymic Epithelium 97%
- Predictive framework of macrophage activation 96%
- A reservoir of stem-like CD8 T cells in the tumor-draining lymph node maintains the ongoing anti-tumor immune response 96%
Similar papers in this journal
Similar papers in this journal
- Heterogeneity of monocyte subsets and susceptibility to influenza virus contribute to inter-population variability of protective immunity 96%
- Single-cell analysis of myeloid cells in HPV+ tonsillar cancer 95%
- Identification of B cell subsets based on antigen receptor sequences using deep learning 95%
Similar papers in this journal
- Gfi1 controls the formation of effector CD8 T cells during chronic infection and cancer 97%
- A novel Mycobacterium tuberculosis-specific subunit vaccine provides synergistic immunity upon co-administration with Bacillus Calmette-Guerin 96%
- IKK2/NFkB signaling controls lung resident CD8 T cell memory during influenza infection 96%
Similar papers in this journal
- TET2 regulates early and late transitions in exhausted CD8+ T-cell differentiation and limits CAR T-cell function 96%
- Granuloma Dual RNA-Seq Reveals Composite Transcriptional Programs Driven by Neutrophils and Necrosis within Tuberculous Granulomas 95%
- Developmental dynamics of the neural crest-mesenchymal axis in creating the thymic microenvironment 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.