It Takes a Village: The Multifaceted Immune Response to Mycobacterium tuberculosis Infection and Vaccine-Induced Immunity

Author:

Larsen Sasha E.,Williams Brittany D.,Rais Maham,Coler Rhea N.,Baldwin Susan L.

Abstract

Despite co-evolving with humans for centuries and being intensely studied for decades, the immune correlates of protection againstMycobacterium tuberculosis(Mtb) have yet to be fully defined. This lapse in understanding is a major lag in the pipeline for evaluating and advancing efficacious vaccine candidates. While CD4+ T helper 1 (TH1) pro-inflammatory responses have a significant role in controlling Mtb infection, the historically narrow focus on this cell population may have eclipsed the characterization of other requisite arms of the immune system. Over the last decade, the tuberculosis (TB) research community has intentionally and intensely increased the breadth of investigation of other immune players. Here, we review mechanistic preclinical studies as well as clinical anecdotes that suggest the degree to which different cell types, such as NK cells, CD8+ T cells, γ δ T cells, and B cells, influence infection or disease prevention. Additionally, we categorically outline the observed role each major cell type plays in vaccine-induced immunity, includingMycobacterium bovisbacillus Calmette-Guérin (BCG). Novel vaccine candidates advancing through either the preclinical or clinical pipeline leverage different platforms (e.g., protein + adjuvant, vector-based, nucleic acid-based) to purposefully elicit complex immune responses, and we review those design rationales and results to date. The better we as a community understand the essential composition, magnitude, timing, and trafficking of immune responses against Mtb, the closer we are to reducing the severe disease burden and toll on human health inflicted by TB globally.

Funder

National Institute of Allergy and Infectious Diseases

National Institutes of Health

Publisher

Frontiers Media SA

Subject

Immunology,Immunology and Allergy

Reference430 articles.

1. WHO Declares COVID-19 a Pandemic;Cucinotta;Acta BioMed,2020

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