Early-life interactions between the microbiota and immune system: impact on immune system development and atopic disease.

Katherine Donald, B Brett Finlay

Journal: Nature reviews. Immunology 2023;23(11):735-748

PMID: 37138015

Abstract

Prenatal and early postnatal life represent key periods of immune system development. In addition to genetics and host biology, environment has a large and irreversible role in the immune maturation and health of an infant. One key player in this process is the gut microbiota, a diverse community of microorganisms that colonizes the human intestine. The diet, environment and medical interventions experienced by an infant determine the establishment and progression of the intestinal microbiota, which interacts with and trains the developing immune system. Several chronic immune-mediated diseases have been linked to an altered gut microbiota during early infancy. The recent rise in allergic disease incidence has been explained by the 'hygiene hypothesis', which states that societal changes in developed countries have led to reduced early-life microbial exposures, negatively impacting immunity. Although human cohort studies across the globe have established a correlation between early-life microbiota composition and atopy, mechanistic links and specific host-microorganism interactions are still being uncovered. Here, we detail the progression of immune system and microbiota maturation in early life, highlight the mechanistic links between microbes and the immune system, and summarize the role of early-life host-microorganism interactions in allergic disease development.

© 2023. Springer Nature Limited.

Address: Michael Smith Laboratories, University of British Columbia, Vancouver, BC, Canada.; Department of Microbiology and Immunology, University of British Columbia, Vancouver, BC, Canada.; Michael Smith Laboratories, University of British Columbia, Vancouver, BC, Canada. [email protected].; Department of Microbiology and Immunology, University of British Columbia, Vancouver, BC, Canada. [email protected].; Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, BC, Canada. [email protected].

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