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Natural Microbial Exposure from the Earliest Natural Time Point Enhances Immune Development by Expanding Immune Cell Progenitors and Mature Immune Cells

Authors :
Sarah Burger
Terran Stenger
Mark Pierson
Adhvaith Sridhar
Matthew A. Huggins
Tamara A. Kucaba
Thomas S. Griffith
Sara E. Hamilton
Nathaniel J. Schuldt
Source :
The Journal of Immunology. 210:1740-1751
Publication Year :
2023
Publisher :
The American Association of Immunologists, 2023.

Abstract

Microbial experience fundamentally shapes immunity, particularly during the perinatal period when the immune system is underdeveloped, and novel microbial encounters are common. Most animal models are raised in specific pathogen-free (SPF) conditions with relatively uniform microbial communities. How SPF housing conditions alter early-life immune development relative to natural microbial exposure (NME) has not been thoroughly investigated. In this article, we compare immune development in SPF-raised mice with mice born from immunologically experienced mothers in microbially diverse environments. NME induced broad immune cell expansion, including naive cells, suggesting mechanisms besides activation-induced proliferation contribute to the increase in immune cell numbers. We found NME conditions also expanded immune cell progenitor cell populations in the bone marrow, suggesting microbial experience enhances immune development at the earliest stages of immune cell differentiation. Multiple immune functions characteristically impaired in infants were also enhanced by NME, including T cell memory and Th1 polarization, B cell class switching and Ab production, proinflammatory cytokine expression, and bacterial clearance after Listeria monocytogenes challenge. Collectively, our studies reveal numerous impairments in immune development in SPF conditions relative to natural immune development.

Subjects

Subjects :
Immunology
Immunology and Allergy

Details

ISSN :
15506606 and 00221767
Volume :
210
Database :
OpenAIRE
Journal :
The Journal of Immunology
Accession number :
edsair.doi...........718d0e9c27770ede0d18f0b89d7eb0e3
Full Text :
https://doi.org/10.4049/jimmunol.2300061