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Published on: July 27, 2022
Microbial Colonization in Adulthood Shapes the Intestinal Macrophage Compartment
Franziska Schmidt1,2, Katja Dahlke3, Arvind Batra4
1Medizinische Klinik für Gastroenterologie, Infektiologie und Rheumatologie, Charité - Universitätsmedizin Berlin, corporate member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Berlin, Germany.
Background And Aims:
Contact with distinct microbiota early in life has been shown to educate the mucosal immune system, hence providing protection against immune-mediated diseases. However, the impact of early versus late colonization with regard to the development of the intestinal macrophage compartment has not been studied so far.
Methods:
Germ-free mice were colonized with specific-pathogen-free [SPF] microbiota at the age of 5 weeks. The ileal and colonic macrophage compartment were analysed by immunohistochemistry, flow cytometry, and RNA sequencing 1 and 5 weeks after colonization and in age-matched SPF mice, which had had contact with microbiota since birth. To evaluate the functional differences, dextran sulfate sodium [DSS]-induced colitis was induced, and barrier function analyses were undertaken.
Results:
Germ-free mice were characterized by an atrophied intestinal wall and a profoundly reduced number of ileal macrophages. Strikingly, morphological restoration of the intestine occurred within the first week after colonization. In contrast, ileal macrophages required 5 weeks for complete restoration, whereas colonic macrophages were numerically unaffected. However, following DSS exposure, the presence of microbiota was a prerequisite for colonic macrophage infiltration. One week after colonization, mild colonic inflammation was observed, paralleled by a reduced inflammatory response after DSS treatment, in comparison with SPF mice. This attenuated inflammation was paralleled by a lack of TNFα production of LPS-stimulated colonic macrophages from SPF and colonized mice, suggesting desensitization of colonized mice by the colonization itself.
Conclusions:
This study provides the first data indicating that after colonization of adult mice, the numeric, phenotypic, and functional restoration of the macrophage compartment requires the presence of intestinal microbiota and is time dependent.
Insights
Colonizing adult mice with gut microbiota restores intestinal macrophages over time. This process is crucial for immune system development and function, impacting inflammatory responses.
Area of Science:
- Immunology
- Microbiome Research
- Gastroenterology
Background:
- Early-life microbial exposure educates the immune system, protecting against immune-mediated diseases.
- The impact of colonization timing on intestinal macrophage development remains unclear.
Purpose of the Study:
- To investigate the effects of late-life microbiota colonization on intestinal macrophage populations.
- To compare the development and function of macrophages in early- versus late-colonized mice.
Main Methods:
- Germ-free mice were colonized with specific-pathogen-free (SPF) microbiota at 5 weeks of age.
- Intestinal macrophages were analyzed using immunohistochemistry, flow cytometry, and RNA sequencing.
- Dextran sulfate sodium (DSS)-induced colitis was used to assess functional differences and barrier integrity.
Main Results:
- Late colonization led to intestinal morphological restoration within a week, but ileal macrophages required 5 weeks for full recovery.
- Colonic macrophages were numerically unaffected but required microbiota for infiltration after DSS challenge.
- Colonized mice showed reduced inflammation and TNFα production post-DSS, suggesting immune desensitization.
Conclusions:
- Intestinal microbiota presence and time are critical for the numeric, phenotypic, and functional restoration of the macrophage compartment after adult colonization.
- Late colonization influences immune responses, potentially leading to attenuated inflammation and desensitization.
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