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Differentiating Functional Roles of Gene Expression from Immune and Non-immune Cells in Mouse Colitis by Bone Marrow Transplantation
Published on: October 1, 2012
Bone marrow and splenic immune composition is unperturbed by short-term exposure to bedding from pet store mice
Sarah E Little-Letsinger1,2, Peer W F Karmaus3, Michael B Fessler3
1Department of Kinesiology and Health Education, University of Texas at Austin, Austin, TX, United States.
Abstract:
Mice with natural microbial exposures (NMEs) have been proposed to be superior to specific pathogen-free (SPF) laboratory mice for modeling adult human immune and inflammatory profiles. Research using NME mice has focused on the effects of sustained exposure on peripheral blood and lymphoid and nonlymphoid organs. The effect of short-term NME is not known, in particular the impact to bone marrow immune composition. Male and female C57Bl/6J mice were exposed to SPF conditions for 6 wk (age 4 to 10 wk) with or without exposure to dirty bedding from pet store mice for the first week. At sacrifice, substantial shifts in the fecal bacteriome, at the phylum, order, and genus levels were evident in male and female NME mice, confirming induction of a new exposome with NME. However, only female NME mice had pathogens in their feces detectable by polymerase chain reaction (2 of 35). Numerous sex-dependent differences in T cell and myeloid composition in bone marrow and spleens were observed. We report several novel immune composition findings by sex, including higher proportions of Ki67+ regulatory and CD8+ T cells in female bone marrow. We detected 2 differences resulting from NME in the spleens of females, including increased PD-1 in CD44+CD8+ T cells and higher mean Foxp3 expression in regulatory T cells. We conclude that short-term exposure to pet store bedding is insufficient to induce robust changes in immune composition in spleens or bone marrow. Future research with the NME model should focus on sustained exposure and investigate exposure timing.
Insights
Short-term natural microbial exposures (NMEs) in mice did not significantly alter bone marrow or spleen immune composition. Further research should explore sustained NME to better model human immune profiles.
Area of Science:
- Immunology
- Microbiology
- Animal Models
Background:
- Natural microbial exposures (NMEs) are proposed to better model human immune and inflammatory profiles than specific pathogen-free (SPF) mice.
- Previous research on NME mice focused on sustained exposure effects, leaving the impact of short-term NME on immune composition unknown.
Purpose of the Study:
- To investigate the effects of short-term NME on the immune composition of bone marrow and spleen in mice.
- To determine if short-term NME induces sex-dependent immune changes.
Main Methods:
- Male and female C57Bl/6J mice were exposed to SPF conditions for six weeks.
- Mice received either standard SPF conditions or exposure to pet store mouse bedding during the first week.
- Fecal bacteriome, bone marrow, and spleen immune cell composition were analyzed at sacrifice.
Main Results:
- Short-term NME induced substantial shifts in the fecal bacteriome in both sexes.
- Sex-dependent differences in T cell and myeloid composition were observed in bone marrow and spleens.
- Only female NME mice had detectable pathogens in feces; short-term NME did not robustly alter spleen or bone marrow immune composition.
Conclusions:
- Short-term exposure to pet store bedding is insufficient to induce significant changes in mouse spleen or bone marrow immune composition.
- Sex-dependent immune differences exist in bone marrow and spleen, independent of short-term NME.
- Future NME research should focus on sustained exposure and optimal timing for modeling human immune responses.

