A Model System for Feralizing Laboratory Mice in Large Farmyard-Like Pens

Henriette Arnesen1,2, Linn Emilie Knutsen1, Bente Wabakken Hognestad1

  • 1Faculty of Veterinary Medicine, Norwegian University of Life Sciences, Oslo, Norway.

Frontiers in Microbiology
|January 28, 2021
PubMed

Insights

Introducing a naturalistic housing system for mice, this study shows that a farmyard-like environment with diverse microbes and natural behaviors can improve laboratory mouse gut microbiota and immune system development, enhancing research translatability.

Area of Science:

  • Microbiology
  • Immunology
  • Animal Science

Background:

  • Laboratory mice live in sterile conditions, differing from natural environments.
  • This sterile housing may affect research translatability and result interpretation.
  • Feral mice and those in naturalistic settings have diverse gut microbiota and activated immune systems.

Purpose of the Study:

  • To describe a novel naturalistic indoor housing system for mice.
  • To assess the impact of this system on laboratory mouse gut microbiota and immunophenotype.
  • To compare feralized mice to both feral and conventionally housed laboratory mice.

Main Methods:

  • Developed a farmyard-type indoor habitat with soil and animal feces.
  • Co-housed laboratory C57BL/6 mice with wild-caught feral mice.
  • Analyzed gut microbiota composition and immunophenotype (T-cells, NK cells) of mice.

Main Results:

  • Feralized mice exhibited gut microbiota similar to feral cohabitants (e.g., higher Firmicutes, enriched Proteobacteria).
  • Immunophenotype of feralized mice approached that of feral mice (elevated memory T-cells, late-stage NK cells).
  • Diet explained only moderate microbial changes and none of the immunological changes.

Conclusions:

  • The naturalistic housing system successfully promotes microbial and immunological adaptation in laboratory mice.
  • This system allows for studies using genetically controlled mice in a high-diversity microbial environment.
  • The approach enhances the natural lifestyle and immune training of mice for improved research models.

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