The wild mouse bone marrow has a unique myeloid and lymphoid composition and phenotype

Author:

Muir Andrew1ORCID,Bennett Alex1,Smith Hannah1,Logunova Larisa1,Wolfenden Andrew2,Fenn Jonathan2,Lowe Ann E2,Brass Andy3,Grainger John R1,Konkel Joanne E1,Bradley Janette E2,Mair Iris1,Else Kathryn J1

Affiliation:

1. Lydia Becker Institute of Immunology and Inflammation, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester , Manchester , UK

2. School of Life Sciences, University of Nottingham , Nottingham , UK

3. School of Health Sciences, The University of Manchester , Manchester , UK

Abstract

Abstract The murine bone marrow has a central role in immune function and health as the primary source of leukocytes in adult mice. Laboratory mice provide a human-homologous, genetically manipulable and reproducible model that has enabled an immeasurable volume of high-quality immunological research. However, recent research has questioned the translatability of laboratory mouse research into humans and proposed that the exposure of mice to their wild and natural environment may hold the key to further immunological breakthroughs. To date, there have been no studies providing an in-depth cellular analysis of the wild mouse bone marrow. This study utilized wild mice from an isolated island population (Isle of May, Scotland, UK) and performed flow cytometric and histological analysis to characterize the myeloid, lymphoid, hematopoietic progenitor, and adipocyte compartments within the wild mouse bone marrow. We find that, compared to laboratory mouse bone marrow, the wild mouse bone marrow differs in every cell type assessed. Some of the major distinctions include; a smaller B cell compartment with an enriched presence of plasma cells, increased proportions of KLRG1+ CD8+ T cells, diminished CD11b expression in the myeloid lineage and a five-fold enlargement of the eosinophil compartment. We conclude that the wild mouse bone marrow is dramatically distinct from its laboratory counterparts, with multiple phenotypes that to our knowledge have never been observed in laboratory models. Further research into these unique features may uncover novel immunological mechanisms and grant a greater understanding of the role of the immune system in a natural setting.

Funder

Biotechnology and Biological Sciences Research Council

Publisher

Oxford University Press (OUP)

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