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Naturalizing mouse models for immunology | Nature Immunology
Naturalizing mouse models for immunology | Nature Immunology

Normalizing the environment recapitulates adult human immune traits in  laboratory mice | Nature
Normalizing the environment recapitulates adult human immune traits in laboratory mice | Nature

Altered Immunity of Laboratory Mice in the Natural Environment Is  Associated with Fungal Colonization
Altered Immunity of Laboratory Mice in the Natural Environment Is Associated with Fungal Colonization

Normalizing the environment recapitulates adult human immune traits in  laboratory mice | Nature
Normalizing the environment recapitulates adult human immune traits in laboratory mice | Nature

Normalizing the environment recapitulates adult human immune traits in  laboratory mice | Nature
Normalizing the environment recapitulates adult human immune traits in laboratory mice | Nature

The precursors of CD8+ tissue resident memory T cells: from lymphoid organs  to infected tissues | Nature Reviews Immunology
The precursors of CD8+ tissue resident memory T cells: from lymphoid organs to infected tissues | Nature Reviews Immunology

Human immune system variation | Nature Reviews Immunology
Human immune system variation | Nature Reviews Immunology

Altered Immunity of Laboratory Mice in the Natural Environment Is  Associated with Fungal Colonization - ScienceDirect
Altered Immunity of Laboratory Mice in the Natural Environment Is Associated with Fungal Colonization - ScienceDirect

Host response: Mice and humans in the bubble | Nature Microbiology
Host response: Mice and humans in the bubble | Nature Microbiology

A conserved population of MHC II-restricted, innate-like,  commensal-reactive T cells in the gut of humans and mice | Nature  Communications
A conserved population of MHC II-restricted, innate-like, commensal-reactive T cells in the gut of humans and mice | Nature Communications

Wild Mouse Gut Microbiota Promotes Host Fitness and Improves Disease  Resistance: Cell
Wild Mouse Gut Microbiota Promotes Host Fitness and Improves Disease Resistance: Cell

The microbiota in adaptive immune homeostasis and disease | Nature
The microbiota in adaptive immune homeostasis and disease | Nature

Natural variation of macrophage activation as disease-relevant phenotype  predictive of inflammation and cancer survival | Nature Communications
Natural variation of macrophage activation as disease-relevant phenotype predictive of inflammation and cancer survival | Nature Communications

Functional T cells are capable of supernumerary cell division and longevity  | Nature
Functional T cells are capable of supernumerary cell division and longevity | Nature

Expansible residence decentralizes immune homeostasis | Nature
Expansible residence decentralizes immune homeostasis | Nature

Human immune system variation | Nature Reviews Immunology
Human immune system variation | Nature Reviews Immunology

Significance of bystander T cell activation in microbial infection | Nature  Immunology
Significance of bystander T cell activation in microbial infection | Nature Immunology

Immune and non-immune functions of adipose tissue leukocytes | Nature  Reviews Immunology
Immune and non-immune functions of adipose tissue leukocytes | Nature Reviews Immunology

Expansible residence decentralizes immune homeostasis | Nature
Expansible residence decentralizes immune homeostasis | Nature

Minding the microbiome of your mice | Lab Animal
Minding the microbiome of your mice | Lab Animal

Tissue-resident memory T cells at the center of immunity to solid tumors |  Nature Immunology
Tissue-resident memory T cells at the center of immunity to solid tumors | Nature Immunology