The adaptive immune response to Trichuris in wild versus laboratory mice: An established model system in context
Mair, I.; Fenn, J.; Wolfenden, A.; Lowe, A.; Bennett, A.; Muir, A.; Thompson, J.; Dieumerci, O.; Logunova, L.; Shultz, S.; Else, K. J.; Bradley, J. E.
Show abstract
Laboratory model organisms have provided a window into how the immune system functions. An increasing body of evidence, however, suggests that the immune responses of naive laboratory animals may differ substantially to those of their wild counterparts. Past exposure, environmental challenges and physiological condition may all impact on immune responsiveness. Chronic infections of soil-transmitted helminths impose significant health burdens on humans, livestock and wildlife, with limited treatment success. In laboratory mice, Th1 versus Th2 immune polarisation is the major determinant of helminth infection outcome. Here we compared antigen-specific immune responses to the soil-transmitted whipworm Trichuris muris between controlled laboratory and wild free-ranging populations of house mice (Mus musculus domesticus). Wild mice harbouring chronic, low-level infections produced lower levels of cytokines in response to Trichuris antigen than laboratory-housed C57BL/6 mice. Wild mouse effector/memory CD4+ T cell phenotype reflected the antigen-specific cytokine response across the Th1/Th2 spectrum. Increasing worm burden was associated with body condition loss. However, local Trichuris-specific Th1/Th2 balance was positively associated with worm burden only in older wild mice. Thus, although the fundamental relationships between the CD4+ T helper cell response and resistance to T. muris infection are similar in both laboratory and wild M.m.domesticus, there are quantitative differences and age-specific effects that are analogous to human immune responses. These context-dependent immune responses demonstrate the fundamental importance of understanding the differences between model and natural systems for translating mechanistic models to real world immune function.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Mmp17-deficient mice exhibit heightened goblet cell effector expression in the colon and increased resistance to chronic Trichuris muris infection 94%
- Blockade of LAG-3 in PD-L1-deficient mice enhances clearance of blood stage malaria independent of humoral responses 93%
- The consequences of mixed-species malaria parasite co-infections in mice and mosquitoes for disease severity, parasite fitness, and transmission success 93%
Similar papers in this journal
- Tick-borne coinfections modulate CD8+ T cell response and progressive leishmaniosis 94%
- Human immune response to primary cryptosporidiosis parallels murine infection models 93%
- Mucins shed from the laminated layer in cystic echinococcosis are captured by Kupffer cells via the lectin receptor Clec4F 93%
Similar papers in this journal
- Hookworm genes encoding intestinal excreted-secreted proteins are transcriptionally upregulated in response to the host's immune system 94%
- Parasitic helminth infections in humans modulate Trefoil Factor levels in a manner dependent on the species of parasite and age of the host 94%
- Miltefosine enhances infectivity of miltefosine-resistant Leishmania infantum by attenuating innate immune recognition 93%
Similar papers in this journal
- Resolving the origins of secretory products and anthelmintic responses in a human parasitic nematode at single-cell resolution. 94%
- Comparative transcriptomic analysis reveals translationally relevant processes in mouse models of malaria 94%
- Characterization of the Endogenous DAF-12 Ligand and Its Use as an Anthelmintic Agent in Strongyloides stercoralis 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.