Back

Spatially-resolved single cell transcriptomics reveal a critical role for γδ T cells in the control of skin inflammation and subcutaneous adipose wasting during chronic Trypanosoma brucei infection

Alcala, J. F. Q.; Sinton, M. C.; Chandrasegaran, P.; Lestari, A. N.; Heslop, R.; Cheaib, B.; Ogunsola, J.; Ngoyi, D. M.; Swar, N. R. K.; Cooper, A.; Coffelt, S. B.; MacLeod, A.

2023-03-02 immunology
10.1101/2023.03.01.530674 bioRxiv
Show abstract

African trypanosome parasites colonise the skin in a process important for parasite transmission. However, how the skin responses to trypanosome infection remain unresolved. Here, using a combination of spatial and single cell transcriptomics, coupled with in vivo genetic models, we investigated the local immune response of the skin in a murine model of infection. First, we detected a significant expansion of IL-17A-producing {gamma}{delta} T cells (primarily V{gamma}6+) in the infected murine skin compared to naive controls that occur mainly in the subcutaneous adipose tissue. Second, interstitial preadipocytes located in the subcutaneous adipose tissue upregulate several genes involved in inflammation and antigen presentation, including T cell activation and survival. In silico cell-cell communication suggests that adipocytes trigger {gamma}{delta} T cell activation locally via Cd40, Il6, Il10, and Tnfsf18 signalling, amongst others. Third, mice deficient in IL-17A-producing {gamma}{delta} T cells show extensive inflammation, increased frequency of skin-resident IFN{gamma}-producing CD8+ T cells and limited subcutaneous adipose tissue wasting compared to wild-type infected controls, independent of TH1 CD4+ T cells and parasite burden. Based on these observations, we proposed a model whereby adipocytes as well as V{gamma}6+ cells act concertedly in the subcutaneous adipose tissue to limit skin inflammation and tissue wasting. These studies shed light onto the mechanisms of {gamma}{delta} T cell-mediated immunity in the skin in the context of African trypanosome infection, as well as a potential role of immature and mature adipocytes as homeostatic regulators in the skin during chronic infection.

Matching journals

The top 5 journals account for 50% of the predicted probability mass.

50% of probability mass above

"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.