Tc17 CD8+ T-cells accumulate in murine atherosclerotic lesions, but do not contribute to early atherosclerosis development

Publication date

2021-12-01

Authors

van Duijn, Janine
de Jong, Maaike J M
Benne, NaomiORCID 0000-0003-3635-9798ISNI 0000000491592055
Leboux, Romain J T
van Ooijen, Marieke E
Kruit, Nicky
Foks, Amanda C
Jiskoot, Wim
Bot, Ilze
Kuiper, Johan

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc

Abstract

Aims CD8+ T cells can differentiate into subpopulations that are characterized by a specific cytokine profile, such as the Tc17 population that produces interleukin-17. The role of this CD8+ T-cell subset in atherosclerosis remains elusive. In this study, we therefore investigated the contribution of Tc17 cells to the development of atherosclerosis. Methods and results Flow cytometry analysis of atherosclerotic lesions from apolipoprotein E-deficient mice revealed a pronounced increase in RORγt+CD8+ T cells compared to the spleen, indicating a lesion-specific increase in Tc17 cells. To study whether and how the Tc17 subset affects atherosclerosis, we performed an adoptive transfer of Tc17 cells or undifferentiated Tc0 cells into CD8−/− low-density lipoprotein receptor-deficient mice fed a Western-type diet. Using flow cytometry, we showed that Tc17 cells retained a high level of interleukin-17A production in vivo. Moreover, Tc17 cells produced lower levels of interferon-γ than their Tc0 counterparts. Analysis of the aortic root revealed that the transfer of Tc17 cells did not increase atherosclerotic lesion size, in contrast to Tc0-treated mice. Conclusion These findings demonstrate a lesion-localized increase in Tc17 cells in an atherosclerotic mouse model. Tc17 cells appeared to be non-atherogenic, in contrast to their Tc0 counterpart.

Keywords

CD8 T-cell, Atherosclerosis, IL-17, IFN-y

Citation

van Duijn, J, de Jong, M J M, Benne, N, Leboux, R J T, van Ooijen, M E, Kruit, N, Foks, A C, Jiskoot, W, Bot, I, Kuiper, J & Slütter, B 2021, 'Tc17 CD8+ T-cells accumulate in murine atherosclerotic lesions, but do not contribute to early atherosclerosis development', Cardiovascular Research, vol. 117, no. 14, pp. 2755–2766. https://doi.org/10.1093/cvr/cvaa286