The impact of CCR8+ regulatory T cells on cytotoxic T cell function in human lung cancer

Miya Haruna(Shionogi (Japan)), Azumi Ueyama(Shionogi (Japan)), Yoko Yamamoto(The University of Osaka), Michinari Hirata(Shionogi (Japan)), Kumiko Goto(Shionogi (Japan)), Hiroshi Yoshida(Shionogi (Japan)), Naoko Higuchi(Shionogi (Japan)), Tetsuya Yoshida(Shionogi (Japan)), Yujiro Kidani(Shionogi (Japan)), Yamami Nakamura(The University of Osaka), Morio Nagira(Shionogi (Japan)), Atsunari Kawashima(Osaka City University), Kota Iwahori(The University of Osaka), Yasushi Shintani(The University of Osaka), Naganari Ohkura(The University of Osaka), Hisashi Wada(The University of Osaka)
Scientific Reports
March 30, 2022
Cited by 65Open Access
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Abstract

Regulatory T cells (Tregs) suppress the host immune response and maintain immune homeostasis. Tregs also promote cancer progression and are involved in resistance to immune checkpoint inhibitor treatments. Recent studies identified selective CCR8 expression on tumor-infiltrating Tregs; CCR8+ Tregs have been indicated as a possible new target of cancer immunotherapy. Here, we investigated the features of CCR8+ Tregs in lung cancer patients. CCR8+ Tregs were highly activated and infiltration of CCR8+ Tregs in tumors was associated with poor prognosis in lung cancer patients. We also investigated their immune suppressive function, especially the influence on cytotoxic T lymphocyte cell function. The Cancer Genome Atlas analysis revealed that CD8 T cell activities were suppressed in high CCR8-expressing tumors. Additionally, depletion of CCR8+ cells enhanced CD8 T cell function in an ex vivo culture of lung tumor-infiltrating cells. Moreover, CCR8+ Tregs, but not CCR8- Tregs, induced from human PBMCs markedly suppressed CD8 T cell cytotoxicity. Finally, we demonstrated the therapeutic effect of targeting CCR8 in a murine model of lung cancer. These findings reveal the significance of CCR8+ Tregs for immunosuppression in lung cancer, especially via cytotoxic T lymphocyte cell suppression, and suggest the potential value of CCR8-targeted therapy for cancer treatment.


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