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CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory

Foxp3-expressing CD25(+)CD4(+) regulatory T cells (Tregs) are abundant in tumor tissues. Here, hypothesizing that tumor Tregs would clonally expand after they are activated by tumor-associated antigens to suppress antitumor immune responses, we performed single-cell analysis on tumor Tregs to charac...

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Autores principales: Kidani, Yujiro, Nogami, Wataru, Yasumizu, Yoshiaki, Kawashima, Atsunari, Tanaka, Atsushi, Sonoda, Yudai, Tona, Yumi, Nashiki, Kunitaka, Matsumoto, Reimi, Hagiwara, Masaki, Osaki, Motonao, Dohi, Keiji, Kanazawa, Takayuki, Ueyama, Azumi, Yoshikawa, Mai, Yoshida, Tetsuya, Matsumoto, Mitsunobu, Hojo, Kanji, Shinonome, Satomi, Yoshida, Hiroshi, Hirata, Michinari, Haruna, Miya, Nakamura, Yamami, Motooka, Daisuke, Okuzaki, Daisuke, Sugiyama, Yasuko, Kinoshita, Makoto, Okuno, Tatsusada, Kato, Taigo, Hatano, Koji, Uemura, Motohide, Imamura, Ryoichi, Yokoi, Kazunori, Tanemura, Atsushi, Shintani, Yasushi, Kimura, Tadashi, Nonomura, Norio, Wada, Hisashi, Mori, Masaki, Doki, Yuichiro, Ohkura, Naganari, Sakaguchi, Shimon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8851483/
https://www.ncbi.nlm.nih.gov/pubmed/35140181
http://dx.doi.org/10.1073/pnas.2114282119
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author Kidani, Yujiro
Nogami, Wataru
Yasumizu, Yoshiaki
Kawashima, Atsunari
Tanaka, Atsushi
Sonoda, Yudai
Tona, Yumi
Nashiki, Kunitaka
Matsumoto, Reimi
Hagiwara, Masaki
Osaki, Motonao
Dohi, Keiji
Kanazawa, Takayuki
Ueyama, Azumi
Yoshikawa, Mai
Yoshida, Tetsuya
Matsumoto, Mitsunobu
Hojo, Kanji
Shinonome, Satomi
Yoshida, Hiroshi
Hirata, Michinari
Haruna, Miya
Nakamura, Yamami
Motooka, Daisuke
Okuzaki, Daisuke
Sugiyama, Yasuko
Kinoshita, Makoto
Okuno, Tatsusada
Kato, Taigo
Hatano, Koji
Uemura, Motohide
Imamura, Ryoichi
Yokoi, Kazunori
Tanemura, Atsushi
Shintani, Yasushi
Kimura, Tadashi
Nonomura, Norio
Wada, Hisashi
Mori, Masaki
Doki, Yuichiro
Ohkura, Naganari
Sakaguchi, Shimon
author_facet Kidani, Yujiro
Nogami, Wataru
Yasumizu, Yoshiaki
Kawashima, Atsunari
Tanaka, Atsushi
Sonoda, Yudai
Tona, Yumi
Nashiki, Kunitaka
Matsumoto, Reimi
Hagiwara, Masaki
Osaki, Motonao
Dohi, Keiji
Kanazawa, Takayuki
Ueyama, Azumi
Yoshikawa, Mai
Yoshida, Tetsuya
Matsumoto, Mitsunobu
Hojo, Kanji
Shinonome, Satomi
Yoshida, Hiroshi
Hirata, Michinari
Haruna, Miya
Nakamura, Yamami
Motooka, Daisuke
Okuzaki, Daisuke
Sugiyama, Yasuko
Kinoshita, Makoto
Okuno, Tatsusada
Kato, Taigo
Hatano, Koji
Uemura, Motohide
Imamura, Ryoichi
Yokoi, Kazunori
Tanemura, Atsushi
Shintani, Yasushi
Kimura, Tadashi
Nonomura, Norio
Wada, Hisashi
Mori, Masaki
Doki, Yuichiro
Ohkura, Naganari
Sakaguchi, Shimon
author_sort Kidani, Yujiro
collection PubMed
description Foxp3-expressing CD25(+)CD4(+) regulatory T cells (Tregs) are abundant in tumor tissues. Here, hypothesizing that tumor Tregs would clonally expand after they are activated by tumor-associated antigens to suppress antitumor immune responses, we performed single-cell analysis on tumor Tregs to characterize them by T cell receptor clonotype and gene-expression profiles. We found that multiclonal Tregs present in tumor tissues predominantly expressed the chemokine receptor CCR8. In mice and humans, CCR8(+) Tregs constituted 30 to 80% of tumor Tregs in various cancers and less than 10% of Tregs in other tissues, whereas most tumor-infiltrating conventional T cells (Tconvs) were CCR8(–). CCR8(+) tumor Tregs were highly differentiated and functionally stable. Administration of cell-depleting anti-CCR8 monoclonal antibodies (mAbs) indeed selectively eliminated multiclonal tumor Tregs, leading to cure of established tumors in mice. The treatment resulted in the expansion of CD8(+) effector Tconvs, including tumor antigen-specific ones, that were more activated and less exhausted than those induced by PD-1 immune checkpoint blockade. Anti-CCR8 mAb treatment also evoked strong secondary immune responses against the same tumor cell line inoculated several months after tumor eradication, indicating that elimination of tumor-reactive multiclonal Tregs was sufficient to induce memory-type tumor-specific effector Tconvs. Despite induction of such potent tumor immunity, anti-CCR8 mAb treatment elicited minimal autoimmunity in mice, contrasting with systemic Treg depletion, which eradicated tumors but induced severe autoimmune disease. Thus, specific removal of clonally expanding Tregs in tumor tissues for a limited period by cell-depleting anti-CCR8 mAb treatment can generate potent tumor immunity with long-lasting memory and without deleterious autoimmunity.
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spelling pubmed-88514832022-08-10 CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory Kidani, Yujiro Nogami, Wataru Yasumizu, Yoshiaki Kawashima, Atsunari Tanaka, Atsushi Sonoda, Yudai Tona, Yumi Nashiki, Kunitaka Matsumoto, Reimi Hagiwara, Masaki Osaki, Motonao Dohi, Keiji Kanazawa, Takayuki Ueyama, Azumi Yoshikawa, Mai Yoshida, Tetsuya Matsumoto, Mitsunobu Hojo, Kanji Shinonome, Satomi Yoshida, Hiroshi Hirata, Michinari Haruna, Miya Nakamura, Yamami Motooka, Daisuke Okuzaki, Daisuke Sugiyama, Yasuko Kinoshita, Makoto Okuno, Tatsusada Kato, Taigo Hatano, Koji Uemura, Motohide Imamura, Ryoichi Yokoi, Kazunori Tanemura, Atsushi Shintani, Yasushi Kimura, Tadashi Nonomura, Norio Wada, Hisashi Mori, Masaki Doki, Yuichiro Ohkura, Naganari Sakaguchi, Shimon Proc Natl Acad Sci U S A Biological Sciences Foxp3-expressing CD25(+)CD4(+) regulatory T cells (Tregs) are abundant in tumor tissues. Here, hypothesizing that tumor Tregs would clonally expand after they are activated by tumor-associated antigens to suppress antitumor immune responses, we performed single-cell analysis on tumor Tregs to characterize them by T cell receptor clonotype and gene-expression profiles. We found that multiclonal Tregs present in tumor tissues predominantly expressed the chemokine receptor CCR8. In mice and humans, CCR8(+) Tregs constituted 30 to 80% of tumor Tregs in various cancers and less than 10% of Tregs in other tissues, whereas most tumor-infiltrating conventional T cells (Tconvs) were CCR8(–). CCR8(+) tumor Tregs were highly differentiated and functionally stable. Administration of cell-depleting anti-CCR8 monoclonal antibodies (mAbs) indeed selectively eliminated multiclonal tumor Tregs, leading to cure of established tumors in mice. The treatment resulted in the expansion of CD8(+) effector Tconvs, including tumor antigen-specific ones, that were more activated and less exhausted than those induced by PD-1 immune checkpoint blockade. Anti-CCR8 mAb treatment also evoked strong secondary immune responses against the same tumor cell line inoculated several months after tumor eradication, indicating that elimination of tumor-reactive multiclonal Tregs was sufficient to induce memory-type tumor-specific effector Tconvs. Despite induction of such potent tumor immunity, anti-CCR8 mAb treatment elicited minimal autoimmunity in mice, contrasting with systemic Treg depletion, which eradicated tumors but induced severe autoimmune disease. Thus, specific removal of clonally expanding Tregs in tumor tissues for a limited period by cell-depleting anti-CCR8 mAb treatment can generate potent tumor immunity with long-lasting memory and without deleterious autoimmunity. National Academy of Sciences 2022-02-09 2022-02-15 /pmc/articles/PMC8851483/ /pubmed/35140181 http://dx.doi.org/10.1073/pnas.2114282119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Kidani, Yujiro
Nogami, Wataru
Yasumizu, Yoshiaki
Kawashima, Atsunari
Tanaka, Atsushi
Sonoda, Yudai
Tona, Yumi
Nashiki, Kunitaka
Matsumoto, Reimi
Hagiwara, Masaki
Osaki, Motonao
Dohi, Keiji
Kanazawa, Takayuki
Ueyama, Azumi
Yoshikawa, Mai
Yoshida, Tetsuya
Matsumoto, Mitsunobu
Hojo, Kanji
Shinonome, Satomi
Yoshida, Hiroshi
Hirata, Michinari
Haruna, Miya
Nakamura, Yamami
Motooka, Daisuke
Okuzaki, Daisuke
Sugiyama, Yasuko
Kinoshita, Makoto
Okuno, Tatsusada
Kato, Taigo
Hatano, Koji
Uemura, Motohide
Imamura, Ryoichi
Yokoi, Kazunori
Tanemura, Atsushi
Shintani, Yasushi
Kimura, Tadashi
Nonomura, Norio
Wada, Hisashi
Mori, Masaki
Doki, Yuichiro
Ohkura, Naganari
Sakaguchi, Shimon
CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
title CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
title_full CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
title_fullStr CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
title_full_unstemmed CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
title_short CCR8-targeted specific depletion of clonally expanded Treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
title_sort ccr8-targeted specific depletion of clonally expanded treg cells in tumor tissues evokes potent tumor immunity with long-lasting memory
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8851483/
https://www.ncbi.nlm.nih.gov/pubmed/35140181
http://dx.doi.org/10.1073/pnas.2114282119
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