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Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma

OBJECTIVES: The CD274 (programmed cell death 1 ligand 1, PD‐L1)/PDCD1 (programmed cell death 1, PD‐1) immune checkpoint axis is known to regulate the antitumor immune response. Evidence also supports an immunosuppressive effect of Fusobacterium nucleatum. We hypothesised that tumor CD274 overexpress...

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Autores principales: Ugai, Tomotaka, Shimizu, Takashi, Kawamura, Hidetaka, Ugai, Satoko, Takashima, Yasutoshi, Usui, Genki, Väyrynen, Juha P, Okadome, Kazuo, Haruki, Koichiro, Akimoto, Naohiko, Masugi, Yohei, da Silva, Annacarolina, Mima, Kosuke, Zhang, Xuehong, Chan, Andrew T, Wang, Molin, Garrett, Wendy S, Freeman, Gordon J, Meyerhardt, Jeffrey A, Nowak, Jonathan A, Song, Mingyang, Giannakis, Marios, Ogino, Shuji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10394676/
https://www.ncbi.nlm.nih.gov/pubmed/37538192
http://dx.doi.org/10.1002/cti2.1453
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author Ugai, Tomotaka
Shimizu, Takashi
Kawamura, Hidetaka
Ugai, Satoko
Takashima, Yasutoshi
Usui, Genki
Väyrynen, Juha P
Okadome, Kazuo
Haruki, Koichiro
Akimoto, Naohiko
Masugi, Yohei
da Silva, Annacarolina
Mima, Kosuke
Zhang, Xuehong
Chan, Andrew T
Wang, Molin
Garrett, Wendy S
Freeman, Gordon J
Meyerhardt, Jeffrey A
Nowak, Jonathan A
Song, Mingyang
Giannakis, Marios
Ogino, Shuji
author_facet Ugai, Tomotaka
Shimizu, Takashi
Kawamura, Hidetaka
Ugai, Satoko
Takashima, Yasutoshi
Usui, Genki
Väyrynen, Juha P
Okadome, Kazuo
Haruki, Koichiro
Akimoto, Naohiko
Masugi, Yohei
da Silva, Annacarolina
Mima, Kosuke
Zhang, Xuehong
Chan, Andrew T
Wang, Molin
Garrett, Wendy S
Freeman, Gordon J
Meyerhardt, Jeffrey A
Nowak, Jonathan A
Song, Mingyang
Giannakis, Marios
Ogino, Shuji
author_sort Ugai, Tomotaka
collection PubMed
description OBJECTIVES: The CD274 (programmed cell death 1 ligand 1, PD‐L1)/PDCD1 (programmed cell death 1, PD‐1) immune checkpoint axis is known to regulate the antitumor immune response. Evidence also supports an immunosuppressive effect of Fusobacterium nucleatum. We hypothesised that tumor CD274 overexpression might be inversely associated with abundance of F. nucleatum in colorectal carcinoma. METHODS: We assessed tumor CD274 expression by immunohistochemistry and F. nucleatum DNA within tumor tissue by quantitative PCR in 812 cases among 4465 incident rectal and colon cancer cases that had occurred in two prospective cohort studies. Multivariable logistic regression analyses with inverse probability weighting were used to adjust for selection bias because of tissue data availability and potential confounders including microsatellite instability status, CpG island methylator phenotype, LINE‐1 methylation level and KRAS, BRAF and PIK3CA mutations. RESULTS: Fusobacterium nucleatum DNA was detected in tumor tissue in 109 (13%) cases. Tumor CD274 expression level was inversely associated with the amount of F. nucleatum in colorectal cancer tissue (P = 0.0077). For one category‐unit increase in three ordinal F. nucleatum categories (negative vs. low vs. high), multivariable‐adjusted odds ratios (with 95% confidence interval) of the low, intermediate and high CD274 categories (vs. negative) were 0.78 (0.41–1.51), 0.64 (0.32–1.28) and 0.50 (0.25–0.99), respectively (P (trend) = 0.032). CONCLUSIONS: Tumor CD274 expression level was inversely associated with the amount of F. nucleatum in colorectal cancer tissue, suggesting that different immunosuppressive mechanisms (i.e. PDCD1 immune checkpoint activation and tumor F. nucleatum enrichment) tend to be used by different tumor subgroups.
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spelling pubmed-103946762023-08-03 Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma Ugai, Tomotaka Shimizu, Takashi Kawamura, Hidetaka Ugai, Satoko Takashima, Yasutoshi Usui, Genki Väyrynen, Juha P Okadome, Kazuo Haruki, Koichiro Akimoto, Naohiko Masugi, Yohei da Silva, Annacarolina Mima, Kosuke Zhang, Xuehong Chan, Andrew T Wang, Molin Garrett, Wendy S Freeman, Gordon J Meyerhardt, Jeffrey A Nowak, Jonathan A Song, Mingyang Giannakis, Marios Ogino, Shuji Clin Transl Immunology Original Articles OBJECTIVES: The CD274 (programmed cell death 1 ligand 1, PD‐L1)/PDCD1 (programmed cell death 1, PD‐1) immune checkpoint axis is known to regulate the antitumor immune response. Evidence also supports an immunosuppressive effect of Fusobacterium nucleatum. We hypothesised that tumor CD274 overexpression might be inversely associated with abundance of F. nucleatum in colorectal carcinoma. METHODS: We assessed tumor CD274 expression by immunohistochemistry and F. nucleatum DNA within tumor tissue by quantitative PCR in 812 cases among 4465 incident rectal and colon cancer cases that had occurred in two prospective cohort studies. Multivariable logistic regression analyses with inverse probability weighting were used to adjust for selection bias because of tissue data availability and potential confounders including microsatellite instability status, CpG island methylator phenotype, LINE‐1 methylation level and KRAS, BRAF and PIK3CA mutations. RESULTS: Fusobacterium nucleatum DNA was detected in tumor tissue in 109 (13%) cases. Tumor CD274 expression level was inversely associated with the amount of F. nucleatum in colorectal cancer tissue (P = 0.0077). For one category‐unit increase in three ordinal F. nucleatum categories (negative vs. low vs. high), multivariable‐adjusted odds ratios (with 95% confidence interval) of the low, intermediate and high CD274 categories (vs. negative) were 0.78 (0.41–1.51), 0.64 (0.32–1.28) and 0.50 (0.25–0.99), respectively (P (trend) = 0.032). CONCLUSIONS: Tumor CD274 expression level was inversely associated with the amount of F. nucleatum in colorectal cancer tissue, suggesting that different immunosuppressive mechanisms (i.e. PDCD1 immune checkpoint activation and tumor F. nucleatum enrichment) tend to be used by different tumor subgroups. John Wiley and Sons Inc. 2023-08-02 /pmc/articles/PMC10394676/ /pubmed/37538192 http://dx.doi.org/10.1002/cti2.1453 Text en © 2023 The Authors. Clinical & Translational Immunology published by John Wiley & Sons Australia, Ltd on behalf of Australian and New Zealand Society for Immunology, Inc. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Ugai, Tomotaka
Shimizu, Takashi
Kawamura, Hidetaka
Ugai, Satoko
Takashima, Yasutoshi
Usui, Genki
Väyrynen, Juha P
Okadome, Kazuo
Haruki, Koichiro
Akimoto, Naohiko
Masugi, Yohei
da Silva, Annacarolina
Mima, Kosuke
Zhang, Xuehong
Chan, Andrew T
Wang, Molin
Garrett, Wendy S
Freeman, Gordon J
Meyerhardt, Jeffrey A
Nowak, Jonathan A
Song, Mingyang
Giannakis, Marios
Ogino, Shuji
Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma
title Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma
title_full Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma
title_fullStr Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma
title_full_unstemmed Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma
title_short Inverse relationship between Fusobacterium nucleatum amount and tumor CD274 (PD‐L1) expression in colorectal carcinoma
title_sort inverse relationship between fusobacterium nucleatum amount and tumor cd274 (pd‐l1) expression in colorectal carcinoma
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10394676/
https://www.ncbi.nlm.nih.gov/pubmed/37538192
http://dx.doi.org/10.1002/cti2.1453
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