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FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression

Neutrophils constitute abundant cellular components in human gastric cancer (GC) tissues, but their protumorigenic subset in pathogenesis of GC progression is unclear. Here, it is found that patients with GC show significantly higher neutrophil infiltration in tumors that is regulated by CXCL12‐CXCR...

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Autores principales: Shan, Zhi‐Guo, Zhao, Yong‐Liang, Zhang, Jin‐Yu, Yan, Zong‐Bao, Wang, Ting‐Ting, Mao, Fang‐Yuan, Teng, Yong‐Sheng, Peng, Liu‐Sheng, Chen, Wan‐Yan, Wang, Pan, Cheng, Ping, Tian, Wen‐Qing, Chen, Jun, Chen, Weisan, Zhuang, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8844550/
https://www.ncbi.nlm.nih.gov/pubmed/34957697
http://dx.doi.org/10.1002/advs.202103543
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author Shan, Zhi‐Guo
Zhao, Yong‐Liang
Zhang, Jin‐Yu
Yan, Zong‐Bao
Wang, Ting‐Ting
Mao, Fang‐Yuan
Teng, Yong‐Sheng
Peng, Liu‐Sheng
Chen, Wan‐Yan
Wang, Pan
Cheng, Ping
Tian, Wen‐Qing
Chen, Jun
Chen, Weisan
Zhuang, Yuan
author_facet Shan, Zhi‐Guo
Zhao, Yong‐Liang
Zhang, Jin‐Yu
Yan, Zong‐Bao
Wang, Ting‐Ting
Mao, Fang‐Yuan
Teng, Yong‐Sheng
Peng, Liu‐Sheng
Chen, Wan‐Yan
Wang, Pan
Cheng, Ping
Tian, Wen‐Qing
Chen, Jun
Chen, Weisan
Zhuang, Yuan
author_sort Shan, Zhi‐Guo
collection PubMed
description Neutrophils constitute abundant cellular components in human gastric cancer (GC) tissues, but their protumorigenic subset in pathogenesis of GC progression is unclear. Here, it is found that patients with GC show significantly higher neutrophil infiltration in tumors that is regulated by CXCL12‐CXCR4 chemotaxis. These tumor‐infiltrating neutrophils express high level immunosuppressive molecules FasL and PD‐L2, and this FasL(+)PD‐L2(+) neutrophil subset with a unique phenotype constitutes at least 20% of all neutrophils in advanced GC and predicts poor patient survival. Tumor induces neutrophils to express FasL and PD‐L2 proteins with similar phenotype to those in GC tumors in both time‐dependent and dose‐dependent manners. Mechanistically, Th17 cell‐derived IL‐17A and tumor cell‐derived G‐CSF can significantly induce neutrophil FasL and PD‐L2 expression via activating ERK‐NF‐κB and JAK‐STAT3 signaling pathway, respectively. Importantly, upon over‐expressing FasL and PD‐L2, neutrophils acquire immunosuppressive functions on tumor‐specific CD8(+) T‐cells and promote the growth and progression of human GC tumors in vitro and in vivo, which can be reversed by blocking FasL and PD‐L2 on these neutrophils. Thus, the work identifies a novel protumorigenic FasL(+)PD‐L2(+) neutrophil subset in GC and provides new insights for human cancer immunosuppression and anti‐cancer therapies targeting these pathogenic cells.
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spelling pubmed-88445502022-02-24 FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression Shan, Zhi‐Guo Zhao, Yong‐Liang Zhang, Jin‐Yu Yan, Zong‐Bao Wang, Ting‐Ting Mao, Fang‐Yuan Teng, Yong‐Sheng Peng, Liu‐Sheng Chen, Wan‐Yan Wang, Pan Cheng, Ping Tian, Wen‐Qing Chen, Jun Chen, Weisan Zhuang, Yuan Adv Sci (Weinh) Research Articles Neutrophils constitute abundant cellular components in human gastric cancer (GC) tissues, but their protumorigenic subset in pathogenesis of GC progression is unclear. Here, it is found that patients with GC show significantly higher neutrophil infiltration in tumors that is regulated by CXCL12‐CXCR4 chemotaxis. These tumor‐infiltrating neutrophils express high level immunosuppressive molecules FasL and PD‐L2, and this FasL(+)PD‐L2(+) neutrophil subset with a unique phenotype constitutes at least 20% of all neutrophils in advanced GC and predicts poor patient survival. Tumor induces neutrophils to express FasL and PD‐L2 proteins with similar phenotype to those in GC tumors in both time‐dependent and dose‐dependent manners. Mechanistically, Th17 cell‐derived IL‐17A and tumor cell‐derived G‐CSF can significantly induce neutrophil FasL and PD‐L2 expression via activating ERK‐NF‐κB and JAK‐STAT3 signaling pathway, respectively. Importantly, upon over‐expressing FasL and PD‐L2, neutrophils acquire immunosuppressive functions on tumor‐specific CD8(+) T‐cells and promote the growth and progression of human GC tumors in vitro and in vivo, which can be reversed by blocking FasL and PD‐L2 on these neutrophils. Thus, the work identifies a novel protumorigenic FasL(+)PD‐L2(+) neutrophil subset in GC and provides new insights for human cancer immunosuppression and anti‐cancer therapies targeting these pathogenic cells. John Wiley and Sons Inc. 2021-12-26 /pmc/articles/PMC8844550/ /pubmed/34957697 http://dx.doi.org/10.1002/advs.202103543 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH 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 Research Articles
Shan, Zhi‐Guo
Zhao, Yong‐Liang
Zhang, Jin‐Yu
Yan, Zong‐Bao
Wang, Ting‐Ting
Mao, Fang‐Yuan
Teng, Yong‐Sheng
Peng, Liu‐Sheng
Chen, Wan‐Yan
Wang, Pan
Cheng, Ping
Tian, Wen‐Qing
Chen, Jun
Chen, Weisan
Zhuang, Yuan
FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression
title FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression
title_full FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression
title_fullStr FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression
title_full_unstemmed FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression
title_short FasL(+)PD‐L2(+) Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression
title_sort fasl(+)pd‐l2(+) identifies a novel immunosuppressive neutrophil population in human gastric cancer that promotes disease progression
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8844550/
https://www.ncbi.nlm.nih.gov/pubmed/34957697
http://dx.doi.org/10.1002/advs.202103543
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