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Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5

Cancer‐associated fibroblasts (CAFs) play a key role in orchestrating the tumor malignant biological properties within tumor microenvironment and evidences demonstrate that CAFs are a critical regulator of tumoral immunosuppression of the T cell response. However, the functions and regulation of CAF...

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Autores principales: Li, Ziqian, Zhou, Jiawang, Zhang, Junjie, Li, Shiying, Wang, Hongsheng, Du, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6767568/
https://www.ncbi.nlm.nih.gov/pubmed/30873585
http://dx.doi.org/10.1002/ijc.32278
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author Li, Ziqian
Zhou, Jiawang
Zhang, Junjie
Li, Shiying
Wang, Hongsheng
Du, Jun
author_facet Li, Ziqian
Zhou, Jiawang
Zhang, Junjie
Li, Shiying
Wang, Hongsheng
Du, Jun
author_sort Li, Ziqian
collection PubMed
description Cancer‐associated fibroblasts (CAFs) play a key role in orchestrating the tumor malignant biological properties within tumor microenvironment and evidences demonstrate that CAFs are a critical regulator of tumoral immunosuppression of the T cell response. However, the functions and regulation of CAFs in the expression of programmed death‐ligand 1 (PD‐L1) in melanoma and colorectal carcinoma (CRC) are not completely understood. Herein, by scrutinizing the expression of α‐SMA and PD‐L1 in melanoma and CRC tissues, we found that CAFs was positive correlated with PD‐L1 expression. Further analyses showed that CAFs promoted PD‐L1 expression in mice tumor cells. By detecting a majority of cytokines expression in normal mice fibroblasts and CAFs, we determined that CXCL5 was abnormal high expression in CAFs and the immunohistochemistry and in situ hybridization confirmed that were CAFs which were expressing CXCL5. In addition, CXCL5 promoted PD‐L1 expression in B16, CT26, A375 and HCT116. The silencing of CXCR2, the receptor of CXCL5, inhibited the PD‐L1 expression induced by CAFs in turn. Functionally, CXCL5 derived by CAFs promoted PD‐L1 expression in mice tumor cells through activating PI3K/AKT signaling. LY294002, the inhibitor of PI3K, confirmed that CXCL5 forested an immunosuppression microenvironment by promoting PD‐L1 expression via PI3K/AKT signaling. Meanwhile, the B16/CT26 xenograft tumor models were used and both CXCR2 and p‐AKT were found to be positively correlated with PD‐L1 in the xenograft tumor tissues. The immunosuppressive action of CAFs on tumor cells is probably reflective of them being a potential therapeutic biomarker for melanoma and CRC.
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spelling pubmed-67675682019-10-03 Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5 Li, Ziqian Zhou, Jiawang Zhang, Junjie Li, Shiying Wang, Hongsheng Du, Jun Int J Cancer Tumor Immunology and Microenvironment Cancer‐associated fibroblasts (CAFs) play a key role in orchestrating the tumor malignant biological properties within tumor microenvironment and evidences demonstrate that CAFs are a critical regulator of tumoral immunosuppression of the T cell response. However, the functions and regulation of CAFs in the expression of programmed death‐ligand 1 (PD‐L1) in melanoma and colorectal carcinoma (CRC) are not completely understood. Herein, by scrutinizing the expression of α‐SMA and PD‐L1 in melanoma and CRC tissues, we found that CAFs was positive correlated with PD‐L1 expression. Further analyses showed that CAFs promoted PD‐L1 expression in mice tumor cells. By detecting a majority of cytokines expression in normal mice fibroblasts and CAFs, we determined that CXCL5 was abnormal high expression in CAFs and the immunohistochemistry and in situ hybridization confirmed that were CAFs which were expressing CXCL5. In addition, CXCL5 promoted PD‐L1 expression in B16, CT26, A375 and HCT116. The silencing of CXCR2, the receptor of CXCL5, inhibited the PD‐L1 expression induced by CAFs in turn. Functionally, CXCL5 derived by CAFs promoted PD‐L1 expression in mice tumor cells through activating PI3K/AKT signaling. LY294002, the inhibitor of PI3K, confirmed that CXCL5 forested an immunosuppression microenvironment by promoting PD‐L1 expression via PI3K/AKT signaling. Meanwhile, the B16/CT26 xenograft tumor models were used and both CXCR2 and p‐AKT were found to be positively correlated with PD‐L1 in the xenograft tumor tissues. The immunosuppressive action of CAFs on tumor cells is probably reflective of them being a potential therapeutic biomarker for melanoma and CRC. John Wiley & Sons, Inc. 2019-04-06 2019-10-01 /pmc/articles/PMC6767568/ /pubmed/30873585 http://dx.doi.org/10.1002/ijc.32278 Text en © 2019 The Authors. International Journal of Cancer published by John Wiley & Sons Ltd on behalf of UICC This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Tumor Immunology and Microenvironment
Li, Ziqian
Zhou, Jiawang
Zhang, Junjie
Li, Shiying
Wang, Hongsheng
Du, Jun
Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5
title Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5
title_full Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5
title_fullStr Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5
title_full_unstemmed Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5
title_short Cancer‐associated fibroblasts promote PD‐L1 expression in mice cancer cells via secreting CXCL5
title_sort cancer‐associated fibroblasts promote pd‐l1 expression in mice cancer cells via secreting cxcl5
topic Tumor Immunology and Microenvironment
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6767568/
https://www.ncbi.nlm.nih.gov/pubmed/30873585
http://dx.doi.org/10.1002/ijc.32278
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