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c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities

SIMPLE SUMMARY: Multiple non-cancerous cells are known to be involved in brain metastasis, and the roles of neutrophils during this event are poorly understood. We aim to understand how tumor-infiltrated neutrophils promote breast cancer brain metastasis and how tumor cells affect the properties of...

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Autores principales: Liu, Yin, Smith, Margaret R., Wang, Yuezhu, D’Agostino, Ralph, Ruiz, Jimmy, Lycan, Thomas, Kucera, Gregory L., Miller, Lance D., Li, Wencheng, Chan, Michael D., Farris, Michael, Su, Jing, Song, Qianqian, Zhao, Dawen, Chandrasekaran, Arvind, Xing, Fei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10177081/
https://www.ncbi.nlm.nih.gov/pubmed/37174093
http://dx.doi.org/10.3390/cancers15092626
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author Liu, Yin
Smith, Margaret R.
Wang, Yuezhu
D’Agostino, Ralph
Ruiz, Jimmy
Lycan, Thomas
Kucera, Gregory L.
Miller, Lance D.
Li, Wencheng
Chan, Michael D.
Farris, Michael
Su, Jing
Song, Qianqian
Zhao, Dawen
Chandrasekaran, Arvind
Xing, Fei
author_facet Liu, Yin
Smith, Margaret R.
Wang, Yuezhu
D’Agostino, Ralph
Ruiz, Jimmy
Lycan, Thomas
Kucera, Gregory L.
Miller, Lance D.
Li, Wencheng
Chan, Michael D.
Farris, Michael
Su, Jing
Song, Qianqian
Zhao, Dawen
Chandrasekaran, Arvind
Xing, Fei
author_sort Liu, Yin
collection PubMed
description SIMPLE SUMMARY: Multiple non-cancerous cells are known to be involved in brain metastasis, and the roles of neutrophils during this event are poorly understood. We aim to understand how tumor-infiltrated neutrophils promote breast cancer brain metastasis and how tumor cells affect the properties of neutrophils. Utilizing patient-based analyses together with our unique animal models, we discovered that several c-Met mediated inflammatory cytokines, including CXCL1/2 and G/GM-CSF, are critical to the neutrophil recruitment and activity in the metastatic lesions. In return, neutrophils activated by those factors secrete a high level of lipocalin 2 (LCN2), which in turn enhances the stemness of tumor cells. Our study revealed novel interactions between neutrophils and brain metastatic cells, which may offer new insight into treating brain metastasis. ABSTRACT: The brain is one of the most common metastatic sites among breast cancer patients, especially in those who have Her2-positive or triple-negative tumors. The brain microenvironment has been considered immune privileged, and the exact mechanisms of how immune cells in the brain microenvironment contribute to brain metastasis remain elusive. In this study, we found that neutrophils are recruited and influenced by c-Met high brain metastatic cells in the metastatic sites, and depletion of neutrophils significantly suppressed brain metastasis in animal models. Overexpression of c-Met in tumor cells enhances the secretion of a group of cytokines, including CXCL1/2, G-CSF, and GM-CSF, which play critical roles in neutrophil attraction, granulopoiesis, and homeostasis. Meanwhile, our transcriptomic analysis demonstrated that conditioned media from c-Met high cells significantly induced the secretion of lipocalin 2 (LCN2) from neutrophils, which in turn promotes the self-renewal of cancer stem cells. Our study unveiled the molecular and pathogenic mechanisms of how crosstalk between innate immune cells and tumor cells facilitates tumor progression in the brain, which provides novel therapeutic targets for treating brain metastasis.
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spelling pubmed-101770812023-05-13 c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities Liu, Yin Smith, Margaret R. Wang, Yuezhu D’Agostino, Ralph Ruiz, Jimmy Lycan, Thomas Kucera, Gregory L. Miller, Lance D. Li, Wencheng Chan, Michael D. Farris, Michael Su, Jing Song, Qianqian Zhao, Dawen Chandrasekaran, Arvind Xing, Fei Cancers (Basel) Article SIMPLE SUMMARY: Multiple non-cancerous cells are known to be involved in brain metastasis, and the roles of neutrophils during this event are poorly understood. We aim to understand how tumor-infiltrated neutrophils promote breast cancer brain metastasis and how tumor cells affect the properties of neutrophils. Utilizing patient-based analyses together with our unique animal models, we discovered that several c-Met mediated inflammatory cytokines, including CXCL1/2 and G/GM-CSF, are critical to the neutrophil recruitment and activity in the metastatic lesions. In return, neutrophils activated by those factors secrete a high level of lipocalin 2 (LCN2), which in turn enhances the stemness of tumor cells. Our study revealed novel interactions between neutrophils and brain metastatic cells, which may offer new insight into treating brain metastasis. ABSTRACT: The brain is one of the most common metastatic sites among breast cancer patients, especially in those who have Her2-positive or triple-negative tumors. The brain microenvironment has been considered immune privileged, and the exact mechanisms of how immune cells in the brain microenvironment contribute to brain metastasis remain elusive. In this study, we found that neutrophils are recruited and influenced by c-Met high brain metastatic cells in the metastatic sites, and depletion of neutrophils significantly suppressed brain metastasis in animal models. Overexpression of c-Met in tumor cells enhances the secretion of a group of cytokines, including CXCL1/2, G-CSF, and GM-CSF, which play critical roles in neutrophil attraction, granulopoiesis, and homeostasis. Meanwhile, our transcriptomic analysis demonstrated that conditioned media from c-Met high cells significantly induced the secretion of lipocalin 2 (LCN2) from neutrophils, which in turn promotes the self-renewal of cancer stem cells. Our study unveiled the molecular and pathogenic mechanisms of how crosstalk between innate immune cells and tumor cells facilitates tumor progression in the brain, which provides novel therapeutic targets for treating brain metastasis. MDPI 2023-05-05 /pmc/articles/PMC10177081/ /pubmed/37174093 http://dx.doi.org/10.3390/cancers15092626 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Yin
Smith, Margaret R.
Wang, Yuezhu
D’Agostino, Ralph
Ruiz, Jimmy
Lycan, Thomas
Kucera, Gregory L.
Miller, Lance D.
Li, Wencheng
Chan, Michael D.
Farris, Michael
Su, Jing
Song, Qianqian
Zhao, Dawen
Chandrasekaran, Arvind
Xing, Fei
c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities
title c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities
title_full c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities
title_fullStr c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities
title_full_unstemmed c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities
title_short c-Met Mediated Cytokine Network Promotes Brain Metastasis of Breast Cancer by Remodeling Neutrophil Activities
title_sort c-met mediated cytokine network promotes brain metastasis of breast cancer by remodeling neutrophil activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10177081/
https://www.ncbi.nlm.nih.gov/pubmed/37174093
http://dx.doi.org/10.3390/cancers15092626
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