Cargando…

Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions

Rationale: The spine is one of the most common metastatic sites of non-small cell lung cancer (NSCLC), and NSCLC spinal metastasis results in serious consequences. Metastatic extravasation of disseminated cancer cells including increased invasiveness, adhesion and transendothelial migration is cruci...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Ketao, Jiang, Libo, Hu, Annan, Sun, Chi, Zhou, Lei, Huang, Yiwei, Chen, Qing, Dong, Jian, Zhou, Xiaogang, Zhang, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7978319/
https://www.ncbi.nlm.nih.gov/pubmed/33754027
http://dx.doi.org/10.7150/thno.54235
_version_ 1783667187065552896
author Wang, Ketao
Jiang, Libo
Hu, Annan
Sun, Chi
Zhou, Lei
Huang, Yiwei
Chen, Qing
Dong, Jian
Zhou, Xiaogang
Zhang, Feng
author_facet Wang, Ketao
Jiang, Libo
Hu, Annan
Sun, Chi
Zhou, Lei
Huang, Yiwei
Chen, Qing
Dong, Jian
Zhou, Xiaogang
Zhang, Feng
author_sort Wang, Ketao
collection PubMed
description Rationale: The spine is one of the most common metastatic sites of non-small cell lung cancer (NSCLC), and NSCLC spinal metastasis results in serious consequences. Metastatic extravasation of disseminated cancer cells including increased invasiveness, adhesion and transendothelial migration is crucial for tumor metastasis. This study aimed to investigate the mechanisms underlying NSCLC spinal metastasis based on the C-X3-C motif chemokine ligand 1- (CX3CL1) and intercellular adhesion molecule-1- (ICAM-1) mediated signaling network. Methods: Immunohistochemistry, western blotting, and reverse transcription-quantitative PCR were conducted to detect the distribution of CX3CL1/ICAM-1 in different organs. Transwell, adhesion, and transendothelial migration assays were performed to evaluate the regulatory effects of CX3CL1/ICAM-1 on NSCLC cell invasion, adhesion, and transendothelial migration in vitro. A spontaneous spinal metastasis mouse model was established via injection of NSCLC cells into the left cardiac ventricle of NOD/SCID mice. The effects of CX3CL1/ICAM-1 on NSCLC spinal metastasis in vivo were validated using bioluminescent, micro-computerized tomography, immunohistochemistry and histological analyses. Results: CX3CL1 expression was specifically higher in vertebral bone compared with limb bones and lung tissue, and was associated with NSCLC spinal metastasis. Mechanically, vertebral bone marrow endothelial cells (VBMECs) enhanced NSCLC cell invasion via CX3CL1 signaling-mediated activation of the PI3K/AKT pathway. Furthermore, we found that VBMECs effectively induced ICAM-1-dependent NSCLC cell adhesion in coordination with platelets through the CX3CL1/ICAM-1/LFA-1 pathway. Meanwhile, CX3CL1 enhanced NSCLC cell transendothelial migration by increasing permeability of VBMECs via ICAM-1-dependent activation of the Src/GEF-H1 pathway. Interestingly, NSCLC cells were indicated to promote CX3CL1 secretion of VBMECs through MAPK14/ADMA17-dependent CX3CL1 release and NF-κB-dependent CX3CL1 synthesis. Based on these findings, we revealed a novel feedback cycle between circulating NSCLC cells and VBMECs mediated by CX3CL1/ICAM-1 signaling. Further disengagement of the CX3CL1/ICAM-1-mediated feedback cycle in vivo significantly restricted metastasis and prolonged mouse survival. Conclusions: Our results indicated a unique feedback cycle between circulating NSCLC cells and VBMECs mediated by CX3CL1/ICAM-1 signaling, which is necessary for NSCLC spinal metastasis. This work provides a new perspective for underlying the mechanisms of NSCLC spinal metastasis and indicates potential novel targets for the prevention of NSCLC spinal metastasis.
format Online
Article
Text
id pubmed-7978319
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-79783192021-03-21 Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions Wang, Ketao Jiang, Libo Hu, Annan Sun, Chi Zhou, Lei Huang, Yiwei Chen, Qing Dong, Jian Zhou, Xiaogang Zhang, Feng Theranostics Research Paper Rationale: The spine is one of the most common metastatic sites of non-small cell lung cancer (NSCLC), and NSCLC spinal metastasis results in serious consequences. Metastatic extravasation of disseminated cancer cells including increased invasiveness, adhesion and transendothelial migration is crucial for tumor metastasis. This study aimed to investigate the mechanisms underlying NSCLC spinal metastasis based on the C-X3-C motif chemokine ligand 1- (CX3CL1) and intercellular adhesion molecule-1- (ICAM-1) mediated signaling network. Methods: Immunohistochemistry, western blotting, and reverse transcription-quantitative PCR were conducted to detect the distribution of CX3CL1/ICAM-1 in different organs. Transwell, adhesion, and transendothelial migration assays were performed to evaluate the regulatory effects of CX3CL1/ICAM-1 on NSCLC cell invasion, adhesion, and transendothelial migration in vitro. A spontaneous spinal metastasis mouse model was established via injection of NSCLC cells into the left cardiac ventricle of NOD/SCID mice. The effects of CX3CL1/ICAM-1 on NSCLC spinal metastasis in vivo were validated using bioluminescent, micro-computerized tomography, immunohistochemistry and histological analyses. Results: CX3CL1 expression was specifically higher in vertebral bone compared with limb bones and lung tissue, and was associated with NSCLC spinal metastasis. Mechanically, vertebral bone marrow endothelial cells (VBMECs) enhanced NSCLC cell invasion via CX3CL1 signaling-mediated activation of the PI3K/AKT pathway. Furthermore, we found that VBMECs effectively induced ICAM-1-dependent NSCLC cell adhesion in coordination with platelets through the CX3CL1/ICAM-1/LFA-1 pathway. Meanwhile, CX3CL1 enhanced NSCLC cell transendothelial migration by increasing permeability of VBMECs via ICAM-1-dependent activation of the Src/GEF-H1 pathway. Interestingly, NSCLC cells were indicated to promote CX3CL1 secretion of VBMECs through MAPK14/ADMA17-dependent CX3CL1 release and NF-κB-dependent CX3CL1 synthesis. Based on these findings, we revealed a novel feedback cycle between circulating NSCLC cells and VBMECs mediated by CX3CL1/ICAM-1 signaling. Further disengagement of the CX3CL1/ICAM-1-mediated feedback cycle in vivo significantly restricted metastasis and prolonged mouse survival. Conclusions: Our results indicated a unique feedback cycle between circulating NSCLC cells and VBMECs mediated by CX3CL1/ICAM-1 signaling, which is necessary for NSCLC spinal metastasis. This work provides a new perspective for underlying the mechanisms of NSCLC spinal metastasis and indicates potential novel targets for the prevention of NSCLC spinal metastasis. Ivyspring International Publisher 2021-03-04 /pmc/articles/PMC7978319/ /pubmed/33754027 http://dx.doi.org/10.7150/thno.54235 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wang, Ketao
Jiang, Libo
Hu, Annan
Sun, Chi
Zhou, Lei
Huang, Yiwei
Chen, Qing
Dong, Jian
Zhou, Xiaogang
Zhang, Feng
Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
title Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
title_full Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
title_fullStr Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
title_full_unstemmed Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
title_short Vertebral-specific activation of the CX3CL1/ICAM-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
title_sort vertebral-specific activation of the cx3cl1/icam-1 signaling network mediates non-small-cell lung cancer spinal metastasis by engaging tumor cell-vertebral bone marrow endothelial cell interactions
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7978319/
https://www.ncbi.nlm.nih.gov/pubmed/33754027
http://dx.doi.org/10.7150/thno.54235
work_keys_str_mv AT wangketao vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT jianglibo vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT huannan vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT sunchi vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT zhoulei vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT huangyiwei vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT chenqing vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT dongjian vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT zhouxiaogang vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions
AT zhangfeng vertebralspecificactivationofthecx3cl1icam1signalingnetworkmediatesnonsmallcelllungcancerspinalmetastasisbyengagingtumorcellvertebralbonemarrowendothelialcellinteractions