Cargando…

Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment

BACKGROUND: The biological function of mesenchymal stem‐like cells (MSLCs), a type of stromal cells, in the regulation of the tumour microenvironment is unclear. Here, we investigated the molecular mechanisms underlying extracellular matrix (ECM) remodelling and crosstalk between MSLCs and glioblast...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, Seung‐Mo, Lim, Eun‐Jung, Yoo, Ki‐Chun, Zhao, Yi, Kang, Jae‐Hyeok, Lim, Eun‐Ji, Shin, Incheol, Kang, Seok‐Gu, Lim, Han Woong, Lee, Su‐Jae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9339241/
https://www.ncbi.nlm.nih.gov/pubmed/35908277
http://dx.doi.org/10.1002/ctm2.997
_version_ 1784760149357887488
author Kim, Seung‐Mo
Lim, Eun‐Jung
Yoo, Ki‐Chun
Zhao, Yi
Kang, Jae‐Hyeok
Lim, Eun‐Ji
Shin, Incheol
Kang, Seok‐Gu
Lim, Han Woong
Lee, Su‐Jae
author_facet Kim, Seung‐Mo
Lim, Eun‐Jung
Yoo, Ki‐Chun
Zhao, Yi
Kang, Jae‐Hyeok
Lim, Eun‐Ji
Shin, Incheol
Kang, Seok‐Gu
Lim, Han Woong
Lee, Su‐Jae
author_sort Kim, Seung‐Mo
collection PubMed
description BACKGROUND: The biological function of mesenchymal stem‐like cells (MSLCs), a type of stromal cells, in the regulation of the tumour microenvironment is unclear. Here, we investigated the molecular mechanisms underlying extracellular matrix (ECM) remodelling and crosstalk between MSLCs and glioblastomas (GBMs) in tumour progression. METHODS: In vitro and in vivo co‐culture systems were used to analyze ECM remodelling and GBM infiltration. In addition, clinical databases, samples from patients with GBM and a xenografted mouse model of GBM were used. RESULTS: Previous studies have shown that the survival of patients with GBM from whom MSLCs could be isolated is substantially shorter than that of patients from whom MSLCs could not be isolated. Therefore, we determined the correlation between changes in ECM‐related gene expression in MSLC‐isolatable patients with that in MSLC non‐isolatable patients using gene set enrichment analysis (GSEA). We found that lysyl oxidase (LOX) and COL1A1 expressions increased in MSLCs via GBM‐derived clusters of differentiation 40 ligand (CD40L). Mechanistically, MSLCs are reprogrammed by the CD40L/CD40/NFκB2 signalling axis to build a tumour infiltrative microenvironment involving collagen crosslinking. Importantly, blocking of CD40L by a neutralizing antibody‐suppressed LOX expression and ECM remodelling, decreasing GBM infiltration in mouse xenograft models. Clinically, high expression of CD40L, clusters of differentiation 40 (CD40) and LOX correlated with poor survival in patients with glioma. This indicated that GBM‐educated MSLCs promote GBM infiltration via ECM remodelling in the tumour microenvironment. CONCLUSION: Our findings provide mechanistic insights into the pro‐infiltrative tumour microenvironment produced by GBM‐educated MSLCs and highlight a potential therapeutic target that can be used for suppressing GBM infiltration.
format Online
Article
Text
id pubmed-9339241
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-93392412022-08-02 Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment Kim, Seung‐Mo Lim, Eun‐Jung Yoo, Ki‐Chun Zhao, Yi Kang, Jae‐Hyeok Lim, Eun‐Ji Shin, Incheol Kang, Seok‐Gu Lim, Han Woong Lee, Su‐Jae Clin Transl Med Research Articles BACKGROUND: The biological function of mesenchymal stem‐like cells (MSLCs), a type of stromal cells, in the regulation of the tumour microenvironment is unclear. Here, we investigated the molecular mechanisms underlying extracellular matrix (ECM) remodelling and crosstalk between MSLCs and glioblastomas (GBMs) in tumour progression. METHODS: In vitro and in vivo co‐culture systems were used to analyze ECM remodelling and GBM infiltration. In addition, clinical databases, samples from patients with GBM and a xenografted mouse model of GBM were used. RESULTS: Previous studies have shown that the survival of patients with GBM from whom MSLCs could be isolated is substantially shorter than that of patients from whom MSLCs could not be isolated. Therefore, we determined the correlation between changes in ECM‐related gene expression in MSLC‐isolatable patients with that in MSLC non‐isolatable patients using gene set enrichment analysis (GSEA). We found that lysyl oxidase (LOX) and COL1A1 expressions increased in MSLCs via GBM‐derived clusters of differentiation 40 ligand (CD40L). Mechanistically, MSLCs are reprogrammed by the CD40L/CD40/NFκB2 signalling axis to build a tumour infiltrative microenvironment involving collagen crosslinking. Importantly, blocking of CD40L by a neutralizing antibody‐suppressed LOX expression and ECM remodelling, decreasing GBM infiltration in mouse xenograft models. Clinically, high expression of CD40L, clusters of differentiation 40 (CD40) and LOX correlated with poor survival in patients with glioma. This indicated that GBM‐educated MSLCs promote GBM infiltration via ECM remodelling in the tumour microenvironment. CONCLUSION: Our findings provide mechanistic insights into the pro‐infiltrative tumour microenvironment produced by GBM‐educated MSLCs and highlight a potential therapeutic target that can be used for suppressing GBM infiltration. John Wiley and Sons Inc. 2022-07-31 /pmc/articles/PMC9339241/ /pubmed/35908277 http://dx.doi.org/10.1002/ctm2.997 Text en © 2022 The Authors. Clinical and Translational Medicine published by John Wiley & Sons Australia, Ltd on behalf of Shanghai Institute of Clinical Bioinformatics. 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
Kim, Seung‐Mo
Lim, Eun‐Jung
Yoo, Ki‐Chun
Zhao, Yi
Kang, Jae‐Hyeok
Lim, Eun‐Ji
Shin, Incheol
Kang, Seok‐Gu
Lim, Han Woong
Lee, Su‐Jae
Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
title Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
title_full Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
title_fullStr Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
title_full_unstemmed Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
title_short Glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
title_sort glioblastoma‐educated mesenchymal stem‐like cells promote glioblastoma infiltration via extracellular matrix remodelling in the tumour microenvironment
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9339241/
https://www.ncbi.nlm.nih.gov/pubmed/35908277
http://dx.doi.org/10.1002/ctm2.997
work_keys_str_mv AT kimseungmo glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT limeunjung glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT yookichun glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT zhaoyi glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT kangjaehyeok glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT limeunji glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT shinincheol glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT kangseokgu glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT limhanwoong glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment
AT leesujae glioblastomaeducatedmesenchymalstemlikecellspromoteglioblastomainfiltrationviaextracellularmatrixremodellinginthetumourmicroenvironment