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Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models

Extracellular matrix (ECM) plays an important role in tumor development and dissemination, but few points of therapeutic intervention targeting ECM of the tumor microenvironment have been exploited to date. Recent observations suggest that the enzymatic introduction of disulfide bond cross-links int...

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Autores principales: Feldman, Tal, Grossman-Haham, Iris, Elkis, Yoav, Vilela, Patrick, Moskovits, Neta, Barshack, Iris, Salame, Tomer M., Fass, Deborah, Ilani, Tal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996906/
https://www.ncbi.nlm.nih.gov/pubmed/32064042
http://dx.doi.org/10.18632/oncotarget.27438
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author Feldman, Tal
Grossman-Haham, Iris
Elkis, Yoav
Vilela, Patrick
Moskovits, Neta
Barshack, Iris
Salame, Tomer M.
Fass, Deborah
Ilani, Tal
author_facet Feldman, Tal
Grossman-Haham, Iris
Elkis, Yoav
Vilela, Patrick
Moskovits, Neta
Barshack, Iris
Salame, Tomer M.
Fass, Deborah
Ilani, Tal
author_sort Feldman, Tal
collection PubMed
description Extracellular matrix (ECM) plays an important role in tumor development and dissemination, but few points of therapeutic intervention targeting ECM of the tumor microenvironment have been exploited to date. Recent observations suggest that the enzymatic introduction of disulfide bond cross-links into the ECM may be modulated to affect cancer progression. Specifically, the disulfide bond-forming activity of the enzyme Quiescin sulfhydryl oxidase 1 (QSOX1) is required by fibroblasts to assemble ECM components for adhesion and migration of cancer cells. Based on this finding and the increased QSOX1 expression in the stroma of aggressive breast carcinomas, we developed monoclonal antibody inhibitors with the aim of preventing QSOX1 from participating in pro-metastatic ECM remodeling. Here we show that QSOX1 inhibitory antibodies decreased tumor growth and metastasis in murine cancer models and had added benefits when provided together with chemotherapy. Mechanistically, the inhibitors dampened stromal participation in tumor development, as the tumors of treated animals showed fewer myofibroblasts and poorer ECM organization. Thus, our findings demonstrate that specifically targeting excess stromal QSOX1 secreted in response to tumor-cell signaling provides a means to modulate the tumor microenvironment and may complement other therapeutic approaches in cancer.
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spelling pubmed-69969062020-02-14 Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models Feldman, Tal Grossman-Haham, Iris Elkis, Yoav Vilela, Patrick Moskovits, Neta Barshack, Iris Salame, Tomer M. Fass, Deborah Ilani, Tal Oncotarget Research Paper Extracellular matrix (ECM) plays an important role in tumor development and dissemination, but few points of therapeutic intervention targeting ECM of the tumor microenvironment have been exploited to date. Recent observations suggest that the enzymatic introduction of disulfide bond cross-links into the ECM may be modulated to affect cancer progression. Specifically, the disulfide bond-forming activity of the enzyme Quiescin sulfhydryl oxidase 1 (QSOX1) is required by fibroblasts to assemble ECM components for adhesion and migration of cancer cells. Based on this finding and the increased QSOX1 expression in the stroma of aggressive breast carcinomas, we developed monoclonal antibody inhibitors with the aim of preventing QSOX1 from participating in pro-metastatic ECM remodeling. Here we show that QSOX1 inhibitory antibodies decreased tumor growth and metastasis in murine cancer models and had added benefits when provided together with chemotherapy. Mechanistically, the inhibitors dampened stromal participation in tumor development, as the tumors of treated animals showed fewer myofibroblasts and poorer ECM organization. Thus, our findings demonstrate that specifically targeting excess stromal QSOX1 secreted in response to tumor-cell signaling provides a means to modulate the tumor microenvironment and may complement other therapeutic approaches in cancer. Impact Journals LLC 2020-01-28 /pmc/articles/PMC6996906/ /pubmed/32064042 http://dx.doi.org/10.18632/oncotarget.27438 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Feldman et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Feldman, Tal
Grossman-Haham, Iris
Elkis, Yoav
Vilela, Patrick
Moskovits, Neta
Barshack, Iris
Salame, Tomer M.
Fass, Deborah
Ilani, Tal
Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
title Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
title_full Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
title_fullStr Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
title_full_unstemmed Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
title_short Inhibition of fibroblast secreted QSOX1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
title_sort inhibition of fibroblast secreted qsox1 perturbs extracellular matrix in the tumor microenvironment and decreases tumor growth and metastasis in murine cancer models
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996906/
https://www.ncbi.nlm.nih.gov/pubmed/32064042
http://dx.doi.org/10.18632/oncotarget.27438
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