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High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion

Metastatic spread is the leading cause for cancer-related mortality, with the lungs being a major site for metastatic seeding. Available therapies for patients with metastatic disease are extremely limited. Therefore, there is a desperate need for new strategies to prevent or limit metastatic dissem...

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Autores principales: Karsch-Bluman, Adi, Amoyav, Benzion, Friedman, Nethanel, Shoval, Hila, Schwob, Ouri, Ella, Ezra, Wald, Ori, Benny, Ofra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5464821/
https://www.ncbi.nlm.nih.gov/pubmed/28415753
http://dx.doi.org/10.18632/oncotarget.16188
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author Karsch-Bluman, Adi
Amoyav, Benzion
Friedman, Nethanel
Shoval, Hila
Schwob, Ouri
Ella, Ezra
Wald, Ori
Benny, Ofra
author_facet Karsch-Bluman, Adi
Amoyav, Benzion
Friedman, Nethanel
Shoval, Hila
Schwob, Ouri
Ella, Ezra
Wald, Ori
Benny, Ofra
author_sort Karsch-Bluman, Adi
collection PubMed
description Metastatic spread is the leading cause for cancer-related mortality, with the lungs being a major site for metastatic seeding. Available therapies for patients with metastatic disease are extremely limited. Therefore, there is a desperate need for new strategies to prevent or limit metastatic dissemination and treat existing metastases. The metastatic cascade is highly complex and is affected by multiple factors related to both tumor cells themselves and the microenvironment in the future site of metastasis. We hypothesized that modifying the lung microenvironment by blocking central ubiquitous signals may affect metastatic seeding in the lungs. Given the high basal levels of the Receptor for Advanced Glycation End products (RAGE) in the pulmonary tissue, and its pro-inflammatory properties, we investigated the consequences of interfering with its ligand; High Mobility Group Box 1 (HMGB1). To this end, we tested the effect of Carbenoxolone, an HMGB1 antagonist, on primary tumor growth and metastatic progression in several murine tumor models. We show that antagonizing HMGB1 prevents the adhesion and colonization of cancer cells in the lungs through the reduction of their adhesion and cell–cell interaction both in vitro and in vivo. We demonstrated that these activities are mediated by downregulation of the adhesion molecule Intercellular Adhesion Molecule 1 (ICAM1) and ultimately result in reduced metastatic burden. Carbenoxolone decreases significantly lung metastases formation and can be used potentially as prophylactic therapy for metastatic diseases.
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spelling pubmed-54648212017-06-21 High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion Karsch-Bluman, Adi Amoyav, Benzion Friedman, Nethanel Shoval, Hila Schwob, Ouri Ella, Ezra Wald, Ori Benny, Ofra Oncotarget Research Paper Metastatic spread is the leading cause for cancer-related mortality, with the lungs being a major site for metastatic seeding. Available therapies for patients with metastatic disease are extremely limited. Therefore, there is a desperate need for new strategies to prevent or limit metastatic dissemination and treat existing metastases. The metastatic cascade is highly complex and is affected by multiple factors related to both tumor cells themselves and the microenvironment in the future site of metastasis. We hypothesized that modifying the lung microenvironment by blocking central ubiquitous signals may affect metastatic seeding in the lungs. Given the high basal levels of the Receptor for Advanced Glycation End products (RAGE) in the pulmonary tissue, and its pro-inflammatory properties, we investigated the consequences of interfering with its ligand; High Mobility Group Box 1 (HMGB1). To this end, we tested the effect of Carbenoxolone, an HMGB1 antagonist, on primary tumor growth and metastatic progression in several murine tumor models. We show that antagonizing HMGB1 prevents the adhesion and colonization of cancer cells in the lungs through the reduction of their adhesion and cell–cell interaction both in vitro and in vivo. We demonstrated that these activities are mediated by downregulation of the adhesion molecule Intercellular Adhesion Molecule 1 (ICAM1) and ultimately result in reduced metastatic burden. Carbenoxolone decreases significantly lung metastases formation and can be used potentially as prophylactic therapy for metastatic diseases. Impact Journals LLC 2017-03-14 /pmc/articles/PMC5464821/ /pubmed/28415753 http://dx.doi.org/10.18632/oncotarget.16188 Text en Copyright: © 2017 Karsch-Bluman et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Karsch-Bluman, Adi
Amoyav, Benzion
Friedman, Nethanel
Shoval, Hila
Schwob, Ouri
Ella, Ezra
Wald, Ori
Benny, Ofra
High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
title High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
title_full High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
title_fullStr High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
title_full_unstemmed High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
title_short High mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
title_sort high mobility group box 1 antagonist limits metastatic seeding in the lungs via reduction of cell–cell adhesion
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5464821/
https://www.ncbi.nlm.nih.gov/pubmed/28415753
http://dx.doi.org/10.18632/oncotarget.16188
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