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Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound

The tumor microenvironment is an interesting target for anticancer therapies but modifying this compartment is challenging. Here, we demonstrate the feasibility of a gene therapy strategy that combined targeting to bone marrow-derived tumor microenvironment using genetically modified bone-marrow der...

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Autores principales: Fortin, Pierre-Yves, Lepetit-Coiffé, Matthieu, Genevois, Coralie, Debeissat, Christelle, Quesson, Bruno, Moonen, Chrit T.W., Konsman, Jan Pieter, Couillaud, Franck
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695127/
https://www.ncbi.nlm.nih.gov/pubmed/26299614
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author Fortin, Pierre-Yves
Lepetit-Coiffé, Matthieu
Genevois, Coralie
Debeissat, Christelle
Quesson, Bruno
Moonen, Chrit T.W.
Konsman, Jan Pieter
Couillaud, Franck
author_facet Fortin, Pierre-Yves
Lepetit-Coiffé, Matthieu
Genevois, Coralie
Debeissat, Christelle
Quesson, Bruno
Moonen, Chrit T.W.
Konsman, Jan Pieter
Couillaud, Franck
author_sort Fortin, Pierre-Yves
collection PubMed
description The tumor microenvironment is an interesting target for anticancer therapies but modifying this compartment is challenging. Here, we demonstrate the feasibility of a gene therapy strategy that combined targeting to bone marrow-derived tumor microenvironment using genetically modified bone-marrow derived cells and control of transgene expression by local hyperthermia through a thermo-inducible promoter. Chimera were obtained by engraftment of bone marrow from transgenic mice expressing reporter genes under transcriptional control of heat shock promoter and inoculated sub-cutaneously with tumors cells. Heat shocks were applied at the tumor site using a water bath or magnetic resonance guided high intensity focused ultrasound device. Reporter gene expression was followed by bioluminescence and fluorescence imaging and immunohistochemistry. Bone marrow-derived cells expressing reporter genes were identified to be mainly tumor-associated macrophages. We thus provide the proof of concept for a gene therapy strategy that allows for spatiotemporal control of transgenes expression by macrophages targeted to the tumor microenvironment.
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spelling pubmed-46951272016-01-26 Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound Fortin, Pierre-Yves Lepetit-Coiffé, Matthieu Genevois, Coralie Debeissat, Christelle Quesson, Bruno Moonen, Chrit T.W. Konsman, Jan Pieter Couillaud, Franck Oncotarget Research Paper The tumor microenvironment is an interesting target for anticancer therapies but modifying this compartment is challenging. Here, we demonstrate the feasibility of a gene therapy strategy that combined targeting to bone marrow-derived tumor microenvironment using genetically modified bone-marrow derived cells and control of transgene expression by local hyperthermia through a thermo-inducible promoter. Chimera were obtained by engraftment of bone marrow from transgenic mice expressing reporter genes under transcriptional control of heat shock promoter and inoculated sub-cutaneously with tumors cells. Heat shocks were applied at the tumor site using a water bath or magnetic resonance guided high intensity focused ultrasound device. Reporter gene expression was followed by bioluminescence and fluorescence imaging and immunohistochemistry. Bone marrow-derived cells expressing reporter genes were identified to be mainly tumor-associated macrophages. We thus provide the proof of concept for a gene therapy strategy that allows for spatiotemporal control of transgenes expression by macrophages targeted to the tumor microenvironment. Impact Journals LLC 2015-06-15 /pmc/articles/PMC4695127/ /pubmed/26299614 Text en Copyright: © 2015 Fortin et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Fortin, Pierre-Yves
Lepetit-Coiffé, Matthieu
Genevois, Coralie
Debeissat, Christelle
Quesson, Bruno
Moonen, Chrit T.W.
Konsman, Jan Pieter
Couillaud, Franck
Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound
title Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound
title_full Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound
title_fullStr Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound
title_full_unstemmed Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound
title_short Spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by MRI guided focused ultrasound
title_sort spatiotemporal control of gene expression in bone-marrow derived cells of the tumor microenvironment induced by mri guided focused ultrasound
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695127/
https://www.ncbi.nlm.nih.gov/pubmed/26299614
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