Cargando…
SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy
The sodium iodide symporter (NIS) is the operational molecule that has allowed the efficient treatment of thyroid malignancies by the administration of (131)I for over 70 years. Various vector-driven approaches are currently under investigation to introduce the NIS gene into non-thyroidal tumors in...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Endocrine Society
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6553409/ http://dx.doi.org/10.1210/js.2019-SUN-339 |
_version_ | 1783424813436502016 |
---|---|
author | Schug, Christina Kitzberger, Carolin Sievert, Wolfgang Spellerberg, Rebekka Tutter, Mariella Schmohl, Kathrin Schwenk, Nathalie Schwaiger, Markus Multhoff, Gabriele Wagner, Ernst Nelson, Peter Spitzweg, Christine |
author_facet | Schug, Christina Kitzberger, Carolin Sievert, Wolfgang Spellerberg, Rebekka Tutter, Mariella Schmohl, Kathrin Schwenk, Nathalie Schwaiger, Markus Multhoff, Gabriele Wagner, Ernst Nelson, Peter Spitzweg, Christine |
author_sort | Schug, Christina |
collection | PubMed |
description | The sodium iodide symporter (NIS) is the operational molecule that has allowed the efficient treatment of thyroid malignancies by the administration of (131)I for over 70 years. Various vector-driven approaches are currently under investigation to introduce the NIS gene into non-thyroidal tumors in order to more broadly apply this effective anticancer therapy. One such system makes use of genetically engineered mesenchymal stem cells (MSC) as therapy vehicles for the delivery of NIS into solid tumors. MSCs show an innate ability to home to and invade tumor environments in response to the danger signals and inflammatory cytokines produced by the tumor milieu. We and others have demonstrated that tissue or signal-specific gene promoters are able to enhance the specificity of MSC-mediated NIS transgene expression in tumors. External beam radiation therapy (EBRT), a standard principal therapeutic modality for the treatment of cancer, results in tissue damage and hence enhanced recruitment of NIS-expressing MSCs into human hepatocellular carcinoma (HuH7). At the same time, the tumor-associated cytokine TGFB1 is strongly upregulated in HuH7 tumors in response to radiation pretreatment. In the current study, we show that combining EBRT with MSC-based NIS-mediated (131)I therapy dramatically enhances therapeutic efficacy when a synthetic TGFB1-inducible SMAD-responsive promoter, as opposed to a constitutive CMV-promoter, is used to drive NIS expression in MSCs. It is thought that the remarkable therapeutic effect seen is linked to the enhanced TGFB1 produced in this context, which leads to a highly selective and focused amplification of MSC-based NIS expression within the tumor milieu. |
format | Online Article Text |
id | pubmed-6553409 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Endocrine Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-65534092019-06-13 SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy Schug, Christina Kitzberger, Carolin Sievert, Wolfgang Spellerberg, Rebekka Tutter, Mariella Schmohl, Kathrin Schwenk, Nathalie Schwaiger, Markus Multhoff, Gabriele Wagner, Ernst Nelson, Peter Spitzweg, Christine J Endocr Soc Tumor Biology The sodium iodide symporter (NIS) is the operational molecule that has allowed the efficient treatment of thyroid malignancies by the administration of (131)I for over 70 years. Various vector-driven approaches are currently under investigation to introduce the NIS gene into non-thyroidal tumors in order to more broadly apply this effective anticancer therapy. One such system makes use of genetically engineered mesenchymal stem cells (MSC) as therapy vehicles for the delivery of NIS into solid tumors. MSCs show an innate ability to home to and invade tumor environments in response to the danger signals and inflammatory cytokines produced by the tumor milieu. We and others have demonstrated that tissue or signal-specific gene promoters are able to enhance the specificity of MSC-mediated NIS transgene expression in tumors. External beam radiation therapy (EBRT), a standard principal therapeutic modality for the treatment of cancer, results in tissue damage and hence enhanced recruitment of NIS-expressing MSCs into human hepatocellular carcinoma (HuH7). At the same time, the tumor-associated cytokine TGFB1 is strongly upregulated in HuH7 tumors in response to radiation pretreatment. In the current study, we show that combining EBRT with MSC-based NIS-mediated (131)I therapy dramatically enhances therapeutic efficacy when a synthetic TGFB1-inducible SMAD-responsive promoter, as opposed to a constitutive CMV-promoter, is used to drive NIS expression in MSCs. It is thought that the remarkable therapeutic effect seen is linked to the enhanced TGFB1 produced in this context, which leads to a highly selective and focused amplification of MSC-based NIS expression within the tumor milieu. Endocrine Society 2019-04-30 /pmc/articles/PMC6553409/ http://dx.doi.org/10.1210/js.2019-SUN-339 Text en Copyright © 2019 Endocrine Society https://creativecommons.org/licenses/by-nc-nd/4.0/ This article has been published under the terms of the Creative Commons Attribution Non-Commercial, No-Derivatives License (CC BY-NC-ND; https://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Tumor Biology Schug, Christina Kitzberger, Carolin Sievert, Wolfgang Spellerberg, Rebekka Tutter, Mariella Schmohl, Kathrin Schwenk, Nathalie Schwaiger, Markus Multhoff, Gabriele Wagner, Ernst Nelson, Peter Spitzweg, Christine SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy |
title | SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy |
title_full | SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy |
title_fullStr | SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy |
title_full_unstemmed | SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy |
title_short | SUN-339 External Beam Radiation Therapy Improves TGFB1-Induced Mesenchymal Stem Cell-Mediated NIS Gene (131)I Therapy |
title_sort | sun-339 external beam radiation therapy improves tgfb1-induced mesenchymal stem cell-mediated nis gene (131)i therapy |
topic | Tumor Biology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6553409/ http://dx.doi.org/10.1210/js.2019-SUN-339 |
work_keys_str_mv | AT schugchristina sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT kitzbergercarolin sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT sievertwolfgang sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT spellerbergrebekka sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT tuttermariella sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT schmohlkathrin sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT schwenknathalie sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT schwaigermarkus sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT multhoffgabriele sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT wagnerernst sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT nelsonpeter sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy AT spitzwegchristine sun339externalbeamradiationtherapyimprovestgfb1inducedmesenchymalstemcellmediatednisgene131itherapy |