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Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma

Tumor-angiogenesis is the multi-factorial process of sprouting of endothelial cells (EC) into micro-vessels to provide tumor cells with nutrients and oxygen. To explore miRNAs as therapeutic angiogenesis-inhibitors, we performed a functional screen to identify miRNAs that are able to decrease EC via...

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Autores principales: Babae, Negar, Bourajjaj, Meriem, Liu, Yijia, Van Beijnum, Judy R., Cerisoli, Francesco, Scaria, Puthupparampil V., Verheul, Mark, Van Berkel, Maaike P., Pieters, Ebel H. E., Van Haastert, Rick J., Yousefi, Afrouz, Mastrobattista, Enrico, Storm, Gert, Berezikov, Eugene, Cuppen, Edwin, Woodle, Martin, Schaapveld, Roel Q. J., Prevost, Gregoire P., Griffioen, Arjan W., Van Noort, Paula I., Schiffelers, Raymond M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4196156/
https://www.ncbi.nlm.nih.gov/pubmed/25149532
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author Babae, Negar
Bourajjaj, Meriem
Liu, Yijia
Van Beijnum, Judy R.
Cerisoli, Francesco
Scaria, Puthupparampil V.
Verheul, Mark
Van Berkel, Maaike P.
Pieters, Ebel H. E.
Van Haastert, Rick J.
Yousefi, Afrouz
Mastrobattista, Enrico
Storm, Gert
Berezikov, Eugene
Cuppen, Edwin
Woodle, Martin
Schaapveld, Roel Q. J.
Prevost, Gregoire P.
Griffioen, Arjan W.
Van Noort, Paula I.
Schiffelers, Raymond M.
author_facet Babae, Negar
Bourajjaj, Meriem
Liu, Yijia
Van Beijnum, Judy R.
Cerisoli, Francesco
Scaria, Puthupparampil V.
Verheul, Mark
Van Berkel, Maaike P.
Pieters, Ebel H. E.
Van Haastert, Rick J.
Yousefi, Afrouz
Mastrobattista, Enrico
Storm, Gert
Berezikov, Eugene
Cuppen, Edwin
Woodle, Martin
Schaapveld, Roel Q. J.
Prevost, Gregoire P.
Griffioen, Arjan W.
Van Noort, Paula I.
Schiffelers, Raymond M.
author_sort Babae, Negar
collection PubMed
description Tumor-angiogenesis is the multi-factorial process of sprouting of endothelial cells (EC) into micro-vessels to provide tumor cells with nutrients and oxygen. To explore miRNAs as therapeutic angiogenesis-inhibitors, we performed a functional screen to identify miRNAs that are able to decrease EC viability. We identified miRNA-7 (miR-7) as a potent negative regulator of angiogenesis. Introduction of miR-7 in EC resulted in strongly reduced cell viability, tube formation, sprouting and migration. Application of miR-7 in the chick chorioallantoic membrane assay led to a profound reduction of vascularization, similar to anti-angiogenic drug sunitinib. Local administration of miR-7 in an in vivo murine neuroblastoma tumor model significantly inhibited angiogenesis and tumor growth. Finally, systemic administration of miR-7 using a novel integrin-targeted biodegradable polymeric nanoparticles that targets both EC and tumor cells, strongly reduced angiogenesis and tumor proliferation in mice with human glioblastoma xenografts. Transcriptome analysis of miR-7 transfected EC in combination with in silico target prediction resulted in the identification of OGT as novel target gene of miR-7. Our study provides a comprehensive validation of miR-7 as novel anti-angiogenic therapeutic miRNA that can be systemically delivered to both EC and tumor cells and offers promise for miR-7 as novel anti-tumor therapeutic.
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spelling pubmed-41961562014-10-21 Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma Babae, Negar Bourajjaj, Meriem Liu, Yijia Van Beijnum, Judy R. Cerisoli, Francesco Scaria, Puthupparampil V. Verheul, Mark Van Berkel, Maaike P. Pieters, Ebel H. E. Van Haastert, Rick J. Yousefi, Afrouz Mastrobattista, Enrico Storm, Gert Berezikov, Eugene Cuppen, Edwin Woodle, Martin Schaapveld, Roel Q. J. Prevost, Gregoire P. Griffioen, Arjan W. Van Noort, Paula I. Schiffelers, Raymond M. Oncotarget Research Paper Tumor-angiogenesis is the multi-factorial process of sprouting of endothelial cells (EC) into micro-vessels to provide tumor cells with nutrients and oxygen. To explore miRNAs as therapeutic angiogenesis-inhibitors, we performed a functional screen to identify miRNAs that are able to decrease EC viability. We identified miRNA-7 (miR-7) as a potent negative regulator of angiogenesis. Introduction of miR-7 in EC resulted in strongly reduced cell viability, tube formation, sprouting and migration. Application of miR-7 in the chick chorioallantoic membrane assay led to a profound reduction of vascularization, similar to anti-angiogenic drug sunitinib. Local administration of miR-7 in an in vivo murine neuroblastoma tumor model significantly inhibited angiogenesis and tumor growth. Finally, systemic administration of miR-7 using a novel integrin-targeted biodegradable polymeric nanoparticles that targets both EC and tumor cells, strongly reduced angiogenesis and tumor proliferation in mice with human glioblastoma xenografts. Transcriptome analysis of miR-7 transfected EC in combination with in silico target prediction resulted in the identification of OGT as novel target gene of miR-7. Our study provides a comprehensive validation of miR-7 as novel anti-angiogenic therapeutic miRNA that can be systemically delivered to both EC and tumor cells and offers promise for miR-7 as novel anti-tumor therapeutic. Impact Journals LLC 2014-07-18 /pmc/articles/PMC4196156/ /pubmed/25149532 Text en Copyright: © 2014 Babae 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
Babae, Negar
Bourajjaj, Meriem
Liu, Yijia
Van Beijnum, Judy R.
Cerisoli, Francesco
Scaria, Puthupparampil V.
Verheul, Mark
Van Berkel, Maaike P.
Pieters, Ebel H. E.
Van Haastert, Rick J.
Yousefi, Afrouz
Mastrobattista, Enrico
Storm, Gert
Berezikov, Eugene
Cuppen, Edwin
Woodle, Martin
Schaapveld, Roel Q. J.
Prevost, Gregoire P.
Griffioen, Arjan W.
Van Noort, Paula I.
Schiffelers, Raymond M.
Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
title Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
title_full Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
title_fullStr Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
title_full_unstemmed Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
title_short Systemic miRNA-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
title_sort systemic mirna-7 delivery inhibits tumor angiogenesis and growth in murine xenograft glioblastoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4196156/
https://www.ncbi.nlm.nih.gov/pubmed/25149532
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