Cargando…

Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal

MicroRNAs (miRNAs) have emerged as potential cancer therapeutics; however, their clinical use is hindered by lack of effective delivery mechanisms to tumor sites. Mesenchymal stem cells (MSCs) have been shown to migrate to experimental glioma and to exert anti-tumor effects by delivering cytotoxic c...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Hae Kyung, Finniss, Susan, Cazacu, Simona, Bucris, Efrat, Ziv-Av, Amotz, Xiang, Cunli, Bobbitt, Kevin, Rempel, Sandra A., Hasselbach, Laura, Mikkelsen, Tom, Slavin, Shimon, Brodie, Chaya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3712579/
https://www.ncbi.nlm.nih.gov/pubmed/23548312
_version_ 1782277085886152704
author Lee, Hae Kyung
Finniss, Susan
Cazacu, Simona
Bucris, Efrat
Ziv-Av, Amotz
Xiang, Cunli
Bobbitt, Kevin
Rempel, Sandra A.
Hasselbach, Laura
Mikkelsen, Tom
Slavin, Shimon
Brodie, Chaya
author_facet Lee, Hae Kyung
Finniss, Susan
Cazacu, Simona
Bucris, Efrat
Ziv-Av, Amotz
Xiang, Cunli
Bobbitt, Kevin
Rempel, Sandra A.
Hasselbach, Laura
Mikkelsen, Tom
Slavin, Shimon
Brodie, Chaya
author_sort Lee, Hae Kyung
collection PubMed
description MicroRNAs (miRNAs) have emerged as potential cancer therapeutics; however, their clinical use is hindered by lack of effective delivery mechanisms to tumor sites. Mesenchymal stem cells (MSCs) have been shown to migrate to experimental glioma and to exert anti-tumor effects by delivering cytotoxic compounds. Here, we examined the ability of MSCs derived from bone marrow, adipose tissue, placenta and umbilical cord to deliver synthetic miRNA mimics to glioma cells and glioma stem cells (GSCs). We examined the delivery of miR-124 and miR-145 mimics as glioma cells and GSCs express very low levels of these miRNAs. Using fluorescently labeled miRNA mimics and in situ hybridization, we demonstrated that all the MSCs examined delivered miR-124 and miR-145 mimics to co-cultured glioma cells and GSCs via gap junction–dependent and independent processes. The delivered miR-124 and miR-145 mimics significantly decreased the luciferase activity of their respected reporter target genes, SCP-1 and Sox2, and decreased the migration of glioma cells and the self-renewal of GSCs. Moreover, MSCs delivered Cy3-miR-124 mimic to glioma xenografts when administered intracranially. These results suggest that MSCs can deliver synthetic exogenous miRNA mimics to glioma cells and GSCs and may provide an efficient route of therapeutic miRNA delivery in vivo.
format Online
Article
Text
id pubmed-3712579
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-37125792013-07-22 Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal Lee, Hae Kyung Finniss, Susan Cazacu, Simona Bucris, Efrat Ziv-Av, Amotz Xiang, Cunli Bobbitt, Kevin Rempel, Sandra A. Hasselbach, Laura Mikkelsen, Tom Slavin, Shimon Brodie, Chaya Oncotarget Research Paper MicroRNAs (miRNAs) have emerged as potential cancer therapeutics; however, their clinical use is hindered by lack of effective delivery mechanisms to tumor sites. Mesenchymal stem cells (MSCs) have been shown to migrate to experimental glioma and to exert anti-tumor effects by delivering cytotoxic compounds. Here, we examined the ability of MSCs derived from bone marrow, adipose tissue, placenta and umbilical cord to deliver synthetic miRNA mimics to glioma cells and glioma stem cells (GSCs). We examined the delivery of miR-124 and miR-145 mimics as glioma cells and GSCs express very low levels of these miRNAs. Using fluorescently labeled miRNA mimics and in situ hybridization, we demonstrated that all the MSCs examined delivered miR-124 and miR-145 mimics to co-cultured glioma cells and GSCs via gap junction–dependent and independent processes. The delivered miR-124 and miR-145 mimics significantly decreased the luciferase activity of their respected reporter target genes, SCP-1 and Sox2, and decreased the migration of glioma cells and the self-renewal of GSCs. Moreover, MSCs delivered Cy3-miR-124 mimic to glioma xenografts when administered intracranially. These results suggest that MSCs can deliver synthetic exogenous miRNA mimics to glioma cells and GSCs and may provide an efficient route of therapeutic miRNA delivery in vivo. Impact Journals LLC 2013-02-28 /pmc/articles/PMC3712579/ /pubmed/23548312 Text en Copyright: © 2013 Lee 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
Lee, Hae Kyung
Finniss, Susan
Cazacu, Simona
Bucris, Efrat
Ziv-Av, Amotz
Xiang, Cunli
Bobbitt, Kevin
Rempel, Sandra A.
Hasselbach, Laura
Mikkelsen, Tom
Slavin, Shimon
Brodie, Chaya
Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
title Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
title_full Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
title_fullStr Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
title_full_unstemmed Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
title_short Mesenchymal stem cells deliver synthetic microRNA mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
title_sort mesenchymal stem cells deliver synthetic microrna mimics to glioma cells and glioma stem cells and inhibit their cell migration and self-renewal
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3712579/
https://www.ncbi.nlm.nih.gov/pubmed/23548312
work_keys_str_mv AT leehaekyung mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT finnisssusan mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT cazacusimona mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT bucrisefrat mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT zivavamotz mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT xiangcunli mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT bobbittkevin mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT rempelsandraa mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT hasselbachlaura mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT mikkelsentom mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT slavinshimon mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal
AT brodiechaya mesenchymalstemcellsdeliversyntheticmicrornamimicstogliomacellsandgliomastemcellsandinhibittheircellmigrationandselfrenewal