Cargando…

Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma

Oncolytic adenoviral vectors are a promising alternative for the treatment of glioblastoma. Recent publications have demonstrated the advantages of shielding viral particles within cellular vehicles (CVs), which can be targeted towards the tumor microenvironment. Here, we studied T-cells, often havi...

Descripción completa

Detalles Bibliográficos
Autores principales: Balvers, Rutger K., Belcaid, Zineb, van den Hengel, Sanne K., Kloezeman, Jenneke, de Vrij, Jeroen, Wakimoto, Hiroaki, Hoeben, Rob C., Debets, Reno, Leenstra, Sieger, Dirven, Clemens, Lamfers, Martine L.M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4147687/
https://www.ncbi.nlm.nih.gov/pubmed/25118638
http://dx.doi.org/10.3390/v6083080
_version_ 1782332491750703104
author Balvers, Rutger K.
Belcaid, Zineb
van den Hengel, Sanne K.
Kloezeman, Jenneke
de Vrij, Jeroen
Wakimoto, Hiroaki
Hoeben, Rob C.
Debets, Reno
Leenstra, Sieger
Dirven, Clemens
Lamfers, Martine L.M.
author_facet Balvers, Rutger K.
Belcaid, Zineb
van den Hengel, Sanne K.
Kloezeman, Jenneke
de Vrij, Jeroen
Wakimoto, Hiroaki
Hoeben, Rob C.
Debets, Reno
Leenstra, Sieger
Dirven, Clemens
Lamfers, Martine L.M.
author_sort Balvers, Rutger K.
collection PubMed
description Oncolytic adenoviral vectors are a promising alternative for the treatment of glioblastoma. Recent publications have demonstrated the advantages of shielding viral particles within cellular vehicles (CVs), which can be targeted towards the tumor microenvironment. Here, we studied T-cells, often having a natural capacity to target tumors, for their feasibility as a CV to deliver the oncolytic adenovirus, Delta24-RGD, to glioblastoma. The Jurkat T-cell line was assessed in co-culture with the glioblastoma stem cell (GSC) line, MGG8, for the optimal transfer conditions of Delta24-RGD in vitro. The effect of intraparenchymal and tail vein injections on intratumoral virus distribution and overall survival was addressed in an orthotopic glioma stem cell (GSC)-based xenograft model. Jurkat T-cells were demonstrated to facilitate the amplification and transfer of Delta24-RGD onto GSCs. Delta24-RGD dosing and incubation time were found to influence the migratory ability of T-cells towards GSCs. Injection of Delta24-RGD-loaded T-cells into the brains of GSC-bearing mice led to migration towards the tumor and dispersion of the virus within the tumor core and infiltrative zones. This occurred after injection into the ipsilateral hemisphere, as well as into the non-tumor-bearing hemisphere. We found that T-cell-mediated delivery of Delta24-RGD led to the inhibition of tumor growth compared to non-treated controls, resulting in prolonged survival (p = 0.007). Systemic administration of virus-loaded T-cells resulted in intratumoral viral delivery, albeit at low levels. Based on these findings, we conclude that T-cell-based CVs are a feasible approach to local Delta24-RGD delivery in glioblastoma, although efficient systemic targeting requires further improvement.
format Online
Article
Text
id pubmed-4147687
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-41476872014-08-28 Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma Balvers, Rutger K. Belcaid, Zineb van den Hengel, Sanne K. Kloezeman, Jenneke de Vrij, Jeroen Wakimoto, Hiroaki Hoeben, Rob C. Debets, Reno Leenstra, Sieger Dirven, Clemens Lamfers, Martine L.M. Viruses Article Oncolytic adenoviral vectors are a promising alternative for the treatment of glioblastoma. Recent publications have demonstrated the advantages of shielding viral particles within cellular vehicles (CVs), which can be targeted towards the tumor microenvironment. Here, we studied T-cells, often having a natural capacity to target tumors, for their feasibility as a CV to deliver the oncolytic adenovirus, Delta24-RGD, to glioblastoma. The Jurkat T-cell line was assessed in co-culture with the glioblastoma stem cell (GSC) line, MGG8, for the optimal transfer conditions of Delta24-RGD in vitro. The effect of intraparenchymal and tail vein injections on intratumoral virus distribution and overall survival was addressed in an orthotopic glioma stem cell (GSC)-based xenograft model. Jurkat T-cells were demonstrated to facilitate the amplification and transfer of Delta24-RGD onto GSCs. Delta24-RGD dosing and incubation time were found to influence the migratory ability of T-cells towards GSCs. Injection of Delta24-RGD-loaded T-cells into the brains of GSC-bearing mice led to migration towards the tumor and dispersion of the virus within the tumor core and infiltrative zones. This occurred after injection into the ipsilateral hemisphere, as well as into the non-tumor-bearing hemisphere. We found that T-cell-mediated delivery of Delta24-RGD led to the inhibition of tumor growth compared to non-treated controls, resulting in prolonged survival (p = 0.007). Systemic administration of virus-loaded T-cells resulted in intratumoral viral delivery, albeit at low levels. Based on these findings, we conclude that T-cell-based CVs are a feasible approach to local Delta24-RGD delivery in glioblastoma, although efficient systemic targeting requires further improvement. MDPI 2014-08-12 /pmc/articles/PMC4147687/ /pubmed/25118638 http://dx.doi.org/10.3390/v6083080 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Balvers, Rutger K.
Belcaid, Zineb
van den Hengel, Sanne K.
Kloezeman, Jenneke
de Vrij, Jeroen
Wakimoto, Hiroaki
Hoeben, Rob C.
Debets, Reno
Leenstra, Sieger
Dirven, Clemens
Lamfers, Martine L.M.
Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma
title Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma
title_full Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma
title_fullStr Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma
title_full_unstemmed Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma
title_short Locally-Delivered T-Cell-Derived Cellular Vehicles Efficiently Track and Deliver Adenovirus Delta24-RGD to Infiltrating Glioma
title_sort locally-delivered t-cell-derived cellular vehicles efficiently track and deliver adenovirus delta24-rgd to infiltrating glioma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4147687/
https://www.ncbi.nlm.nih.gov/pubmed/25118638
http://dx.doi.org/10.3390/v6083080
work_keys_str_mv AT balversrutgerk locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT belcaidzineb locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT vandenhengelsannek locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT kloezemanjenneke locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT devrijjeroen locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT wakimotohiroaki locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT hoebenrobc locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT debetsreno locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT leenstrasieger locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT dirvenclemens locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma
AT lamfersmartinelm locallydeliveredtcellderivedcellularvehiclesefficientlytrackanddeliveradenovirusdelta24rgdtoinfiltratingglioma