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Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy

Oncolytic gene therapy using viral vectors may provide an attractive therapeutic option for malignant gliomas. These viral vectors are designed in a way to selectively target tumor cells and spare healthy cells. To determine the translational impact, it is imperative to assess the factors that inter...

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Autores principales: Ulasov, Ilya V., Shah, Nameeta, Kaverina, Natalya V., Lee, Hwahyang, Lin, Biaoyang, Lieber, Andre, Kadagidze, Zaira G., Yoon, Jae-Guen, Schroeder, Brett, Hothi, Parvinder, Ghosh, Dhimankrishna, Baryshnikov, Anatoly Y., Cobbs, Charles S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4414167/
https://www.ncbi.nlm.nih.gov/pubmed/25738357
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author Ulasov, Ilya V.
Shah, Nameeta
Kaverina, Natalya V.
Lee, Hwahyang
Lin, Biaoyang
Lieber, Andre
Kadagidze, Zaira G.
Yoon, Jae-Guen
Schroeder, Brett
Hothi, Parvinder
Ghosh, Dhimankrishna
Baryshnikov, Anatoly Y.
Cobbs, Charles S.
author_facet Ulasov, Ilya V.
Shah, Nameeta
Kaverina, Natalya V.
Lee, Hwahyang
Lin, Biaoyang
Lieber, Andre
Kadagidze, Zaira G.
Yoon, Jae-Guen
Schroeder, Brett
Hothi, Parvinder
Ghosh, Dhimankrishna
Baryshnikov, Anatoly Y.
Cobbs, Charles S.
author_sort Ulasov, Ilya V.
collection PubMed
description Oncolytic gene therapy using viral vectors may provide an attractive therapeutic option for malignant gliomas. These viral vectors are designed in a way to selectively target tumor cells and spare healthy cells. To determine the translational impact, it is imperative to assess the factors that interfere with the anti-glioma effects of the oncolytic adenoviral vectors. In the current study, we evaluated the efficacy of survivin-driven oncolytic adenoviruses pseudotyping with adenoviral fiber knob belonging to the adenoviral serotype 3, 11 and 35 in their ability to kill glioblastoma (GBM) cells selectively without affecting normal cells. Our results indicate that all recombinant vectors used in the study can effectively target GBM in vitro with high specificity, especially the 3 knob-modified vector. Using intracranial U87 and U251 GBM xenograft models we have also demonstrated that treatment with Conditionally Replicative Adenovirus (CRAd-S-5/3) vectors can effectively regress tumor. However, in several patient-derived GBM cell lines, cells exhibited resistance to the CRAd infection as evident from the diminishing effects of autophagy. To improve therapeutic response, tumor cells were pretreated with tamoxifen. Our preliminary data suggest that tamoxifen sensitizes glioblastoma cells towards oncolytic treatment with CRAd-S-5/3, which may prove useful for GBM in future experimental therapy.
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spelling pubmed-44141672015-05-08 Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy Ulasov, Ilya V. Shah, Nameeta Kaverina, Natalya V. Lee, Hwahyang Lin, Biaoyang Lieber, Andre Kadagidze, Zaira G. Yoon, Jae-Guen Schroeder, Brett Hothi, Parvinder Ghosh, Dhimankrishna Baryshnikov, Anatoly Y. Cobbs, Charles S. Oncotarget Research Paper Oncolytic gene therapy using viral vectors may provide an attractive therapeutic option for malignant gliomas. These viral vectors are designed in a way to selectively target tumor cells and spare healthy cells. To determine the translational impact, it is imperative to assess the factors that interfere with the anti-glioma effects of the oncolytic adenoviral vectors. In the current study, we evaluated the efficacy of survivin-driven oncolytic adenoviruses pseudotyping with adenoviral fiber knob belonging to the adenoviral serotype 3, 11 and 35 in their ability to kill glioblastoma (GBM) cells selectively without affecting normal cells. Our results indicate that all recombinant vectors used in the study can effectively target GBM in vitro with high specificity, especially the 3 knob-modified vector. Using intracranial U87 and U251 GBM xenograft models we have also demonstrated that treatment with Conditionally Replicative Adenovirus (CRAd-S-5/3) vectors can effectively regress tumor. However, in several patient-derived GBM cell lines, cells exhibited resistance to the CRAd infection as evident from the diminishing effects of autophagy. To improve therapeutic response, tumor cells were pretreated with tamoxifen. Our preliminary data suggest that tamoxifen sensitizes glioblastoma cells towards oncolytic treatment with CRAd-S-5/3, which may prove useful for GBM in future experimental therapy. Impact Journals LLC 2015-03-02 /pmc/articles/PMC4414167/ /pubmed/25738357 Text en Copyright: © 2015 Ulasov 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
Ulasov, Ilya V.
Shah, Nameeta
Kaverina, Natalya V.
Lee, Hwahyang
Lin, Biaoyang
Lieber, Andre
Kadagidze, Zaira G.
Yoon, Jae-Guen
Schroeder, Brett
Hothi, Parvinder
Ghosh, Dhimankrishna
Baryshnikov, Anatoly Y.
Cobbs, Charles S.
Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
title Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
title_full Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
title_fullStr Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
title_full_unstemmed Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
title_short Tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
title_sort tamoxifen improves cytopathic effect of oncolytic adenovirus in primary glioblastoma cells mediated through autophagy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4414167/
https://www.ncbi.nlm.nih.gov/pubmed/25738357
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