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Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model

Oncolytic virotherapy represents a promising approach for treating recurrent and/or drug-resistant ovarian cancer. However, its successful application in the clinic has been hampered by rapid immune-mediated clearance, which reduces viral delivery to the tumor. Patient-derived mesenchymal stem cells...

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Autores principales: Hammad, Mohamed, Cornejo, Yvonne R., Batalla-Covello, Jennifer, Majid, Asma Abdul, Burke, Connor, Liu, Zheng, Yuan, Yate-Ching, Li, Min, Dellinger, Thanh H., Lu, Jianming, Chen, Nanhai G., Fong, Yuman, Aboody, Karen S., Mooney, Rachael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7394740/
https://www.ncbi.nlm.nih.gov/pubmed/32775617
http://dx.doi.org/10.1016/j.omto.2020.07.002
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author Hammad, Mohamed
Cornejo, Yvonne R.
Batalla-Covello, Jennifer
Majid, Asma Abdul
Burke, Connor
Liu, Zheng
Yuan, Yate-Ching
Li, Min
Dellinger, Thanh H.
Lu, Jianming
Chen, Nanhai G.
Fong, Yuman
Aboody, Karen S.
Mooney, Rachael
author_facet Hammad, Mohamed
Cornejo, Yvonne R.
Batalla-Covello, Jennifer
Majid, Asma Abdul
Burke, Connor
Liu, Zheng
Yuan, Yate-Ching
Li, Min
Dellinger, Thanh H.
Lu, Jianming
Chen, Nanhai G.
Fong, Yuman
Aboody, Karen S.
Mooney, Rachael
author_sort Hammad, Mohamed
collection PubMed
description Oncolytic virotherapy represents a promising approach for treating recurrent and/or drug-resistant ovarian cancer. However, its successful application in the clinic has been hampered by rapid immune-mediated clearance, which reduces viral delivery to the tumor. Patient-derived mesenchymal stem cells that home to tumors have been used as viral delivery tools, but variability associated with autologous cell isolations limits the clinical applicability of this approach. We previously developed an allogeneic, clonal neural stem cell (NSC) line (HB1.F3.CD21) that can be used to deliver viral cargo. Here, we demonstrate that this NSC line can improve the delivery of a thymidine kinase gene-deficient conditionally replication-competent orthopoxvirus, CF33, in a preclinical cisplatin-resistant peritoneal ovarian metastases model. Overall, our findings provide the basis for using off-the-shelf allogeneic cell-based delivery platforms for oncolytic viruses, thus providing a more efficient delivery alternative compared with the free virus administration approach.
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spelling pubmed-73947402020-08-07 Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model Hammad, Mohamed Cornejo, Yvonne R. Batalla-Covello, Jennifer Majid, Asma Abdul Burke, Connor Liu, Zheng Yuan, Yate-Ching Li, Min Dellinger, Thanh H. Lu, Jianming Chen, Nanhai G. Fong, Yuman Aboody, Karen S. Mooney, Rachael Mol Ther Oncolytics Article Oncolytic virotherapy represents a promising approach for treating recurrent and/or drug-resistant ovarian cancer. However, its successful application in the clinic has been hampered by rapid immune-mediated clearance, which reduces viral delivery to the tumor. Patient-derived mesenchymal stem cells that home to tumors have been used as viral delivery tools, but variability associated with autologous cell isolations limits the clinical applicability of this approach. We previously developed an allogeneic, clonal neural stem cell (NSC) line (HB1.F3.CD21) that can be used to deliver viral cargo. Here, we demonstrate that this NSC line can improve the delivery of a thymidine kinase gene-deficient conditionally replication-competent orthopoxvirus, CF33, in a preclinical cisplatin-resistant peritoneal ovarian metastases model. Overall, our findings provide the basis for using off-the-shelf allogeneic cell-based delivery platforms for oncolytic viruses, thus providing a more efficient delivery alternative compared with the free virus administration approach. American Society of Gene & Cell Therapy 2020-07-06 /pmc/articles/PMC7394740/ /pubmed/32775617 http://dx.doi.org/10.1016/j.omto.2020.07.002 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Hammad, Mohamed
Cornejo, Yvonne R.
Batalla-Covello, Jennifer
Majid, Asma Abdul
Burke, Connor
Liu, Zheng
Yuan, Yate-Ching
Li, Min
Dellinger, Thanh H.
Lu, Jianming
Chen, Nanhai G.
Fong, Yuman
Aboody, Karen S.
Mooney, Rachael
Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model
title Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model
title_full Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model
title_fullStr Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model
title_full_unstemmed Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model
title_short Neural Stem Cells Improve the Delivery of Oncolytic Chimeric Orthopoxvirus in a Metastatic Ovarian Cancer Model
title_sort neural stem cells improve the delivery of oncolytic chimeric orthopoxvirus in a metastatic ovarian cancer model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7394740/
https://www.ncbi.nlm.nih.gov/pubmed/32775617
http://dx.doi.org/10.1016/j.omto.2020.07.002
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