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The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers

Oncolytic viruses are generally designed to be cancer selective on the basis of a single genetic mutation. JX-594 is a thymidine kinase (TK) gene-inactivated oncolytic vaccinia virus expressing granulocyte-macrophage colony-stimulating factor (GM-CSF) and lac-Z transgenes that is designed to destroy...

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Autores principales: Parato, Kelley A, Breitbach, Caroline J, Le Boeuf, Fabrice, Wang, Jiahu, Storbeck, Chris, Ilkow, Carolina, Diallo, Jean-Simon, Falls, Theresa, Burns, Joseph, Garcia, Vanessa, Kanji, Femina, Evgin, Laura, Hu, Kang, Paradis, Francois, Knowles, Shane, Hwang, Tae-Ho, Vanderhyden, Barbara C, Auer, Rebecca, Kirn, David H, Bell, John C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3321594/
https://www.ncbi.nlm.nih.gov/pubmed/22186794
http://dx.doi.org/10.1038/mt.2011.276
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author Parato, Kelley A
Breitbach, Caroline J
Le Boeuf, Fabrice
Wang, Jiahu
Storbeck, Chris
Ilkow, Carolina
Diallo, Jean-Simon
Falls, Theresa
Burns, Joseph
Garcia, Vanessa
Kanji, Femina
Evgin, Laura
Hu, Kang
Paradis, Francois
Knowles, Shane
Hwang, Tae-Ho
Vanderhyden, Barbara C
Auer, Rebecca
Kirn, David H
Bell, John C
author_facet Parato, Kelley A
Breitbach, Caroline J
Le Boeuf, Fabrice
Wang, Jiahu
Storbeck, Chris
Ilkow, Carolina
Diallo, Jean-Simon
Falls, Theresa
Burns, Joseph
Garcia, Vanessa
Kanji, Femina
Evgin, Laura
Hu, Kang
Paradis, Francois
Knowles, Shane
Hwang, Tae-Ho
Vanderhyden, Barbara C
Auer, Rebecca
Kirn, David H
Bell, John C
author_sort Parato, Kelley A
collection PubMed
description Oncolytic viruses are generally designed to be cancer selective on the basis of a single genetic mutation. JX-594 is a thymidine kinase (TK) gene-inactivated oncolytic vaccinia virus expressing granulocyte-macrophage colony-stimulating factor (GM-CSF) and lac-Z transgenes that is designed to destroy cancer cells through replication-dependent cell lysis and stimulation of antitumoral immunity. JX-594 has demonstrated a favorable safety profile and reproducible tumor necrosis in a variety of solid cancer types in clinical trials. However, the mechanism(s) responsible for its cancer-selectivity have not yet been well described. We analyzed the replication of JX-594 in three model systems: primary normal and cancer cells, surgical explants, and murine tumor models. JX-594 replication, transgene expression, and cytopathic effects were highly cancer-selective, and broad spectrum activity was demonstrated. JX-594 cancer-selectivity was multi-mechanistic; replication was activated by epidermal growth factor receptor (EGFR)/Ras pathway signaling, cellular TK levels, and cancer cell resistance to type-I interferons (IFNs). These findings confirm a large therapeutic index for JX-594 that is driven by common genetic abnormalities in human solid tumors. This appears to be the first description of multiple selectivity mechanisms, both inherent and engineered, for an oncolytic virus. These findings have implications for oncolytic viruses in general, and suggest that their cancer targeting is a complex and multifactorial process.
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spelling pubmed-33215942012-04-09 The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers Parato, Kelley A Breitbach, Caroline J Le Boeuf, Fabrice Wang, Jiahu Storbeck, Chris Ilkow, Carolina Diallo, Jean-Simon Falls, Theresa Burns, Joseph Garcia, Vanessa Kanji, Femina Evgin, Laura Hu, Kang Paradis, Francois Knowles, Shane Hwang, Tae-Ho Vanderhyden, Barbara C Auer, Rebecca Kirn, David H Bell, John C Mol Ther Original Article Oncolytic viruses are generally designed to be cancer selective on the basis of a single genetic mutation. JX-594 is a thymidine kinase (TK) gene-inactivated oncolytic vaccinia virus expressing granulocyte-macrophage colony-stimulating factor (GM-CSF) and lac-Z transgenes that is designed to destroy cancer cells through replication-dependent cell lysis and stimulation of antitumoral immunity. JX-594 has demonstrated a favorable safety profile and reproducible tumor necrosis in a variety of solid cancer types in clinical trials. However, the mechanism(s) responsible for its cancer-selectivity have not yet been well described. We analyzed the replication of JX-594 in three model systems: primary normal and cancer cells, surgical explants, and murine tumor models. JX-594 replication, transgene expression, and cytopathic effects were highly cancer-selective, and broad spectrum activity was demonstrated. JX-594 cancer-selectivity was multi-mechanistic; replication was activated by epidermal growth factor receptor (EGFR)/Ras pathway signaling, cellular TK levels, and cancer cell resistance to type-I interferons (IFNs). These findings confirm a large therapeutic index for JX-594 that is driven by common genetic abnormalities in human solid tumors. This appears to be the first description of multiple selectivity mechanisms, both inherent and engineered, for an oncolytic virus. These findings have implications for oncolytic viruses in general, and suggest that their cancer targeting is a complex and multifactorial process. Nature Publishing Group 2012-04 2011-12-20 /pmc/articles/PMC3321594/ /pubmed/22186794 http://dx.doi.org/10.1038/mt.2011.276 Text en Copyright © 2012 The American Society of Gene & Cell Therapy http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Parato, Kelley A
Breitbach, Caroline J
Le Boeuf, Fabrice
Wang, Jiahu
Storbeck, Chris
Ilkow, Carolina
Diallo, Jean-Simon
Falls, Theresa
Burns, Joseph
Garcia, Vanessa
Kanji, Femina
Evgin, Laura
Hu, Kang
Paradis, Francois
Knowles, Shane
Hwang, Tae-Ho
Vanderhyden, Barbara C
Auer, Rebecca
Kirn, David H
Bell, John C
The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers
title The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers
title_full The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers
title_fullStr The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers
title_full_unstemmed The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers
title_short The Oncolytic Poxvirus JX-594 Selectively Replicates in and Destroys Cancer Cells Driven by Genetic Pathways Commonly Activated in Cancers
title_sort oncolytic poxvirus jx-594 selectively replicates in and destroys cancer cells driven by genetic pathways commonly activated in cancers
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3321594/
https://www.ncbi.nlm.nih.gov/pubmed/22186794
http://dx.doi.org/10.1038/mt.2011.276
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