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Updated: Apr 16, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Changes in Susceptibility to Oncolytic Vesicular Stomatitis Virus during Progression of Prostate Cancer
Nanmeng Yu1, Shelby Puckett1, Peter A Antinozzi1
1Department of Biochemistry, Wake Forest School of Medicine, Winston-Salem, North Carolina, USA.
Unlabelled:
A major challenge to oncolytic virus therapy is that individual cancers vary in their sensitivity to oncolytic viruses, even when these cancers arise from the same tissue type. Variability in response may arise due to differences in the initial genetic lesions leading to cancer development. Alternatively, susceptibility to viral oncolysis may change during cancer progression. These hypotheses were tested using cells from a transgenic mouse model of prostate cancer infected with vesicular stomatitis virus (VSV). Primary cultures from murine cancers derived from prostate-specific Pten deletion contained a mixture of cells that were susceptible and resistant to VSV. Castration-resistant cancers contained a higher percentage of susceptible cells than cancers from noncastrated mice. These results indicate both susceptible and resistant cells can evolve within the same tumor. The role of Pten deletion was further investigated using clonal populations of murine prostate epithelial (MPE) progenitor cells and tumor-derived Pten(-/-) cells. Deletion of Pten in MPE progenitor cells using a lentivirus vector resulted in cells that responded poorly to interferon and were susceptible to VSV infection. In contrast, tumor-derived Pten(-/-) cells expressed higher levels of the antiviral transcription factor STAT1, activated STAT1 in response to VSV, and were resistant to VSV infection. These results suggest that early in tumor development following Pten deletion, cells are primarily sensitive to VSV, but subsequent evolution in tumors leads to development of cells that are resistant to VSV infection. Further evolution in castration-resistant tumors leads to tumors in which cells are primarily sensitive to VSV.
Importance:
There has been a great deal of progress in the development of replication-competent viruses that kill cancer cells (oncolytic viruses). However, a major problem is that individual cancers vary in their sensitivity to oncolytic viruses, even when these cancers arise from the same tissue type. The experiments presented here were to determine whether both sensitive and resistant cells are present in prostate cancers originating from a single genetic lesion in transgenic mice, prostate-specific deletion of the gene for the tumor suppressor Pten. The results indicate that murine prostate cancers are composed of both cells that are sensitive and cells that are resistant to oncolytic vesicular stomatitis virus (VSV). Furthermore, androgen deprivation led to castration-resistant prostate cancers that were composed primarily of cells that were sensitive to VSV. These results are encouraging for the use of VSV for the treatment of prostate cancers that are resistant to androgen deprivation therapy.
Insights
Oncolytic virus therapy faces challenges with cancer cell sensitivity variability. This study shows prostate cancers contain both sensitive and resistant cells, with castration-resistant tumors being more sensitive to vesicular stomatitis virus (VSV).
Area of Science:
- Oncolytic virotherapy
- Cancer biology
- Virology
Background:
- Oncolytic virus therapy, using replication-competent viruses to kill cancer cells, faces challenges due to variable cancer cell sensitivity.
- This variability may stem from initial genetic lesions or changes during cancer progression.
Purpose of the Study:
- To investigate the presence of both sensitive and resistant cells within prostate cancers originating from a single genetic lesion (Pten deletion) in a transgenic mouse model.
- To determine how cancer progression and androgen deprivation affect sensitivity to oncolytic vesicular stomatitis virus (VSV).
Main Methods:
- Utilized a transgenic mouse model of prostate cancer with prostate-specific Pten deletion.
- Infected primary prostate cancer cultures and clonal cell populations with vesicular stomatitis virus (VSV).
- Assessed cell susceptibility and resistance to VSV infection, including responses to interferon and STAT1 activation.
Main Results:
- Murine prostate cancers derived from Pten deletion contained a mixture of VSV-susceptible and VSV-resistant cells.
- Early Pten deletion in progenitor cells led to VSV-susceptible cells with poor interferon response.
- Tumor-derived Pten(-/-) cells exhibited VSV resistance due to STAT1 activation.
- Castration-resistant prostate cancers showed a higher percentage of VSV-susceptible cells compared to noncastrated cancers.
Conclusions:
- Prostate tumors evolve to contain both VSV-susceptible and VSV-resistant cells.
- Early tumor development favors VSV sensitivity, while later evolution can lead to resistance.
- Castration-resistant prostate cancers are predominantly sensitive to VSV, suggesting potential for VSV-based therapy in advanced prostate cancer.
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