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Updated: Aug 15, 2026

An Orthotopic Resectional Mouse Model of Pancreatic Cancer
Published on: September 24, 2020
Targeted virus replication plus immunotherapy eradicates primary and distant pancreatic tumors in nude mice
Devanand Sarkar1, Zao-zhong Su, Nicolaq Vozhilla
1Department of Pathology, Herbert Irving Comprehensive Cancer Center, Columbia University Medical Center, College of Physicians and Surgeons, New York, New York 10032, USA.
Abstract:
Pancreatic cancer is an aggressive neoplasm with no current viable, effective treatment options. In the majority of cases, at first diagnosis, pancreatic cancer has already become metastatic so that conventional treatment regimens provide minimal, if any, clinical benefit in prolonging life or ameliorating the negative prognosis of this disease. These harsh realities underscore the need for developing improved treatment paradigms for this cancer, with gene therapy and immunotherapy currently being evaluated as potential therapeutic options. We currently describe an adenovirus-based therapy for successfully managing pancreatic cancer, the cancer terminator virus (CTV), which is founded on targeted induction of viral replication from a cancer-specific progression elevated gene-3 (PEG-3) promoter (PEG-Prom) and immune modulation by IFN-gamma. The PEG-Prom functions selectively in cancer cells of diverse lineages compared with their normal cellular counterparts. In the CTV, the PEG-Prom drives expression of the adenoviral early region 1A (E1A) gene, necessary for virus replication, with IFN-gamma simultaneously being expressed from the E3 region. Infection of normal cells and pancreatic cancer cells with the CTV confirmed cancer cell-selective adenoviral replication, robust IFN-gamma production coupled with virus replication, growth inhibition, and apoptosis induction. Infection of established pancreatic tumors in nude mice with the CTV promoted viral replication, IFN-gamma production, and activation of antitumor immunity resulting in complete eradication of both primary and distant tumors, curing animals of disease. The CTV provides a novel reagent for treating pancreatic and other human cancers with potential for eliminating both primary tumors and metastatic disease.
Insights
A novel cancer terminator virus (CTV) effectively targets pancreatic cancer by inducing viral replication in cancer cells and stimulating immune responses. This adenovirus-based therapy eradicated both primary and metastatic tumors in mice, offering a promising new treatment avenue.
Area of Science:
- Oncolytic virology
- Cancer gene therapy
- Immunotherapy
Background:
- Pancreatic cancer is highly aggressive with limited treatment options.
- Metastatic spread at diagnosis significantly reduces treatment efficacy.
- Novel therapeutic strategies, including gene and immune therapies, are urgently needed.
Purpose of the Study:
- To evaluate the efficacy of an adenovirus-based therapy, the cancer terminator virus (CTV), for pancreatic cancer treatment.
- To assess the cancer-specific replication and immune-modulating properties of CTV.
- To determine CTV's potential in eradicating primary and metastatic tumors.
Main Methods:
- Development of CTV utilizing a cancer-specific Progression Elevated Gene-3 (PEG-3) promoter (PEG-Prom) to drive adenoviral replication.
- Engineering CTV to express Interferon-gamma (IFN-gamma) for immune modulation.
- In vitro studies on normal and cancer cells to confirm selective replication and effects.
- In vivo studies in nude mice with established pancreatic tumors to assess therapeutic outcomes.
Main Results:
- CTV demonstrated selective replication in cancer cells, sparing normal cells.
- Infection with CTV led to robust IFN-gamma production, viral replication, growth inhibition, and apoptosis in cancer cells.
- In vivo treatment resulted in viral replication, IFN-gamma production, and activation of antitumor immunity.
- Complete eradication of primary and distant tumors was achieved in mice, leading to a cure.
Conclusions:
- The cancer terminator virus (CTV) is a potent oncolytic agent for pancreatic cancer.
- CTV exhibits cancer-selective replication and potent immune-stimulatory effects.
- This novel therapy has the potential to eliminate both primary and metastatic human cancers.

