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Published on: March 22, 2011
E1A, E1B double-restricted replicative adenovirus at low dose greatly augments tumor-specific suicide gene therapy
1Division of Gastroenterology, Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Abstract:
Combination therapy with replicative oncolytic viruses is a recent topic in innovative cancer therapy, but few studies have examined the efficacy of oncolytic adenovirus plus replication-deficient adenovirus carrying a suicide gene. We aim to evaluate whether an E1A, E1B double-restricted oncolytic adenovirus, AxdAdB-3, can improve the efficacy for gallbladder cancers (GBCs) of the replication-deficient adenovirus-based herpes simplex virus thymidine kinase (HSVtk)/ganciclovir (GCV) therapy directed by the carcinoembryonic antigen (CEA) promoter. Cytopathic effects of AxdAdB-3 plus AxCEAprTK (an adenovirus expressing HSVtk directed by CEA promoter) or AxCAHSVtk (an adenovirus expressing HSVtk directed by a nonspecific CAG promoter) with GCV administration were examined in several GBC lines and normal cells. Efficacy in vivo was tested in severe combined immunodeficiency disease mice with GBC xenografts. Addition of AxdAdB-3 (1 multiplicity of infection, MOI) significantly enhanced the cytopathic effects of AxCEAprTK (10 MOI)/GCV on GBC cells. The augmented effect was attributable to the replication of the AxCEAprTK and also to the enhanced CEA promoter activity, which was presumably transactivated by E1A. In normal cells, AxdAdB-3 (20 MOI) plus AxCEAprTK (200 MOI)/GCV was not cytopathic, whereas AxdAdB-3 (1 MOI) plus AxCAHSVtk (10 MOI)/GCV was significantly toxic. Low-dose AxdAdB-3 (2 x 10(7) PFU, plaque-forming unit) plus AxCEAprTK (2 x 10(8) PFU)/GCV significantly suppressed the growth of GBC xenografts as compared with either AxdAdB-3 (2 x 10(7) PFU)/GCV or AxCEAprTK (2 x 10(9) PFU)/GCV alone. E1A, E1B double-restricted replicating adenovirus at low dose significantly augmented the efficacy of CEA promoter-directed HSVtk/GCV therapy without obvious toxicity to normal cells, suggesting a potential use of this combination for treating GBC and other CEA-producing malignancies.
Insights
Combination therapy using a replicating oncolytic adenovirus (AxdAdB-3) significantly enhanced herpes simplex virus thymidine kinase/ganciclovir efficacy against gallbladder cancer. This innovative approach shows promise for treating CEA-producing malignancies with minimal toxicity.
Area of Science:
- Oncolytic virotherapy
- Gene therapy
- Cancer research
Background:
- Combination therapy with oncolytic viruses is an emerging cancer treatment strategy.
- Few studies have investigated the combination of oncolytic adenovirus and suicide gene therapy.
Purpose of the Study:
- To evaluate if AxdAdB-3, an oncolytic adenovirus, can enhance the efficacy of herpes simplex virus thymidine kinase (HSVtk)/ganciclovir (GCV) therapy for gallbladder cancers (GBCs).
- To assess the safety and efficacy of this combination therapy in GBC cell lines and xenografts.
Main Methods:
- Examined cytopathic effects of AxdAdB-3 combined with HSVtk-expressing adenoviruses (promoter-specific or non-specific) and GCV in GBC and normal cells.
- Assessed in vivo efficacy in severe combined immunodeficiency mice bearing GBC xenografts.
- Investigated the role of adenovirus replication and promoter activity in treatment efficacy.
Main Results:
- AxdAdB-3 significantly enhanced the cytopathic effects of CEA promoter-directed HSVtk/GCV therapy in GBC cells.
- Enhanced efficacy was attributed to AxdAdB-3 replication and boosted CEA promoter activity, potentially via E1A transactivation.
- Low-dose AxdAdB-3 combined with CEA promoter-directed HSVtk/GCV therapy significantly suppressed GBC xenograft growth without significant toxicity to normal cells.
Conclusions:
- E1A, E1B double-restricted replicating adenovirus (AxdAdB-3) at low doses potentiates CEA promoter-directed HSVtk/GCV therapy for GBC.
- This combination therapy demonstrates significant efficacy and a favorable safety profile.
- Suggests potential application for treating GBC and other carcinoembryonic antigen (CEA)-producing malignancies.
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