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Adenoviral Transduction of Naive CD4 T Cells to Study Treg Differentiation
Published on: August 13, 2013
A novel approach using transcomplementing adenoviral vectors for gene therapy of adrenocortical cancer
G W Wolkersdörfer1, S R Bornstein, J N Higginbotham
1Developmental Endocrinology Branch, National Institute of Child Health and Human Development, Bethesda, Maryland USA.
Abstract:
Current therapies for adrenocortical carcinomas do not improve the life expectancy of patients. In this study, we tested whether a gene-transfer therapy based upon a suicide gene/prodrug system would be effective in an animal model of the disease. We employed E4- and E1A/B-depleted, herpes simplex virus-thymidine kinase-expressing adenoviral mutants that transcomplement each other within tumor cells, hereby improving transgene delivery and efficacy by viral replication in situ. Transcomplementation of vectors increased the fraction of transduced of tumor cells. This increase was accompanied by greater tumor volume reduction compared to non-transcomplementing approaches. Survival time improved with non-replicating vectors plus GCV compared to controls. However, transcomplementation/replication of vectors led to a further significant increment in anti-tumor activity and survival time (p < 0.02). In treated animals, we observed a high number of apoptotic nuclei both adjacent to and distant from injection sites and sites of viral oncolysis. Ultrastructural analyses exhibited nuclear inclusion bodies characteristic of virus production in situ, and provided further evidence that this therapy induced apoptotic cell death within tumor cells. We conclude that the efficacy of suicide gene therapy is significantly amplified by viral replication and, in combination with GCV, significantly reduces tumor burden and increases survival time.
Insights
Gene transfer therapy using a suicide gene system significantly improved survival in an adrenocortical carcinoma animal model. Viral replication further enhanced this gene therapy
Area of Science:
- Oncolytic virotherapy
- Gene therapy
- Adrenocortical carcinoma research
Background:
- Current adrenocortical carcinoma treatments fail to improve patient survival.
- Adrenocortical carcinomas require novel therapeutic strategies.
Purpose of the Study:
- To evaluate a novel suicide gene therapy using replication-competent adenoviral vectors in an animal model of adrenocortical carcinoma.
- To assess the impact of viral replication on gene therapy efficacy and patient survival.
Main Methods:
- Utilized E4- and E1A/B-depleted adenoviral mutants expressing herpes simplex virus-thymidine kinase.
- Employed a transcomplementing system to enhance transgene delivery and viral replication within tumor cells.
- Administered ganciclovir (GCV) as the prodrug to induce tumor cell death.
Main Results:
- Transcomplementation of vectors increased tumor cell transduction and led to greater tumor volume reduction.
- Replication-competent vectors significantly improved anti-tumor activity and survival time compared to non-replicating vectors.
- Apoptotic cell death was observed both near and far from injection sites, confirming therapy effectiveness.
Conclusions:
- Suicide gene therapy efficacy is significantly amplified by viral replication.
- This enhanced gene therapy, combined with GCV, effectively reduces tumor burden and increases survival in adrenocortical carcinoma models.
- The study demonstrates a promising therapeutic approach for adrenocortical carcinomas.
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