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Published on: February 22, 2015
A neuroblastoma-selective suicide gene therapy approach using the tyrosine hydroxylase promoter
Sabine Steffens1, Anke Sandquist, Susanne Frank
1Department of Pediatric Oncology, Hematology, and Immunology, University Children's Hospital, Heinrich-Heine-University, Moorenstrasse 5, D-40225 Duesseldorf, Germany.
Abstract:
In this study, selective expression of therapeutic transgenes was evaluated in neuroblastoma cells. Promoter fragments of the genes for neuron-specific enolase (NSEp), tyrosine hydroxylase (THp), and dopamine-beta-hydroxylase (DBHp) were studied in neuroblastoma and nonneuronal cell lines by transient transfection experiments using fluorescence-activated cell sorting (FACS) analysis of enhanced green fluorescent protein (egfp) and luciferase (luc+) assay. Both reporter gene assays revealed a neuroblastoma-selective expression mediated by NSEp and THp, whereas DBHp was active only in a murine neuroblastoma cell line. Reporter gene expression by NSEp in neuroblastoma cells was markedly higher than expression by THp, but NSEp also showed considerable background activity in nonneuronal cells. THp-driven expression of egfp was 35-fold higher in human neuroblastoma MHH-NB11 compared with nonneuronal HeLa cells. Thus, THp was chosen for a neuroblastoma-selective suicide gene therapy approach using the herpes simplex virus type 1 thymidine kinase (HSV-tk)/ganciclovir (GCV) system. A retrovirus vector that contained an expression cassette of a HSV-tk/egfp fusion gene and THp in antisense orientation was generated. Stably transduced human neuroblastoma cells and nonneuronal cell lines were generated, and HSV-tk/egfp expression was measured by FACS and GCV cytotoxicity assay. There was a 2.2-fold difference in green fluorescence and a 1.4-fold difference in cell killing between the human neuroblastoma MHH-NB11 and HeLa cells after HSV-tk/egfp gene transfer. The overall difference in THp-HSV-tk/egfp-mediated cell killing between neuroblastoma and nonneuronal tumor cell lines was statistically significant (P = 0.001). In conclusion, the present study demonstrated the feasibility of a neuroblastoma-selective gene therapy approach using the THp/HSV-tk/egfp expression cassette.
Insights
This study explored neuroblastoma-selective gene therapy using the tyrosine hydroxylase promoter (THp) and herpes simplex virus thymidine kinase (HSV-tk) system. Results show THp enables targeted gene expression and cell killing in neuroblastoma, demonstrating a feasible therapeutic approach.
Area of Science:
- Molecular Biology
- Cancer Genetics
- Gene Therapy
Background:
- Neuroblastoma is a pediatric cancer requiring targeted therapies.
- Selective gene expression in cancer cells is crucial for effective gene therapy.
- Promoters like neuron-specific enolase (NSEp), tyrosine hydroxylase (THp), and dopamine-beta-hydroxylase (DBHp) were investigated for neuroblastoma targeting.
Purpose of the Study:
- To evaluate the neuroblastoma-selective expression of therapeutic transgenes.
- To identify suitable promoters for targeted gene delivery in neuroblastoma.
- To assess the feasibility of a neuroblastoma-selective suicide gene therapy approach.
Main Methods:
- Transient transfection assays using reporter genes (enhanced green fluorescent protein [egfp] and luciferase [luc+]) and fluorescence-activated cell sorting (FACS).
- Testing of NSEp, THp, and DBHp promoter activity in neuroblastoma and nonneuronal cell lines.
- Generation of a retroviral vector with a THp-driven herpes simplex virus type 1 thymidine kinase (HSV-tk)/egfp fusion gene for gene therapy experiments.
Main Results:
- NSEp and THp demonstrated neuroblastoma-selective expression, while DBHp showed activity only in a murine cell line.
- THp-driven egfp expression was 35-fold higher in human neuroblastoma cells (MHH-NB11) compared to HeLa cells.
- The THp/HSV-tk/egfp cassette achieved statistically significant selective cell killing (P = 0.001) in neuroblastoma cells compared to nonneuronal cells.
Conclusions:
- The tyrosine hydroxylase promoter (THp) is effective for achieving neuroblastoma-selective gene expression.
- A neuroblastoma-selective suicide gene therapy approach using the THp/HSV-tk/egfp cassette is feasible.
- This strategy holds promise for targeted treatment of neuroblastoma.
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