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Selective gene delivery to head and neck cancer cells via an integrin targeted adenoviral vector
K Kasono1, J L Blackwell, J T Douglas
1Gene Therapy Program, University of Alabama at Birmingham, 35294, USA.
Abstract:
In vivo cancer gene therapy approaches for squamous cell carcinoma of the head and neck (SCCHN) based on adenoviral vector-mediated gene delivery have been limited by the suboptimal efficacy of gene transfer to tumor cells. We hypothesized that this issue was due to deficiency of the primary adenoviral receptor, the coxsackie-adenovirus receptor (CAR), on the tumor targets. Studies of CAR levels on SCCHN cell lines confirmed that their relative refractoriness to the adenoviral vector was based on this deficiency. To circumvent this deficiency, we applied an adenoviral vector targeted to a tumor cell marker characteristic of SCCHN. In this regard, integrins of the alpha2beta1 and alpha3beta1 class are frequently overexpressed in SCCHN. Furthermore, these integrins recognize the RGD peptide motif. On this basis, we applied an adenoviral vector genetically modified to contain such a peptide within the HI loop of the fiber protein as a means to alter viral tropism. Studies confirmed that the CAR-independent gene delivery achieved via this strategy allowed enhanced gene transfer efficiencies to SCCHN tumor cells. Importantly, this strategy could achieve preferential augmentation of gene transfer in tumor cells compared with normal cells. The ability to achieve enhanced and specific gene transfer to tumor cells via adenoviral vectors has important implications for gene therapy strategies for SCCHN and for other neoplasms in general.
Insights
Adenoviral gene therapy for head and neck cancer faces challenges due to low gene transfer. Modifying adenoviral vectors to target tumor cell markers improves gene delivery specifically to cancer cells.
Area of Science:
- Oncolytic Virotherapy
- Molecular and Cellular Oncology
- Gene Therapy
Background:
- Adenoviral vector-mediated gene therapy for squamous cell carcinoma of the head and neck (SCCHN) shows limited efficacy.
- This limitation is attributed to deficient expression of the coxsackie-adenovirus receptor (CAR) on SCCHN cells.
Purpose of the Study:
- To enhance gene transfer efficiency in SCCHN using adenoviral vectors.
- To overcome CAR deficiency by retargeting adenoviral vectors to SCCHN-specific cell surface markers.
Main Methods:
- Engineered adenoviral vectors displaying RGD-containing peptides on their fiber proteins to target integrins (α2β1, α3β1) overexpressed in SCCHN.
- Evaluated CAR-independent gene delivery and compared gene transfer efficiencies in SCCHN cells versus normal cells.
Main Results:
- Modified adenoviral vectors demonstrated enhanced gene transfer to SCCHN cells, independent of CAR expression.
- Achieved preferential gene transfer augmentation in tumor cells compared to normal cells.
Conclusions:
- Adenoviral vector retargeting via RGD peptide modification improves gene delivery specificity and efficacy for SCCHN.
- This strategy holds significant potential for advancing gene therapy in SCCHN and other cancers.