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In Vitro Establishment of a Genetically Engineered Murine Head and Neck Cancer Cell Line using an Adeno-Associated Virus-Cas9 System
Published on: January 9, 2020
Head and neck cancer cells are efficiently infected by Ad5/35 hybrid virus
Elina Suominen1, Raine Toivonen, Reidar Grenman
1Turku Centre for Biotechnology, Abo Akademi University, Turku, Finland.
Background:
Clinical gene therapy trials using standard Ad5-based vectors have thus far demonstrated limited efficacy, most likely due to low expression levels of adenoviral receptors on tumor cells. We sought to analyze adenoviral receptor expression levels on primary head and neck squamous cell carcinoma (HNSCC) cells and to determine whether adenoviral retargeting to the CD46 receptor via the Ad5/35 system would increase therapeutic potential for HNSCC.
Methods:
We used flow cytometric analyses to determine adenoviral receptor expression levels on nine primary HNSCC cells collected from cancer patients. Adenoviruses Ad5.LacZ and Ad5/35.LacZ were used to analyze the differences in viral transduction both in vitro and in a HNSCC tumor mouse model.
Results:
Flow cytometric analyses demonstrated uniformly high CD46 expression in all cells studied (85-99%). In contrast, coxsackievirus and adenovirus receptor (CAR) expression was substantially lower and highly variable (1.6-62%). Alpha(v) integrin expression was between 39-98%. In situ stainings for beta-galactosidase gene expression demonstrated that Ad5/35.LacZ was clearly more effective than Ad5.LacZ in transducing primary HNSCC cells. Quantification of beta-galactosidase expression revealed up to 65 times higher transgene expression from Ad5/35.LacZ than Ad5.LacZ. In vivo, beta-galactosidase expression was detected in a substantial area after a single intratumoral injection of Ad5/35.LacZ, whereas injection with Ad5.LacZ resulted in gene expression only in a few cells.
Conclusions:
Our results demonstrate that the low and variable CAR expression levels limit the therapeutic efficacy of Ad5-based strategies for HNSCC. In contrast, the effective in vivo transduction capacity of Ad5/35 warrants further development of this vector for the treatment of head and neck cancer.
Insights
Standard gene therapy for head and neck cancer shows limited success due to low receptor expression. Retargeting adenoviral vectors to CD46 via Ad5/35 significantly enhances gene delivery and therapeutic potential in HNSCC.
Area of Science:
- Oncolytic virotherapy
- Gene therapy
- Head and neck cancer research
Background:
- Clinical trials of Ad5-based gene therapy for head and neck squamous cell carcinoma (HNSCC) show limited efficacy.
- Low expression of adenoviral receptors on tumor cells is a key limitation.
- This study investigates adenoviral receptor expression and the potential of Ad5/35 retargeting for HNSCC treatment.
Purpose of the Study:
- To analyze adenoviral receptor expression on primary HNSCC cells.
- To evaluate the efficacy of Ad5/35 retargeting to CD46 for enhanced gene delivery in HNSCC.
- To assess the therapeutic potential of Ad5/35 vectors in HNSCC models.
Main Methods:
- Flow cytometry was used to quantify adenoviral receptor expression (CD46, CAR, αv integrin) on nine primary HNSCC samples.
- In vitro and in vivo studies compared the transduction efficiency of Ad5.LacZ and Ad5/35.LacZ adenoviruses in HNSCC cells and a mouse model.
- Beta-galactosidase gene expression was used as a marker for viral transduction.
Main Results:
- Primary HNSCC cells exhibited uniformly high CD46 expression (85-99%) but low and variable coxsackievirus and adenovirus receptor (CAR) expression (1.6-62%).
- Ad5/35.LacZ demonstrated significantly higher transduction efficiency compared to Ad5.LacZ in both in vitro and in vivo HNSCC models.
- In vivo studies showed up to 65-fold higher transgene expression with Ad5/35.LacZ, with widespread gene expression after a single intratumoral injection.
Conclusions:
- Low and variable CAR expression limits the efficacy of standard Ad5-based gene therapy for HNSCC.
- The Ad5/35 vector shows effective in vivo transduction capacity, warranting further development for head and neck cancer treatment.
- Targeting CD46 receptor with Ad5/35 represents a promising strategy to overcome transduction barriers in HNSCC.
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