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Antisense cyclin D1 induces apoptosis and tumor shrinkage in human squamous carcinomas
E R Sauter1, M Nesbit, S Litwin
1The Wistar Institute, Philadelphia, Pennsylvania 19104, USA.
Abstract:
Cyclin D1 plays an essential regulatory role in the G1 phase of the cell cycle. The cyclin D1 gene is amplified in 20-50% of squamous cell carcinomas (SCCs), and the protein is overexpressed in up to 80% of SCCs. Our hypothesis was that gene transduction of antisense (AS) cyclin D1 in human SCCs in vivo would result in tumor reduction. A cyclin D1 cDNA was inserted into an E1/E3-deficient serotype 5 adenovirus (AS cyclin D1) in an AS orientation using homologous recombination. AS cyclin D1 transduction suppressed cyclin D1 protein expression in both cultured cells and tumors. AS cyclin D1 significantly inhibited cell proliferation by both [3H]thymidine incorporation in six SCC cell lines (P = 0.01-0.001) and the conversion of tetrazolium salt to formazan in four SCC cell lines (P = 0.01-0.004). Apoptosis detected in >25% of cells in each cell line 48 h after AS cyclin D1 transduction paralleled the reduction in cyclin D1 protein. Preformed SCCs transduced with AS cyclin D1 were significantly inhibited (P = 0.002-0.005), and apoptosis was prominent in the AS cyclin D1-treated tumors, but not in tumors treated with the control vector. These data extend prior in vitro and ex vivo results and indicate that AS cyclin D1 suppresses SCC growth both in vitro and in vivo through suppression of cyclin D1 protein expression, leading to cellular apoptosis. Our findings suggest that cyclin D1 may have a role in cell survival and that cyclin D1 AS therapy may be useful as an adjunct to standard treatment for SCC.
Insights
Antisense (AS) cyclin D1 gene therapy significantly reduced squamous cell carcinoma (SCC) growth in vitro and in vivo. This targeted approach suppressed cyclin D1 protein, inducing cancer cell apoptosis and suggesting potential as an adjunct SCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Cyclin D1 is crucial for cell cycle regulation.
- Its gene amplification and protein overexpression are common in squamous cell carcinomas (SCCs).
Purpose of the Study:
- To investigate the efficacy of gene transduction with antisense (AS) cyclin D1 in human SCCs.
- To determine if AS cyclin D1 can inhibit SCC tumor growth in vivo.
Main Methods:
- Constructed an adenovirus vector carrying AS cyclin D1 cDNA.
- Transduced cultured SCC cells and in vivo SCC tumors with AS cyclin D1.
- Assessed cyclin D1 protein expression, cell proliferation, and apoptosis.
Main Results:
- AS cyclin D1 transduction effectively suppressed cyclin D1 protein expression in cells and tumors.
- Significant inhibition of SCC cell proliferation was observed (P = 0.01-0.001).
- Induced apoptosis in over 25% of SCC cells and prominent apoptosis in treated tumors (P = 0.002-0.005).
Conclusions:
- AS cyclin D1 gene therapy suppresses SCC growth both in vitro and in vivo by reducing cyclin D1 protein.
- Cyclin D1 may play a role in cancer cell survival.
- AS cyclin D1 therapy shows promise as an adjunct treatment for SCC.