Cancer-Specific Activation of the Vesicular Stomatitis Virus Matrix by Survivin Promoter in Breast Cancer Cells
Atefeh Valouzi1,2, Majid Shahbazi1, Vahid Erfani-Moghadam1,3
1Department of Medical Biotechnology, Golestan University of Medical Sciences, Gorgan, Iran.
Abstract:
Oncolytic viral-based therapy and specific gene expression by promoters are modern targeted oncotherapy approaches that have gained significant attention in recent years. In this study, both strategies were combined by designing cancer-specific activation of vesicular stomatitis virus matrix expression under the survivin promoter. The matrix sequence was cloned downstream of the survivin promoter (pM). After transfecting MCF-7 cells with pM, cell proliferation and apoptosis induction were assessed. Additionally, the transcript levels of matrix and apoptosis-related genes in response to pM was assessed. The proliferation of MCF-7 cells was significantly reduced by the constructed matrix-expressing plasmid at 48 and 72 h post-transfection (p < 0.05). Enhanced matrix expression resulted in the down-regulation of MMP-9, TP53, and NF-kB, while simultaneously up-regulating Bax transcripts. Evaluating the effect of pM vector on apoptosis induction revealed a significant increase in the MCF-7 cells compared to untreated cells (p < 0.05). The absence of significant matrix gene expression in HDF cells, relative to MCF-7 cells, further underscores the specific function of the Survivin promoter in cancer cells. These findings suggest that the matrix may have various biological functions in a diverse set of non-apoptotic pathways. Further research on the association of the matrix with other genes could provide insights into the biomedical significance and future perspectives of the matrix in cancer gene therapy.
Insights
This study combines oncolytic virotherapy with targeted gene expression to inhibit cancer cell growth. The survivin promoter specifically activated vesicular stomatitis virus matrix expression, reducing proliferation and inducing apoptosis in cancer cells.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Oncolytic viral-based therapy and targeted gene expression are advanced oncotherapy strategies.
- Combining these approaches offers potential for enhanced cancer treatment.
Purpose of the Study:
- To develop a cancer-specific oncolytic viral therapy by linking vesicular stomatitis virus matrix expression to the survivin promoter.
- To evaluate the efficacy of this combined strategy in reducing cancer cell proliferation and inducing apoptosis.
Main Methods:
- Constructed a plasmid (pM) with the matrix sequence downstream of the survivin promoter.
- Transfected MCF-7 breast cancer cells with pM.
- Assessed cell proliferation, apoptosis, and gene expression levels (matrix, MMP-9, TP53, NF-kB, Bax).
Main Results:
- The pM plasmid significantly reduced MCF-7 cell proliferation at 48 and 72 hours post-transfection.
- Matrix expression led to down-regulation of MMP-9, TP53, and NF-kB, and up-regulation of Bax.
- Apoptosis significantly increased in pM-treated MCF-7 cells compared to controls.
- Specific matrix gene expression was observed in MCF-7 cells but not in HDF cells, confirming promoter specificity.
Conclusions:
- The survivin promoter effectively drives cancer-specific matrix expression.
- This targeted approach shows promise for reducing cancer cell proliferation and inducing apoptosis.
- The matrix may possess broader biological functions in non-apoptotic pathways, warranting further investigation for cancer gene therapy applications.
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