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A new targeting approach for breast cancer gene therapy using the human fatty acid synthase promoter
Chen Yan1, Liu Wen-Chao, Qin Hong-Yan
1Department of Clinical Oncology, Xi'jing Hospital, Fourth Military Medical University (FMMU), Xi'An, China.
Abstract:
Gene therapy with adenoviral vectors is a promising new approach for the treatment of refractory advanced breast cancer. Strategies to restrict adenoviral-mediated therapeutic gene expression are important to avoid harming normal cells. Fatty acid synthase (FAS) is overexpressed in several human cancers. FAS is highly expressed in infiltrating breast cancer tissue, and always associated with malignant phenotypes and poor prognosis. In this study, expression of the FAS was evaluated in three breast cancer cell lines. A 680 bp-FAS promoter was cloned and its transcriptional activity was analyzed in breast cancer cell lines. We made a recombinant adenovirus construct carrying herpes simplex virus thymidine kinase (HSV-TK) driven by human FAS promoter (Ad-FAS-TK) and analyzed its target cytotoxicity in vitro and in vivo against human breast cancer cells combined with prodrug ganciclovir (GCV). The results show that the expression of FAS varies in the three breast cancer cell lines examined (respectively, SK-Br3>MCF-7>MDA-MB-231), but FAS promoter can initiate relative high transcriptional activities in all three kinds of cancer cells while little in normal fibroblast cells. Furthermore, FAS promoter can drive the therapeutic gene in a wider range of human breast cancers than cerbB2 promoter and exhibit a stronger activity than midkine (MK) promoter. Combination of Ad-FAS-TK and GCV treatment exhibited strong-targeted cytotoxic effect on breast cancer cells but showed little activity in normal fibroblast cells. The tumorigenic capability of breast cancer cells treated with Ad-FAS-TK/GCV was completely inhibited in vitro and in vivo assays. In conclusion, adenoviral-mediated suicide gene therapy controlled by tumor associated-FAS promoter can induce specific cytotoxic effect on human breast cancer cells in vitro and in vivo. So it is a promising target for the development of gene therapy against breast cancers.
Insights
Gene therapy using adenoviral vectors and Fatty Acid Synthase (FAS) promoter shows promise for breast cancer treatment. This approach targets cancer cells specifically, minimizing harm to healthy tissues.
Area of Science:
- Oncology
- Gene Therapy
- Molecular Biology
Background:
- Gene therapy with adenoviral vectors offers a novel treatment for advanced breast cancer.
- Targeted gene expression is crucial to prevent toxicity in normal cells.
- Fatty acid synthase (FAS) is overexpressed in breast cancer, correlating with malignancy and poor prognosis.
Purpose of the Study:
- To evaluate the expression of FAS in breast cancer cell lines.
- To construct and test a recombinant adenovirus (Ad-FAS-TK) utilizing the FAS promoter for targeted gene delivery.
- To assess the in vitro and in vivo efficacy of Ad-FAS-TK combined with ganciclovir (GCV) in treating breast cancer.
Main Methods:
- Cloning and analysis of a 680 bp human FAS promoter.
- Construction of a recombinant adenovirus (Ad-FAS-TK) expressing herpes simplex virus thymidine kinase (HSV-TK) under the FAS promoter.
- In vitro and in vivo cytotoxicity assays using breast cancer cell lines and normal fibroblasts, with and without GCV treatment.
Main Results:
- FAS expression varied across SK-Br3, MCF-7, and MDA-MB-231 cell lines.
- The FAS promoter demonstrated significant transcriptional activity in breast cancer cells but minimal activity in normal fibroblasts.
- Ad-FAS-TK/GCV treatment showed potent, targeted cytotoxicity against breast cancer cells, both in vitro and in vivo, while sparing normal cells.
- Tumorigenic potential of treated breast cancer cells was completely inhibited.
Conclusions:
- Adenoviral-mediated suicide gene therapy controlled by the tumor-associated FAS promoter is effective.
- This strategy induces specific cytotoxic effects on human breast cancer cells.
- The FAS promoter represents a promising target for developing targeted gene therapies for breast cancer.
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