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Targeted antitumor effect induced by hTERT promoter mediated ODC antisense adenovirus
1Institute of Biochemistry and Molecular Biology, School of Medicine, Shandong University, 250012, Jinan, China.
Abstract:
The expression of Ornithine decarboxylase (ODC) which is the first key enzyme of polyamine biosynthesis is increased in cancer cells. We had blocked the polyamine synthesis pathway using the adenoviral-mediated antisense ODC in some cancer cells such as prostate cancers and colorectal cancers. These researches demonstrated that ODC antisense expression could inhibit tumor cell growth. In order to reach the goal of applying the targeting gene therapy in clinical practice, we cloned the antisense ODC RNA which was driven by cancer specific promoter (hTERT promoter; telomerase reverse transcriptase promoter) into the adenovirus vector (rAd-CMV-GFP-hTERTp-ODC). Human cancer cell lines (HepG2, Bel-7402, A549) and normal cell lines (HELF, LO2) were infected separately with rAd-CMV-GFP-hTERTp-ODC as well as with control vector (rAd-CMV-GFP). Luciferase activity assay was performed to determine hTERT promoter activity. Cell growth curves analysis, western blot analysis, flow cytometry analysis and Matrigel invasion assays were performed to assess properties of cell growth and invasiveness. The results showed that there was significant inhibition of ODC expression and cell proliferation in cancer cells treated with rAd-CMV-GFP-hTERTp-ODC compared with cells treated with PBS or rAd-CMV-GFP, and no significant inhibition was detected in normal cells. Our research offers a powerful and safe new therapeutic strategy for cancer targeted treatment.
Insights
This study developed a targeted gene therapy using antisense Ornithine decarboxylase (ODC) delivered by adenovirus. The therapy effectively inhibited cancer cell growth and proliferation without harming normal cells, offering a promising new cancer treatment strategy.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Ornithine decarboxylase (ODC) is a key enzyme in polyamine biosynthesis, and its elevated expression is linked to cancer cell proliferation.
- Antisense ODC strategies have shown potential in inhibiting tumor growth in preclinical models.
Purpose of the Study:
- To develop and evaluate a targeted gene therapy for cancer by inhibiting ODC expression.
- To construct an adenoviral vector (rAd-CMV-GFP-hTERTp-ODC) expressing antisense ODC RNA driven by the cancer-specific hTERT promoter.
Main Methods:
- Adenoviral vectors carrying antisense ODC or a control vector were used to infect human cancer and normal cell lines.
- Assays included luciferase activity for promoter function, cell growth curves, Western blot for protein expression, flow cytometry, and Matrigel invasion assays.
Main Results:
- The rAd-CMV-GFP-hTERTp-ODC vector demonstrated significant inhibition of ODC expression and cancer cell proliferation.
- Cancer cells treated with the ODC antisense vector showed reduced growth and invasiveness compared to controls.
- Normal cell lines exhibited no significant inhibition, indicating targeted therapeutic action.
Conclusions:
- Adenoviral-mediated delivery of antisense ODC, driven by the hTERT promoter, represents a potent and safe targeted gene therapy strategy for cancer.
- This approach effectively inhibits tumor cell growth and proliferation, offering a novel therapeutic avenue for various cancers.
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