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Dual Bioluminescence Imaging of Tumor Progression and Angiogenesis
Published on: August 1, 2019
Cancer-specific targeting of an adenovirus-delivered herpes simplex virus thymidine kinase suicide gene using
J Michael Mathis1, B Jill Williams, Don A Sibley
1Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences Center, 1501 Kings Highway, Shreveport, LA 71130, USA. jmathi@lsuhsc.edu
Abstract:
Two technical hurdles, gene delivery and target specificity, have hindered the development of effective cancer gene therapies. In order to circumvent the problem of tumor specificity, the suicide gene, HSV-1 thymidine kinase (HSV-Tk), was modified with a complex 5' upstream-untranslated region (5'-UTR) that limits efficient translation to cells expressing high levels of the translation initiation factor, eIF4E. Since previous studies have shown that most tumor cells express elevated levels of eIF4E, tumor-specific gene delivery was optimized by incorporation of the 5'-UTR-modified suicide gene (HSV-UTk) into an adenovirus vector (Ad-CMV-UTk). The efficacy of this novel approach of targeting suicide gene expression and limiting cytotoxicity by means of translational restriction was tested in vitro with the use of the human breast cancer cell lines (MCF-7, MDA-MB435, and ZR-75-1). As controls, normal MCF10A, HMEC, and HMSC cell lines that express relatively low levels of eIF4E were used. Real-time reverse-transcription polymerase chain reaction (RT-PCR) was used to quantify HSV-Tk mRNA for cells infected with Ad-CMV-UTk as well as with Ad-CMV-Tk (a control adenovirus in which HSV-Tk is not regulated at the level of translation). Translation of HSV-Tk in the Ad-infected cells was measured by Western blot analysis. In addition, cytotoxicity was determined following treatment with the pro-drug ganciclovir (GCV) using an MTT viability assay. Finally, microPET imaging was used to assess cancer cell-specific expression of HSV-Tk and expression in normal tissues in vivo after intraperitoneal injection of Ad-CMV-Tk or Ad-CMV-UTk. These data collectively showed enhanced cancer cell-specific gene expression and reduced normal tissue gene expression for the Ad-HSV-UTk compared to the Ad-CMV-Tk, leading to increased cancer cell-enhanced GCV cytotoxicity. These results indicate that translational targeting of suicide gene expression in tumor cells in vitro and in vivo is effective and may provide a platform for enhanced cancer gene therapy specificity.
Insights
This study developed a novel cancer gene therapy using a modified suicide gene (HSV-UTk) delivered by adenovirus. This approach enhances tumor-specific gene expression and cytotoxicity, improving cancer treatment specificity.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Cancer gene therapy faces challenges with gene delivery and tumor specificity.
- The translation initiation factor eIF4E is often overexpressed in tumor cells.
- Modifying suicide genes to target eIF4E levels offers a strategy for tumor-specific expression.
Purpose of the Study:
- To develop and evaluate a novel suicide gene therapy approach for cancer.
- To enhance tumor specificity by regulating gene translation based on eIF4E levels.
- To assess the efficacy and specificity of the 5'-UTR-modified suicide gene (HSV-UTk) delivered via adenovirus.
Main Methods:
- Engineered an adenovirus vector (Ad-CMV-UTk) carrying a 5'-UTR-modified suicide gene (HSV-UTk).
- Tested gene expression (RT-PCR, Western blot), cytotoxicity (MTT assay), and in vivo specificity (microPET imaging) in cancer and normal cell lines.
- Utilized normal cell lines with low eIF4E expression as controls.
Main Results:
- Ad-CMV-UTk demonstrated enhanced cancer cell-specific gene expression compared to the control (Ad-CMV-Tk).
- Reduced gene expression was observed in normal tissues, indicating improved specificity.
- Increased ganciclovir (GCV) cytotoxicity was achieved in cancer cells with the modified vector.
Conclusions:
- Translational targeting of suicide gene expression is an effective strategy for enhancing cancer gene therapy specificity.
- The 5'-UTR modification of HSV-Tk provides a platform for improved tumor-targeted gene delivery and reduced off-target effects.
- This approach holds promise for developing more effective and safer cancer gene therapies.
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