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High-Efficiency Transduction of Liver Cancer Cells by Recombinant Adeno-Associated Virus Serotype 3 Vectors
Published on: March 22, 2011
Recent advances in various adeno-associated viruses (AAVs) as gene therapy agents in hepatocellular carcinoma
Meead Hadi1, Omer Qutaiba B Allela2, Mansoureh Jabari3
1Department of Microbiology, Faculty of Basic Science, Central Tehran Branch, Islamic Azad University, Tehran, Iran.
Abstract:
Primary liver cancer, which is scientifically referred to as hepatocellular carcinoma (HCC), is a significant concern in the field of global health. It has been demonstrated that conventional chemotherapy, chemo-hormonal therapy, and conformal radiotherapy are ineffective against HCC. New therapeutic approaches are thus urgently required. Identifying single or multiple mutations in genes associated with invasion, metastasis, apoptosis, and growth regulation has resulted in a more comprehensive comprehension of the molecular genetic underpinnings of malignant transformation, tumor advancement, and host interaction. This enhanced comprehension has notably propelled the development of novel therapeutic agents. Therefore, gene therapy (GT) holds great promise for addressing the urgent need for innovative treatments in HCC. However, the complexity of HCC demands precise and effective therapeutic approaches. The adeno-associated virus (AAV) distinctive life cycle and ability to persistently infect dividing and nondividing cells have rendered it an alluring vector. Another appealing characteristic of the wild-type virus is its evident absence of pathogenicity. As a result, AAV, a vector that lacks an envelope and can be modified to transport DNA to specific cells, has garnered considerable interest in the scientific community, particularly in experimental therapeutic strategies that are still in the clinical stage. AAV vectors emerge as promising tools for HCC therapy due to their non-immunogenic nature, efficient cell entry, and prolonged gene expression. While AAV-mediated GT demonstrates promise across diverse diseases, the current absence of ongoing clinical trials targeting HCC underscores untapped potential in this context. Furthermore, gene transfer through hepatic AAV vectors is frequently facilitated by GT research, which has been propelled by several congenital anomalies affecting the liver. Notwithstanding the enthusiasm associated with this notion, recent discoveries that expose the integration of the AAV vector genome at double-strand breaks give rise to apprehensions regarding their enduring safety and effectiveness. This review explores the potential of AAV vectors as versatile tools for targeted GT in HCC. In summation, we encapsulate the multifaceted exploration of AAV vectors in HCC GT, underlining their transformative potential within the landscape of oncology and human health.
Insights
Gene therapy using adeno-associated virus (AAV) vectors shows promise for treating hepatocellular carcinoma (HCC), a type of liver cancer. Further research is needed to ensure safety and effectiveness for this innovative treatment.
Area of Science:
- Oncology
- Gene Therapy
- Hepatology
Background:
- Hepatocellular carcinoma (HCC) is a major global health concern with limited treatment options.
- Conventional therapies like chemotherapy and radiotherapy are largely ineffective against HCC.
- Understanding the molecular basis of HCC has spurred the development of targeted therapies.
Purpose of the Study:
- To explore the potential of adeno-associated virus (AAV) vectors for gene therapy (GT) in HCC.
- To review the current state and future prospects of AAV-mediated GT for liver cancer.
- To address the need for innovative and effective HCC treatments.
Main Methods:
- Review of existing literature on AAV vectors and their application in HCC.
- Analysis of AAV vector characteristics, including their life cycle, non-pathogenicity, and gene delivery capabilities.
- Discussion of safety and efficacy concerns related to AAV vector integration.
Main Results:
- AAV vectors are non-immunogenic, efficiently enter cells, and provide prolonged gene expression, making them promising for HCC therapy.
- AAV-mediated GT has shown potential across various diseases, but clinical trials targeting HCC are currently lacking.
- Gene transfer using hepatic AAV vectors is supported by research on liver-related congenital anomalies.
Conclusions:
- AAV vectors represent a versatile and promising tool for targeted gene therapy in hepatocellular carcinoma.
- Despite potential safety concerns regarding vector genome integration, AAV-mediated GT holds significant transformative potential for HCC treatment.
- Further investigation and clinical trials are warranted to fully realize the therapeutic benefits of AAV vectors in oncology.
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