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Lentiviral Vector-mediated Gene Therapy of Hepatocytes Ex Vivo for Autologous Transplantation in Swine
Published on: November 4, 2018
Gene therapy of neoplastic liver diseases
Bruno Sangro1, Maite Herraiz, Jesus Prieto
1Division of Gene Therapy, Department of Internal Medicine, Clínica Universitaria de Navarra, AP 4209, 31080, Pamplona, Spain. bsangro@unav.es
Abstract:
Since advanced liver cancer lacks effective therapy in most cases, a considerable interest has been drawn towards gene therapy. Natural or chimerical genes can be transferred to the tumour itself, the non-tumoral liver, or even distant tissues using a variety of vectors administered by intratumoral or intravascular routes. The desired selectivity in gene expression can be achieved by increasing the specificity of gene delivery or by controlling gene expression with tumour-specific promoters, such as alpha-fetoprotein or carcinoembryonic antigen. There are two main approaches to gene therapy of liver cancer aiming at killing directly malignant cells or at improving the host's defensive systems, respectively. The former include replacing the lost function of tumour suppressor genes, inhibiting the action of activated oncogenes, sensitising tumour cells to prodrugs, or infecting the tumoral tissue with viruses that replicate selectively in cancer cells. Host defences can be improved by stimulating the antitumoral immune response, or by interfering with tumour vessel formation. Progress in gene therapy of liver cancer depends very much on information collected from well-designed clinical trials. This information includes knowledge of whether an efficient gene transfer has been achieved and what is the duration and magnitude of gene expression in the transduced tissues. Hopefully, magnetic resonance or positron emission tomography (PET) may turn out to be reliable procedures for tracing transgene expression in humans. Pre-clinical evidence and early clinical trials strongly suggest that there is a place for gene therapy of liver malignancies.
Insights
Gene therapy offers promising new treatments for advanced liver cancer by targeting tumor cells or boosting the immune system. Clinical trials are crucial for evaluating gene transfer efficiency and expression for effective liver cancer gene therapy.
Area of Science:
- Oncology
- Molecular Biology
- Hepatology
Background:
- Advanced liver cancer often lacks effective therapeutic options.
- Gene therapy presents a promising avenue for treating liver malignancies.
- Current research focuses on targeted gene delivery and expression control.
Purpose of the Study:
- To explore the potential of gene therapy for advanced liver cancer.
- To review current strategies and challenges in liver cancer gene therapy.
- To highlight the importance of clinical trials for assessing gene therapy efficacy.
Main Methods:
- Gene transfer to tumor cells, non-tumoral liver, or distant tissues using various vectors.
- Intratumoral or intravascular administration routes.
- Utilizing tumor-specific promoters (e.g., alpha-fetoprotein) for selective gene expression.
Main Results:
- Two primary approaches: direct tumor cell killing and enhancing host defense mechanisms.
- Direct killing strategies include tumor suppressor gene replacement, oncogene inhibition, prodrug sensitization, and oncolytic viruses.
- Host defense enhancement involves stimulating anti-tumoral immunity and inhibiting tumor angiogenesis.
Conclusions:
- Gene therapy holds significant potential for liver cancer treatment.
- Further research and well-designed clinical trials are essential to optimize gene transfer and expression.
- Advanced imaging techniques like MRI and PET may aid in monitoring transgene expression.
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