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Published on: February 21, 2025
Gene therapy for cancer: present status and future perspective
1Department of Medicine, St Rita's Medical Center, 825 West Market Street, Suite #203, Lima, OH 45805 USA.
Abstract:
Advancements in human genomics over the last two decades have shown that cancer is mediated by somatic aberration in the host genome. This discovery has incited enthusiasm among cancer researchers; many now use therapeutic approaches in genetic manipulation to improve cancer regression and find a potential cure for the disease. Such gene therapy includes transferring genetic material into a host cell through viral (or bacterial) and non-viral vectors, immunomodulation of tumor cells or the host immune system, and manipulation of the tumor microenvironment, to reduce tumor vasculature or to increase tumor antigenicity for better recognition by the host immune system. Overall, modest success has been achieved with relatively minimal side effects. Previous approaches to cancer treatment, such as retrovirus integration into the host genome with the risk of mutagenesis and second malignancies, immunogenicity against the virus and/or tumor, and resistance to treatment with disease relapse, have markedly decreased with the new generation of viral and non-viral vectors. Several tumor-specific antibodies and genetically modified immune cells and vaccines have been developed, yet few are presently commercially available, while many others are still ongoing in clinical trials. It is anticipated that gene therapy will play an important role in future cancer therapy as part of a multimodality treatment, in combination with, or following other forms of cancer therapy, such as surgery, radiation and chemotherapy. The type and mode of gene therapy will be determined based on an individual's genomic constituents, as well as his or her tumor specifics, genetics, and host immune status, to design a multimodality treatment that is unique to each individual's specific needs.
Insights
Gene therapy, using genetic manipulation, offers a promising approach to cancer treatment by targeting somatic genomic aberrations. Advances in viral and non-viral vectors improve safety and efficacy for personalized cancer regression.
Area of Science:
- Oncology
- Genomics
- Biotechnology
Background:
- Cancer is fundamentally linked to somatic genomic aberrations in host DNA.
- Recent advancements in human genomics have spurred research into genetic manipulation for cancer treatment.
Purpose of the Study:
- To explore the evolving landscape of gene therapy for cancer.
- To highlight advancements in vectors, immunomodulation, and tumor microenvironment manipulation.
- To discuss the future role of gene therapy in personalized cancer care.
Main Methods:
- Gene transfer via viral and non-viral vectors.
- Immunomodulation of tumor cells and the host immune system.
- Tumor microenvironment modification to enhance anti-tumor immunity.
Main Results:
- Newer gene therapy vectors show reduced risks of mutagenesis and immunogenicity compared to older methods.
- Modest clinical success has been achieved with manageable side effects.
- Several novel therapies like antibodies, engineered immune cells, and vaccines are in development.
Conclusions:
- Gene therapy is poised to become a crucial component of multimodality cancer treatment.
- Personalized gene therapy strategies will be tailored to individual genomic and tumor profiles.
- Future cancer care will likely integrate gene therapy with surgery, radiation, and chemotherapy.
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