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A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
Gene therapy for cancer treatment: past, present and future
Deanna Cross1, James K Burmester
1Center for Human Genetics, Marshfield Clinic Research Foundation, 1000 North Oak Avenue, Marshfield, WI 54449, USA. cross.deanna@mcrf.mfldclin.edu
Abstract:
The broad field of gene therapy promises a number of innovative treatments that are likely to become important in preventing deaths from cancer. In this review, we discuss the history, highlights and future of three different gene therapy treatment approaches: immunotherapy, oncolytic virotherapy and gene transfer. Immunotherapy uses genetically modified cells and viral particles to stimulate the immune system to destroy cancer cells. Recent clinical trials of second and third generation vaccines have shown encouraging results with a wide range of cancers, including lung cancer, pancreatic cancer, prostate cancer and malignant melanoma. Oncolytic virotherapy, which uses viral particles that replicate within the cancer cell to cause cell death, is an emerging treatment modality that shows great promise, particularly with metastatic cancers. Initial phase I trials for several vectors have generated excitement over the potential power of this technique. Gene transfer is a new treatment modality that introduces new genes into a cancerous cell or the surrounding tissue to cause cell death or slow the growth of the cancer. This treatment technique is very flexible, and a wide range of genes and vectors are being used in clinical trials with successful outcomes. As these therapies mature, they may be used alone or in combination with current treatments to help make cancer a manageable disease.
Insights
Gene therapy offers innovative cancer treatments like immunotherapy, oncolytic virotherapy, and gene transfer. These approaches show promise in stimulating the immune system, directly killing cancer cells, and modifying tumor growth for better cancer management.
Area of Science:
- Oncology
- Genetics
- Immunology
Background:
- Gene therapy is emerging as a significant field for developing novel cancer treatments.
- This review focuses on three key gene therapy modalities: immunotherapy, oncolytic virotherapy, and gene transfer.
Observation:
- Immunotherapy utilizes modified cells and viral particles to activate the immune system against cancer.
- Oncolytic virotherapy employs viruses that selectively replicate in and destroy cancer cells.
- Gene transfer introduces therapeutic genes into cancer cells or surrounding tissues to inhibit tumor growth.
Findings:
- Clinical trials show encouraging results for immunotherapies and vaccines across various cancers, including lung, pancreatic, prostate, and melanoma.
- Oncolytic virotherapy demonstrates potential, especially for metastatic cancers, with early trials yielding exciting outcomes.
- Gene transfer techniques are proving flexible and successful in clinical trials for cancer treatment.
Implications:
- These gene therapy approaches may be used independently or combined with existing treatments.
- Advancements in gene therapy could lead to cancer becoming a more manageable disease.
- Further development of these modalities holds potential for improved patient outcomes and reduced cancer mortality.
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