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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Gene-based cancer immunotherapy and vaccines
Bruce Acres1, Patrick Squiban, Margaret Liu
1Transgene SA, 67082 Strasbourg, France.
Abstract:
Extract: Cancer cells are able to escape immune detection and/or rejection by a variety of measures. Cell surface molecules, which are required for the effective policing of tissues by the immune system, are often modified, reduced or eliminated. In addition cancer cells secrete soluble molecules that inhibit the patients' ability to develop an immune response. The ability of the immune system to recognize and reject cancerous growths has been demonstrated in a series of experimental model systems. Efforts are now being made to use this knowledge for the treatment of cancer. Described below are two different gene-based approaches to stimulate the rejection of an established cancer in patients. The first involves procedures which modify the tumor itself, render it a more attractive target to the immune system, and allow immune cells to penetrate the tumor and kill the cancerous cells. The second approach requires a very powerful vaccine to stimulate a strong immune response against the tumor associated antigens in patients with an established cancer. Early efforts to harness the power of the immune system to eliminate cancer were made by Dr. William Coley very early in the 20th century. Dr. Coley injected cancerous tissue, usually sarcomas (tumors of the supportive tissues such as bone, cartilage fat or muscle), with a mix of bacteria and/or their toxins. This would result in an inflammatory response in the tumor and the influx of many immune cells.
Insights
Cancer evades immune detection through various mechanisms. Novel gene-based therapies aim to enhance anti-cancer immune responses, stimulating tumor rejection.
Area of Science:
- Immunology
- Oncology
- Genetics
Background:
- Cancer cells evade immune surveillance by altering cell surface molecules and secreting immunosuppressive factors.
- The immune system's capacity to recognize and reject tumors is established in experimental models.
- Historical attempts, like Coley's toxins, demonstrated immune system's potential against cancer.
Purpose of the Study:
- To explore gene-based strategies for stimulating immune rejection of established cancers.
- To present two distinct approaches for enhancing anti-tumor immunity.
Main Methods:
- Modifying tumors to increase their visibility and susceptibility to immune cell infiltration.
- Developing potent vaccines to elicit strong immune responses against tumor-associated antigens.
Main Results:
- The study outlines two gene-based therapeutic avenues.
- These methods aim to overcome immune evasion and promote tumor cell killing.
- Early research by William Coley utilized bacterial toxins to induce anti-tumor inflammation.
Conclusions:
- Gene-based therapies offer promising avenues for cancer treatment by leveraging the immune system.
- Modifying tumors or using powerful vaccines can stimulate immune-mediated cancer rejection.
- Harnessing immunological principles is key to developing effective cancer immunotherapies.
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