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Published on: February 1, 2013
Does preventive vaccination with engineered tumor cells work in cancer-prone transgenic mice?
A Morel1, A de La Coste, N Fernandez
1U129 INSERM, Institut Cochin de Génétique Moléculaire, Paris, France.
Abstract:
The use of genetically modified tumor cells as vaccines has been successful in numerous animal models of grafted syngenic tumors and has provided the groundwork for many clinical trials of gene therapy in cancer patients. To investigate the real efficacy of ex vivo gene therapy-based vaccines, we used transgenic mice that express the SV40 large T and small t antigens under the control of hepatic antithrombin III (ASV-B)-regulatory sequences. These mice systematically develop hepatocarcinoma. Hepatoma cells, derived from ASV-B transgenic mice, were gene-transduced to express either interleukin-2, interleukin-4, the granulocyte-macrophage colony-stimulating factor, or the T-cell costimulatory molecule B7.1. First, we demonstrated the vaccine potential of engineered hepatoma cells by immunizing nontransgenic mice with these cells, which prevented the growth of subsequent grafted nontransduced hepatoma cells. However, vaccination of pretumoral transgenic animals with various combinations of engineered hepatoma cells failed to inhibit hepatoma onset and progression. Rather, tumor development in ASV-B mice appears to be dependent on the immune system, since neonatal induction of immunotolerance to tumor in ASV-B mice cells was associated with a moderate, but significant, acceleration of tumor development. These results seriously call into question the efficacy of this strategy of active vaccinotherapy against natural tumors.
Insights
Genetically modified tumor cells show promise as cancer vaccines in animal models. However, this study found that engineered hepatoma cells failed to prevent or treat tumors in genetically modified mice, questioning their efficacy for natural cancers.
Area of Science:
- Oncology
- Immunology
- Gene Therapy
Background:
- Genetically modified tumor cells are a promising strategy for cancer vaccines.
- Previous studies in animal models have shown success, leading to clinical trials.
Purpose of the Study:
- To investigate the efficacy of ex vivo gene therapy-based cancer vaccines.
- To evaluate the potential of engineered hepatoma cells as a therapeutic vaccine.
Main Methods:
- Used transgenic mice (ASV-B) that develop hepatocarcinoma.
- Engineered hepatoma cells to express immune-stimulating molecules (IL-2, IL-4, GM-CSF, B7.1).
- Vaccinated non-transgenic and pre-tumoral transgenic mice with engineered cells.
Main Results:
- Engineered cells prevented tumor growth in non-transgenic mice.
- Vaccination failed to inhibit hepatoma onset and progression in pre-tumoral ASV-B mice.
- Neonatal immunotolerance accelerated tumor development in ASV-B mice, suggesting immune dependence.
Conclusions:
- The efficacy of active vaccinotherapy using engineered tumor cells against natural tumors is questionable.
- Tumor development in ASV-B mice is influenced by the immune system.
- Further research is needed to understand the limitations of this cancer vaccine strategy.
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