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Automated Cell Enrichment of Cytomegalovirus-specific T cells for Clinical Applications using the Cytokine-capture System
Published on: October 5, 2015
Cytokine immunogene therapy
R P Glick1, T Lichtor, E P Cohen
1Departments of Neurosurgery, Anatomy and Cell Biology, Rush Medical College, Cook County Hospital, 1835 West Harrison, Chicago, Illinois 60612, USA.
Abstract:
The prognosis for patients with either a primary or metastatic brain tumor is poor. Clearly new forms of therapy to improve the long-term survival of patients with malignant brain tumors are urgently needed. The authors are in the process of developing a new and novel form of treatment for primary and metastatic brain tumors in which they use genes involved in growth repression. In particular most tumors fail to induce an antitumor immune response strong enough to kill the tumor. Under appropriate circumstances, however, immunity can be produced in unique structures on the tumor cells known as antigens. To prepare the vaccine, genes are transferred into a fibroblast cell line that causes the cell to produce cytokines, the potent proteins known to stimulate the immune system. These cells are subsequently injected into the tumor bed, resulting in the development of an antitumor immune response. In experiments described in this manuscript, the authors have investigated a number of ways of augmenting the immune response by administering this type of cellular vaccine. They found that mice with a primary intracerebral glioma, melanoma, or breast cancer treated with this allogeneic cytokine-secreting vaccine survived significantly longer than untreated mice. Additionally the vaccine was found to stimulate a systemic antitumor immune response, as shown by immunocytotoxic studies, histopathological examination, and delayed immune memory responses. In summary, these results indicate that immunogene therapy is a promising new targeted therapy for the treatment of intracerebral malignant tumors.
Insights
New immunogene therapy using cytokine-secreting cells shows promise for treating brain tumors. This novel approach stimulates an antitumor immune response, significantly improving survival in preclinical models of malignant brain tumors.
Area of Science:
- Oncology
- Immunotherapy
- Gene Therapy
Background:
- Malignant brain tumors, both primary and metastatic, have a poor prognosis.
- Current therapies for brain tumors are insufficient, necessitating novel treatment strategies.
- Tumors often evade the host's immune system, preventing effective tumor elimination.
Purpose of the Study:
- To develop and evaluate a novel immunogene therapy for primary and metastatic brain tumors.
- To investigate the potential of cytokine-secreting cellular vaccines to elicit an antitumor immune response.
- To assess the efficacy of this therapy in improving survival rates for malignant brain tumors.
Main Methods:
- Genes encoding cytokines were transferred into a fibroblast cell line to create a cellular vaccine.
- The cellular vaccine was administered intratumorally in preclinical models of intracerebral tumors.
- Immune response augmentation strategies were explored in conjunction with the vaccine.
Main Results:
- Treatment with the allogeneic cytokine-secreting vaccine significantly increased survival in mice with intracerebral glioma, melanoma, and breast cancer.
- The vaccine successfully stimulated a systemic antitumor immune response.
- Evidence of immune stimulation included immunocytotoxicity, histopathological changes, and delayed immune memory.
Conclusions:
- Immunogene therapy represents a promising, targeted treatment approach for intracerebral malignant tumors.
- The developed cellular vaccine effectively harnesses the immune system to combat brain tumors.
- Further research into immunogene therapy could lead to improved long-term survival for brain tumor patients.
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