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Advances in the biological therapy and gene therapy of malignant disease
1Arizona Cancer Center, Department of Hematology/Oncology, Tucson, Arizona 85724, USA.
Abstract:
Biological and gene therapy of cancer have become important components of clinical cancer research. Advances in this area are based on evidence for the presence of tumor antigens, antitumor immune responses, evasion of host control by tumors, and the recognition of host defense failure in cancer patients. These mechanisms are being corrected or exploited in the development of biological and gene therapy. Over the last decade, 9 biological therapies have received Food and Drug Administration approval, and another 12 appear promising and will likely be approved in the next few years. Our approach to gene therapy has been to allogenize tumors by the direct intratumoral injection of HLA-B7/beta2-microglobulin genes as plasmid DNA in a cationic lipid into patients with malignant melanoma. In four Phase I studies, we found a 36% response by the local injected tumor and a 19% systemic antitumor response. In other cancers, gene transfer, expression, and an intratumoral T-cell response were seen, but no clinical response was seen. A variety of follow-up studies with HLA-B7 and other genes are planned. Evasion of host control is now a major target of gene therapy. Strategies to overcome this include up-regulation of MHC and introduction of cell adhesion molecules into tumor cells, suppression of transforming growth factor and interleukin 10 production by tumor cells, and blockade of the fas ligand-fas interaction between tumor cells and attacking lymphocytes. With these approaches, it seems likely that gene therapy may become the fifth major modality of cancer treatment in the next decade.
Insights
Biological and gene therapies are advancing cancer treatment by targeting tumor antigens and immune responses. Early studies show promise for gene therapy in malignant melanoma, with ongoing research to overcome tumor evasion strategies.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Biological and gene therapies are crucial in cancer research.
- Advances stem from understanding tumor antigens, immune responses, and tumor evasion mechanisms.
- Several biological therapies are FDA-approved, with more anticipated.
Purpose of the Study:
- To investigate the efficacy of gene therapy in cancer treatment.
- To explore strategies for overcoming tumor immune evasion.
- To assess the potential of gene therapy as a major cancer treatment modality.
Main Methods:
- Intratumoral injection of HLA-B7/beta2-microglobulin genes in plasmid DNA for malignant melanoma.
- Phase I clinical studies to evaluate local and systemic antitumor responses.
- Development of strategies to overcome tumor immune evasion, including MHC up-regulation and cytokine suppression.
Main Results:
- A 36% local and 19% systemic antitumor response observed in malignant melanoma patients.
- Gene transfer and T-cell responses noted in other cancers, but without clinical response.
- Ongoing development of novel gene therapy strategies targeting tumor evasion.
Conclusions:
- Gene therapy shows potential for treating malignant melanoma.
- Overcoming tumor immune evasion is a key focus for future gene therapy development.
- Gene therapy may emerge as a fifth major cancer treatment modality within the next decade.