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Generation of a Novel Dendritic-cell Vaccine Using Melanoma and Squamous Cancer Stem Cells
Published on: January 6, 2014
Combinational adenovirus-mediated gene therapy and dendritic cell vaccine in combating well-established tumors
Dajing Xia1, Terence Moyana, Jim Xiang
1Research Unit, Health Research Division, Saskatchewan Cancer Agency, Department of Oncology, University of Saskatchewan, 20 Campus Drive, Saskatoon, Saskatchewan S7N 4H4, Canada.
Abstract:
Recent developments in tumor immunology and biotechnology have made cancer gene therapy and immunotherapy feasible. The current efforts for cancer gene therapy mainly focus on using immunogenes, chemogenes and tumor suppressor genes. Central to all these therapies is the development of efficient vectors for gene therapy. By far, adenovirus (AdV)-mediated gene therapy is one of the most promising approaches, as has confirmed by studies relating to animal tumor models and clinical trials. Dendritic cells (DCs) are highly efficient, specialized antigen-presenting cells, and DC-based tumor vaccines are regarded as having much potential in cancer immunotherapy. Vaccination with DCs pulsed with tumor peptides, lysates, or RNA, or loaded with apoptotic/necrotic tumor cells, or engineered to express certain cytokines or chemokines could induce significant antitumor cytotoxic T lymphocyte (CTL) responses and antitumor immunity. Although both AdV-mediated gene therapy and DC vaccine can both stimulate antitumor immune responses, their therapeutic efficiency has been limited to generation of prophylactic antitumor immunity against re-challenge with the parental tumor cells or to growth inhibition of small tumors. However, this approach has been unsuccessful in combating well-established tumors in animal models. Therefore, a major strategic goal of current cancer immunotherapy has become the development of novel therapeutic strategies that can combat well-established tumors, thus resembling real clinical practice since a good proportion of cancer patients generally present with significant disease. In this paper, we review the recent progress in AdV-mediated cancer gene therapy and DC-based cancer vaccines, and discuss combined immunotherapy including gene therapy and DC vaccines. We underscore the fact that combined therapy may have some advantages in combating well-established tumors vis-a-vis either modality administered as a monotherapy.
Insights
Adenovirus (AdV)-mediated gene therapy and dendritic cell (DC) vaccines show promise for cancer immunotherapy. Combining these approaches may offer enhanced efficacy against established tumors, addressing limitations of monotherapies.
Area of Science:
- Oncology
- Immunology
- Biotechnology
- Gene Therapy
Background:
- Recent advancements in tumor immunology and biotechnology enable cancer gene therapy and immunotherapy.
- Adenovirus (AdV)-mediated gene therapy and dendritic cell (DC) vaccines are promising immunotherapeutic strategies.
- Current limitations include efficacy against established tumors and the need for effective gene delivery vectors.
Purpose of the Study:
- To review progress in AdV-mediated cancer gene therapy and DC-based cancer vaccines.
- To discuss the potential of combined immunotherapy strategies.
- To highlight the advantages of combination therapy for combating established tumors.
Main Methods:
- Review of recent scientific literature on AdV-mediated gene therapy and DC vaccines.
- Analysis of studies involving animal tumor models and clinical trials.
- Discussion of combined immunotherapy approaches integrating gene therapy and DC vaccines.
Main Results:
- AdV-mediated gene therapy and DC vaccines can stimulate antitumor immune responses.
- Monotherapies show limited efficacy against established tumors, primarily inducing prophylactic immunity or inhibiting small tumor growth.
- Combined AdV-gene therapy and DC vaccines demonstrate potential advantages over monotherapy for established tumors.
Conclusions:
- Combined cancer immunotherapy using AdV-mediated gene therapy and DC vaccines offers a promising strategy.
- This combined approach may overcome the limitations of monotherapies in combating established tumors.
- Further research into combined immunotherapies is crucial for clinical application against advanced cancers.
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