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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Targeting gene-virotherapy of cancer and its prosperity
1Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Yue Yang Road, Shanghai 200031, China. xyliu@sibs.ac.cn
Abstract:
Gene and viral therapies for cancer have shown some therapeutic effects, but there has been a lack of real breakthrough. To achieve the goal of complete elimination of tumor xenograft in animal models, we have developed a new strategy called Targeting Gene-Virotherapy of Cancer, which aims to combine the advantages of both gene therapy and virotherapy. This new strategy has produced stronger anti-tumor effects than either gene or viral therapy alone. A tumor-specific replicative adenovirus vector, designated as ZD55, was constructed by deletion of the 55kDa E1B region of adenovirus. The resulting viral construct not only retains a similar function to ONYX-015 by specifically targeting p53 negative tumors, but also allows for the insertion of various therapeutic genes to form appropriate ZD55 derivatives due to the newly introduced cloning site, a task not feasible with the original ONYX-015 virus. We showed that the anti-tumor effect of one such derivative, ZD55-IL-24, is at least 100 times more potent than that of either ZD55 virotherapy or Ad-IL-24 gene therapy. Nevertheless, complete elimination of tumor mass by the use of ZD55-IL-24 was only observed in some but not all mice, indicating that one therapeutic gene was not sufficient to "cure" these mice. When genes with complementary or synergetic effects were separately cloned into the ZD55 vector and used in combination (designated as the Dual Gene Therapy strategy), much better results were obtained; and it was possible to achieve complete elimination of all the xenograft tumor masses in all mice if two suitable genes were chosen. More comprehensive studies based on this new strategy will likely lead to a protocol for clinical trial. Finally, the concept of Double Controlled Targeting Virus-Dual Gene Therapy for cancer treatment, and the implication of the recent progress in cancer stem cells are also discussed.
Insights
Researchers developed a novel Targeting Gene-Virotherapy of Cancer strategy, combining gene and viral therapies. This approach, using a modified adenovirus vector (ZD55), achieved complete tumor elimination in animal models when dual therapeutic genes were employed.
Area of Science:
- Oncology
- Gene Therapy
- Virotherapy
Background:
- Cancer gene and viral therapies show promise but lack significant breakthroughs.
- Existing therapies often target specific tumor characteristics, limiting broad efficacy.
Purpose of the Study:
- To develop a novel strategy combining gene and virotherapy for enhanced anti-tumor effects.
- To create a versatile viral vector for delivering multiple therapeutic genes.
- To achieve complete elimination of tumor xenografts in animal models.
Main Methods:
- Constructed a tumor-specific replicative adenovirus vector (ZD55) by deleting the 55kDa E1B region.
- Developed ZD55-IL-24 derivative for enhanced anti-tumor activity.
- Employed a Dual Gene Therapy strategy by combining ZD55 vectors carrying synergistic therapeutic genes.
Main Results:
- ZD55-IL-24 demonstrated over 100-fold greater potency than individual therapies.
- Single gene therapy with ZD55-IL-24 did not achieve complete tumor elimination in all cases.
- Dual Gene Therapy using ZD55 vectors with complementary genes resulted in complete xenograft tumor eradication in all treated mice.
Conclusions:
- Targeting Gene-Virotherapy of Cancer, particularly with dual gene combinations, offers a potent strategy for complete tumor elimination.
- The ZD55 vector platform facilitates the development of advanced cancer therapies.
- Further research may lead to clinical trials for this novel double-controlled targeting virus-dual gene therapy approach.
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