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A canine conditionally replicating adenovirus for evaluating oncolytic virotherapy in a syngeneic animal model
Akseli Hemminki1, Anna Kanerva, Eric J Kremer
1Division of Human Gene Therapy, Department of Medicine, University of Alabama at Birmingham, Birmingham, AL 35294-2172, USA. Akseli.Hemminki@Helsinki.Fi
Abstract:
Oncolytic adenoviruses, which selectively replicate in and subsequently kill cancer cells, have emerged as a promising approach for treatment of tumors resistant to other modalities. Although preclinical results have been exciting, single-agent clinical efficacy has been less impressive heretofore. The immunogenicity of adenoviruses, and consequent premature abrogation of replication, may have been a partial reason. Improving the oncolytic potency of agents has been hampered by the inability to study host-vector interactions in immune-competent systems, since human serotype adenoviruses do not productively replicate in animal tissues. Therefore, approaches such as immunomodulation, which could result in sustained replication and subsequently increased oncolysis, have not been studied. Utilizing the osteocalcin promoter for restricting the replication of a canine adenovirus to dog osteosarcoma cells, we generated and tested the first nonhuman oncolytic adenovirus. This virus effectively killed canine osteosarcoma cells in vitro and yielded a therapeutic benefit in vivo. Canine osteosarcoma is the most frequent malignant disease in large dogs, with over 8000 cases in the United States annually, and there is no curative treatment. Therefore, immunomodulation for increased oncolytic potency could be studied with clinical trials in this population. This could eventually translate into human trials.
Insights
Researchers developed a novel canine adenovirus for treating osteosarcoma in dogs. This oncolytic virus selectively targets cancer cells, showing promise for a new cancer therapy applicable to both canine and human patients.
Area of Science:
- Oncolytic virotherapy
- Cancer research
- Veterinary oncology
Background:
- Oncolytic adenoviruses show promise for treating resistant tumors but have limited clinical efficacy.
- Adenovirus immunogenicity can lead to premature replication abrogation, hindering oncolysis.
- Studying host-vector interactions in immune-competent systems is challenging for human adenoviruses.
Purpose of the Study:
- To develop the first nonhuman oncolytic adenovirus for cancer therapy.
- To utilize the osteocalcin promoter for cancer-specific replication.
- To investigate potential for immunomodulation to enhance oncolytic potency.
Main Methods:
- Generated a canine adenovirus engineered with the osteocalcin promoter.
- Tested the virus's efficacy in canine osteosarcoma cells in vitro.
- Evaluated the therapeutic benefit of the oncolytic adenovirus in vivo.
Main Results:
- The engineered canine adenovirus selectively killed canine osteosarcoma cells in vitro.
- The oncolytic adenovirus demonstrated significant therapeutic benefit in vivo.
- This represents the first nonhuman oncolytic adenovirus tested.
Conclusions:
- Canine adenovirus engineered with the osteocalcin promoter is effective against canine osteosarcoma.
- This model allows for the study of immunomodulation to enhance oncolytic potency.
- Findings may translate to future human clinical trials for osteosarcoma treatment.