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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Myxoma virus is a novel oncolytic virus with significant antitumor activity against experimental human gliomas
Xueqing Lun1,2, Wenqing Yang1, Tommy Alain1,2
1Departments of Oncology, Clinical Neurosciences, and Biochemistry and Molecular Biology, University of Calgary, and Tom Baker Cancer Centre, Calgary, Alberta, Canada.
Abstract:
Myxoma virus, a poxvirus previously considered rabbit specific, can replicate productively in a variety of human tumor cells in culture. The purpose of this study was to determine if there was efficacy or toxicities of this oncolytic virus against experimental models of human malignant gliomas in vitro, in vivo, and ex vivo in malignant glioma specimens. In vitro, the majority of glioma cell lines tested (7 of 8, 87.5%) were fully permissive for myxoma virus replication and killed by infection. In vivo, intracerebral (i.c.) myxoma virus inoculation was well tolerated and produced only minimal focal inflammatory changes at the site of viral inoculation. U87 and U251 orthotopic xenograft models were used to assess myxoma virus efficacy in vivo. A single intratumoral injection of myxoma virus dramatically prolonged median survival compared with treatment with UV-inactivated myxoma virus. Median survival was not reached in myxoma virus-treated groups versus 47.3 days (U87; P = 0.0002) and 50.7 days (U251; P = 0.0027) in UV-inactivated myxoma virus-treated groups. Most myxoma virus-treated animals (12 of 13, 92%) were alive and apparently "cured" when the experiment was finished (>130 days). Interestingly, we found a selective and long-lived myxoma virus infection in gliomas in vivo. This is the first demonstration of the oncolytic activity of myxoma virus in vivo. The nonpathogenic nature of myxoma virus outside of the rabbit host, its capacity to be genetically modified, its ability to produce a long-lived infection in human tumor cells, and the lack of preexisting antibodies in the human population suggest that myxoma virus may be an attractive oncolytic agent against human malignant glioma.
Insights
Myxoma virus effectively replicates in and kills human glioma cells. This oncolytic virus shows significant efficacy in preclinical models, offering a promising new treatment for malignant gliomas.
Area of Science:
- Virology
- Oncology
- Gene Therapy
Background:
- Myxoma virus, typically rabbit-specific, demonstrates productive replication in various human tumor cells.
- Oncolytic viruses are being explored as a novel therapeutic strategy for cancer treatment.
Purpose of the Study:
- To evaluate the efficacy and toxicity of myxoma virus against experimental models of human malignant gliomas.
- To assess the oncolytic potential of myxoma virus in vitro, in vivo, and ex vivo.
Main Methods:
- In vitro studies using human glioma cell lines to assess viral replication and cytotoxicity.
- In vivo studies utilizing orthotopic xenograft models (U87, U251) in mice.
- Intracerebral inoculation of myxoma virus and comparison with UV-inactivated virus treatment.
Main Results:
- 87.5% of tested glioma cell lines were permissive to myxoma virus replication and killed upon infection.
- Intracerebral myxoma virus inoculation was well-tolerated with minimal inflammation.
- A single intratumoral injection significantly prolonged median survival in xenograft models, with 92% of treated animals surviving long-term.
Conclusions:
- Myxoma virus exhibits significant oncolytic activity against human malignant gliomas in vivo.
- The virus demonstrated selective and long-lived infection within gliomas.
- Myxoma virus's nonpathogenic nature in humans, genetic modifiability, and lack of pre-existing antibodies suggest its potential as an oncolytic agent for malignant glioma.
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