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Published on: November 24, 2014
An oncolytic herpes simplex virus type 1 selectively destroys diffuse liver metastases from colon carcinoma
S S Yoon1, H Nakamura, N M Carroll
1Division of Surgical Oncology, Department of Surgery, and. Neurosurgery Service, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.
Abstract:
Viruses used for gene therapy are usually genetically modified to deliver therapeutic transgenes and prevent viral replication. In contrast, replication-competent viruses may be used for cancer therapy because replication of some viruses within cancer cells can result in their destruction (oncolysis). Viral ribonucleotide reductase expression is defective in the HSV1 mutant hrR3. Cellular ribonucleotide reductase, which is scarce in normal liver and abundant in liver metastases, can substitute for its viral counterpart to allow hrR3 replication in infected cells. Two or three log orders more of hrR3 virions are produced from infection of colon carcinoma cells than from infection of normal hepatocytes in viral replication assays. This viral replication is oncolytic. A single intravascular administration of hrR3 into immune-competent mice bearing diffuse liver metastases dramatically reduces tumor burden. hrR3-mediated tumor inhibition is equivalent in immune-competent and immune-incompetent mice, suggesting that viral oncolysis and not the host immune response is the primary mechanism of tumor destruction. HSV1-mediated oncolysis of diffuse liver metastases is effective in mice preimmunized against HSV1. These results indicate that replication-competent HSV1 mutants hold significant promise as cancer therapeutic agents. Yoon, S. S., Nakamura, H., Carroll, N. M., Bode, B. P., Chiocca, E. A., Tanabe, K. K. An oncolytic herpes simplex virus type 1 selectively destroys diffuse liver metastases from colon carcinoma.
Insights
Replication-competent herpes simplex virus type 1 (HSV1) mutants selectively destroy liver metastases. This oncolytic virus therapy shows promise for treating colon carcinoma liver metastases, independent of the host immune response.
Area of Science:
- Oncology
- Virology
- Gene Therapy
Background:
- Gene therapy typically uses modified viruses to deliver genes and prevent replication.
- Replication-competent viruses can be used for cancer therapy, causing cancer cell destruction through oncolysis.
Purpose of the Study:
- To investigate the potential of a replication-competent herpes simplex virus type 1 (HSV1) mutant, hrR3, as an oncolytic agent against colon carcinoma liver metastases.
Main Methods:
- Assessed viral replication of HSV1 mutant hrR3 in colon carcinoma cells versus normal hepatocytes.
- Administered hrR3 intravascularly to immune-competent mice with liver metastases.
- Evaluated tumor burden reduction and compared efficacy in immune-competent and immune-incompetent mice.
Main Results:
- HSV1 mutant hrR3 replicated significantly more (2-3 log orders) in colon carcinoma cells than in normal hepatocytes, demonstrating oncolysis.
- Single intravascular hrR3 administration dramatically reduced tumor burden in mice.
- Tumor inhibition was equivalent in immune-competent and immune-incompetent mice, indicating oncolysis as the primary mechanism.
Conclusions:
- Replication-competent HSV1 mutants, like hrR3, selectively destroy liver metastases through oncolysis.
- HSV1-mediated oncolysis is effective even in pre-immunized hosts, highlighting its therapeutic potential for cancer treatment.
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