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Updated: Oct 19, 2025

Growth, Purification, and Titration of Oncolytic Herpes Simplex Virus
Published on: May 13, 2021
Potent anti-tumor effects of receptor-retargeted syncytial oncolytic herpes simplex virus
Takuma Suzuki1,2, Hiroaki Uchida1, Tomoko Shibata1
1Project Division of Cancer Biomolecular Therapy, The Institute of Medical Science, The University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.
Abstract:
Most oncolytic virotherapy has thus far employed viruses deficient in genes essential for replication in normal cells but not in cancer cells. Intra-tumoral injection of such viruses has resulted in clinically significant anti-tumor effects on the lesions in the vicinity of the injection sites but not on distant visceral metastases. To overcome this limitation, we have developed a receptor-retargeted oncolytic herpes simplex virus employing a single-chain antibody for targeting tumor-associated antigens (RR-oHSV) and its modified version with additional mutations conferring syncytium formation (RRsyn-oHSV). We previously showed that RRsyn-oHSV exhibits preserved antigen specificity and an ∼20-fold higher tumoricidal potency in vitro relative to RR-oHSV. Here, we investigated the in vivo anti-tumor effects of RRsyn-oHSV using human cancer xenografts in immunodeficient mice. With only a single intra-tumoral injection of RRsyn-oHSV at very low doses, all treated tumors regressed completely. Furthermore, intra-venous administration of RRsyn-oHSV resulted in robust anti-tumor effects even against large tumors. We found that these potent anti-tumor effects of RRsyn-oHSV may be associated with the formation of long-lasting tumor cell syncytia not containing non-cancerous cells that appear to trigger death of the syncytia. These results strongly suggest that cancer patients with distant metastases could be effectively treated with our RRsyn-oHSV.
Insights
A novel oncolytic herpes simplex virus (oHSV), RRsyn-oHSV, demonstrates potent anti-tumor activity against distant metastases. This engineered virus effectively eradicates tumors following a single injection, offering a promising new cancer therapy.
Area of Science:
- Oncolytic virotherapy
- Virology
- Cancer research
Background:
- Current oncolytic viruses show limited efficacy against distant metastases.
- Intra-tumoral injection of oncolytic viruses primarily affects local tumor sites.
Purpose of the Study:
- To evaluate the in vivo anti-tumor effects of a modified receptor-retargeted oncolytic herpes simplex virus (RRsyn-oHSV).
- To assess the efficacy of RRsyn-oHSV against human cancer xenografts in immunodeficient mice.
Main Methods:
- Development of a receptor-retargeted oncolytic herpes simplex virus (RRsyn-oHSV) with syncytium-forming mutations.
- Administration of RRsyn-oHSV via intra-tumoral and intra-venous routes in human cancer xenograft models.
- Assessment of tumor regression and syncytia formation in treated mice.
Main Results:
- A single intra-tumoral injection of RRsyn-oHSV at low doses led to complete regression of all treated tumors.
- Intra-venous administration of RRsyn-oHSV demonstrated significant anti-tumor effects, even against large tumors.
- Potent anti-tumor effects correlated with the formation of long-lasting tumor cell syncytia, triggering syncytia death.
Conclusions:
- RRsyn-oHSV exhibits potent in vivo anti-tumor activity against distant metastases.
- The engineered virus holds promise for treating cancer patients with disseminated disease.
- Targeted oncolytic virotherapy with RRsyn-oHSV represents a potential advancement in cancer treatment.
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