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Generation of a Novel Oncolytic Vaccinia Virus Using the IHD-W Strain
Jaeil Shin1, Soon-Oh Hong1, Minju Kim1
1Institute of BioInnovation Research, Kolon Life Science, Seoul, Republic of Korea.
Abstract:
Oncolytic viruses are promising cancer therapies due to their selective killing of tumor cells and ability to stimulate the host immune system. As an oncolytic virus platform, vaccinia virus has unique advantages, including rapid replication, a broad range of host targets, and a large capacity for transgene incorporation. In this study, we developed a novel oncolytic vaccinia virus with high potency and a favorable safety profile. We began with the International Health Department-White (IHD-W) strain, which had the strongest cytotoxicity against tumor cells among the four vaccinia virus strains tested. Next, several candidate viruses were constructed by deleting three viral genes (C11R, K3L, and J2R) in various combinations, and their efficacy and safety were compared. The virus ultimately selected, named KLS-3010, exhibited strong antitumor activity against broad targets in vitro and in vivo. Furthermore, KLS-3010 showed a favorable safety profile in mice, as determined by the biodistribution and body weight change. More promisingly, KLS-3010 was able to shift the tumor microenvironment to a proinflammatory state, as evidenced by an increase in activated lymphocytes after KLS-3010 administration, suggesting that this strain may elicit an oncolytic virus-mediated immune response. The KLS-3010 strain thus represents a promising platform for the further development of oncolytic virus-based cancer therapies.
Insights
Researchers developed a novel oncolytic vaccinia virus, KLS-3010, for cancer therapy. This potent virus shows strong antitumor activity and a favorable safety profile, potentially enhancing immune responses against tumors.
Area of Science:
- Virology
- Cancer Biology
- Immunotherapy
Background:
- Oncolytic viruses offer selective tumor cell killing and immune stimulation for cancer treatment.
- Vaccinia virus is a promising platform due to its replication speed, host range, and gene capacity.
Purpose of the Study:
- To develop a novel, potent, and safe oncolytic vaccinia virus for cancer therapy.
- To evaluate the antitumor efficacy and safety of engineered vaccinia virus strains.
Main Methods:
- Screened four vaccinia virus strains for tumor cell cytotoxicity, selecting the International Health Department-White (IHD-W) strain.
- Constructed candidate viruses by deleting genes C11R, K3L, and J2R in various combinations.
- Assessed in vitro and in vivo antitumor activity, safety (biodistribution, body weight), and tumor microenvironment changes.
Main Results:
- The selected virus, KLS-3010, demonstrated potent antitumor activity against broad targets in vitro and in vivo.
- KLS-3010 exhibited a favorable safety profile in mice.
- KLS-3010 promoted a proinflammatory tumor microenvironment, increasing activated lymphocytes.
Conclusions:
- KLS-3010 is a highly potent and safe oncolytic vaccinia virus with potential to elicit an immune response.
- This novel strain represents a promising platform for developing advanced oncolytic virus-based cancer therapies.

