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Updated: Jun 12, 2026

Growth, Purification, and Titration of Oncolytic Herpes Simplex Virus
Published on: May 13, 2021
Development of a regulatable oncolytic herpes simplex virus type 1 recombinant virus for tumor therapy
Feng Yao1, Nao Murakami, Oliver Bleiziffer
1Department of Surgery, BRI Cancer Center, Brigham and Women's Hospital, and Harvard Medical School, Boston, Massachusetts 02115, USA. fyao@rics.bwh.harvard.edu
Abstract:
Oncolytic viruses are genetically modified viruses that preferentially replicate in host cancer cells, leading to the production of new viruses and, ultimately, cell death. Currently, no oncolytic viruses that are able to kill only tumor cells while leaving normal cells intact are available. Using T-REx (Invitrogen, Carlsbad, CA) gene switch technology and a self-cleaving ribozyme, we have constructed a novel oncolytic HSV-1 recombinant, KTR27, whose replication can be tightly controlled and regulated by tetracycline in a dose-dependent manner. Infection of normal replicating cells as well as multiple human cancer cell types with KTR27 in the presence of tetracycline led to 1,000- to 250,000-fold-higher progeny virus production than in the absence of tetracycline, while little viral replication and virus-associated cytotoxicity was observed in infected growth-arrested normal human cells. We show that intratumoral inoculation with KTR27 markedly inhibits tumor growth in a xenograft model of human non-small-cell lung cancer in nude mice. It is shown further that replication of KTR27 in the inoculated tumors can be efficiently controlled by local codelivery of tetracycline to the target tumors at the time of KTR27 inoculation. Collectively, KTR27 possesses a unique pharmacological feature that can limit its replication to the targeted tumor microenvironment with localized tetracycline delivery, thus minimizing unwanted viral replication in distant tissues following local virotherapy. This regulatory mechanism would also allow the replication of the virus to be quickly shut down should adverse effects be detected.
Insights
A novel oncolytic herpes simplex virus 1 (HSV-1) recombinant, KTR27, demonstrates tetracycline-controlled replication, selectively targeting cancer cells. This engineered virus inhibits tumor growth while minimizing replication in normal tissues, offering a safer oncolytic virotherapy approach.
Area of Science:
- Oncolytic virotherapy
- Molecular virology
- Cancer research
Background:
- Oncolytic viruses selectively infect and kill cancer cells.
- Current oncolytic viruses lack precise control over replication, posing risks to normal tissues.
- Herpes simplex virus 1 (HSV-1) is a potential platform for oncolytic agents.
Purpose of the Study:
- To develop a novel oncolytic HSV-1 recombinant (KTR27) with tightly regulated replication.
- To demonstrate tetracycline-inducible control over KTR27 replication.
- To evaluate the efficacy and safety of KTR27 in preclinical cancer models.
Main Methods:
- Construction of KTR27 using T-REx gene switch technology and a self-cleaving ribozyme.
- In vitro assessment of KTR27 replication in normal and cancer cells with and without tetracycline.
- In vivo evaluation of KTR27 efficacy in a human non-small-cell lung cancer xenograft mouse model.
- Assessment of KTR27 replication control via local tetracycline delivery.
Main Results:
- KTR27 replication was significantly enhanced (1,000- to 250,000-fold) in the presence of tetracycline.
- Minimal KTR27 replication and cytotoxicity were observed in growth-arrested normal human cells.
- Intratumoral inoculation of KTR27 markedly inhibited tumor growth in a xenograft model.
- Local co-delivery of tetracycline efficiently controlled KTR27 replication within tumors.
Conclusions:
- KTR27 exhibits tightly regulated, dose-dependent replication controlled by tetracycline.
- Localized tetracycline delivery restricts KTR27 replication to the tumor microenvironment, enhancing safety.
- KTR27 represents a promising oncolytic virus with a controllable safety mechanism for cancer therapy.
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