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Growth, Purification, and Titration of Oncolytic Herpes Simplex Virus
Published on: May 13, 2021
Oncolytic herpes viruses, chemotherapeutics, and other cancer drugs
Lynne Braidwood1, Sheila V Graham2, Alex Graham1
1Virttu Biologics Ltd, Department of Neurology, Southern General Hospital, Glasgow, UK.
Abstract:
Oncolytic viruses are emerging as a potential new way of treating cancers. They are selectively replication-competent viruses that propagate only in actively dividing tumor cells but not in normal cells and, as a result, destroy the tumor cells by consequence of lytic infection. At least six different oncolytic herpes simplex viruses (oHSVs) have undergone clinical trials worldwide to date, and they have demonstrated an excellent safety profile and intimations of efficacy. The first pivotal Phase III trial with an oHSV, talimogene laherparepvec (T-Vec [OncoVex(GM-CSF)]), is almost complete, with extremely positive early results reported. Intuitively, therapeutically beneficial interactions between oHSV and chemotherapeutic and targeted therapeutic drugs would be limited as the virus requires actively dividing cells for maximum replication efficiency and most anticancer agents are cytotoxic or cytostatic. However, combinations of such agents display a range of responses, with antagonistic, additive, or, perhaps most surprisingly, synergistic enhancement of antitumor activity. When synergistic interactions in cancer cell killing are observed, chemotherapy dose reductions that achieve the same overall efficacy may be possible, resulting in a valuable reduction of adverse side effects. Therefore, the combination of an oHSV with "standard-of-care" drugs makes a logical and reasonable approach to improved therapy, and the addition of a targeted oncolytic therapy with "standard-of-care" drugs merits further investigation, both preclinically and in the clinic. Numerous publications report such studies of oncolytic HSV in combination with other drugs, and we review their findings here. Viral interactions with cellular hosts are complex and frequently involve intracellular signaling networks, thus creating diverse opportunities for synergistic or additive combinations with many anticancer drugs. We discuss potential mechanisms that may lead to synergistic interactions.
Insights
Oncolytic herpes simplex viruses (oHSVs) show promise in cancer treatment. Combining oHSVs with other cancer drugs may enhance tumor destruction and reduce side effects.
Area of Science:
- Oncology
- Virology
- Pharmacology
Background:
- Oncolytic viruses, specifically oncolytic herpes simplex viruses (oHSVs), are a novel cancer treatment strategy.
- oHSVs selectively replicate in and destroy tumor cells while sparing normal cells.
- Clinical trials with oHSVs, including talimogene laherparepvec (T-Vec), have shown a good safety profile and efficacy.
Purpose of the Study:
- To review existing literature on the combination of oHSVs with chemotherapeutic and targeted drugs.
- To explore the potential for synergistic interactions between oHSVs and other anticancer agents.
- To investigate the feasibility of reducing chemotherapy doses when used in combination with oHSVs.
Main Methods:
- Literature review of studies investigating oHSV combinations with anticancer drugs.
- Analysis of reported outcomes, including synergistic, additive, or antagonistic effects.
- Discussion of potential mechanisms underlying these interactions.
Main Results:
- Combinations of oHSVs with anticancer drugs can result in synergistic enhancement of antitumor activity.
- Synergistic interactions may allow for reduced chemotherapy doses, potentially lowering adverse effects.
- Viral-host interactions and intracellular signaling networks contribute to diverse combination outcomes.
Conclusions:
- Combining oHSVs with standard-of-care drugs is a logical approach for improved cancer therapy.
- Targeted oncolytic therapy in combination with standard treatments warrants further preclinical and clinical investigation.
- Understanding viral-host interactions is key to optimizing combination therapies for enhanced efficacy and reduced toxicity.
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