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Oncolytic herpes simplex virus vectors and chemotherapy: are combinatorial strategies more effective for cancer?
Ryuichi Kanai1, Hiroaki Wakimoto, Tooba Cheema
1Brain Tumor Research Center, Department of Neurosurgery, Massachusetts General Hospital, & Harvard Medical School, Boston, MA, USA.
Abstract:
Despite aggressive treatments, including chemotherapy and radiotherapy, cancers often recur owing to resistance to conventional therapies. Oncolytic viruses such as oncolytic herpes simplex virus (oHSV) represent an exciting biological approach to cancer therapy. A range of viral mutations has been engineered into HSV to engender oncolytic activity. While oHSV as a single agent has been tested in a number of cancer clinical trials, preclinical studies have demonstrated enhanced efficacy when it is combined with cytotoxic anticancer drugs. Among the strategies that will be discussed in this article are combinations with standard-of-care chemotherapeutics, expression of prodrug-activating enzymes to enhance chemotherapy and small-molecule inhibitors. The combination of oHSV and chemotherapy can achieve much more efficient cancer cell killing than either single agent alone, often through synergistic interactions. This can be clinically important not just for improving efficacy but also for permitting lower and less toxic chemotherapeutic doses. The viral mutations in an oHSV vector often determine the favorability of its interactions with chemotherapy, just as different cancer cells, due to genetic alterations, vary in their response to chemotherapy. As chemotherapeutics are often the standard of care, combining them with an investigational new drug, such as oHSV, is clinically easier than combining multiple novel agents. As has become clear for most cancer therapies, multimodal treatments are usually more effective. In this article, we will discuss the recent progress of these combinatorial strategies between virotherapy and chemotherapy and future directions.
Insights
Oncolytic herpes simplex virus (oHSV) combined with chemotherapy offers a powerful strategy to overcome cancer treatment resistance. This combination enhances cancer cell killing and may allow for reduced chemotherapy doses.
Area of Science:
- Oncology
- Virology
- Biotechnology
Background:
- Cancer recurrence is common due to resistance to conventional treatments like chemotherapy and radiotherapy.
- Oncolytic viruses, specifically oncolytic herpes simplex virus (oHSV), present a promising biological therapy approach.
- Engineered viral mutations in oHSV enhance its oncolytic activity.
Purpose of the Study:
- To review recent advancements in combining oncolytic virotherapy with chemotherapy.
- To explore strategies for synergistic cancer treatment using oHSV and chemotherapeutics.
- To discuss future directions for multimodal cancer therapy.
Main Methods:
- Preclinical studies investigating the combination of oHSV with cytotoxic anticancer drugs.
- Analysis of strategies including standard-of-care chemotherapeutics, prodrug-activating enzymes, and small-molecule inhibitors.
- Review of viral mutations influencing oHSV-chemotherapy interactions and cancer cell responses.
Main Results:
- Combining oHSV with chemotherapy demonstrates significantly enhanced cancer cell killing compared to single agents.
- Synergistic interactions between oHSV and chemotherapy lead to improved efficacy.
- Potential for reduced and less toxic chemotherapeutic doses in combination therapy.
Conclusions:
- Multimodal cancer treatments, particularly combining oHSV with chemotherapy, are highly effective.
- The combination strategy is clinically feasible, leveraging existing chemotherapeutic standards of care.
- Further research into combinatorial virotherapy and chemotherapy holds promise for improved cancer treatment outcomes.
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