Attacking Postoperative Metastases using Perioperative Oncolytic Viruses and Viral Vaccines
1Centre for Innovative Cancer Research, Ottawa Hospital Research Institute , Ottawa, ON , Canada.
Abstract:
Surgical resection of solid primary malignancies is a mainstay of therapy for cancer patients. Despite being the most effective treatment for these tumors, cancer surgery has been associated with impaired metastatic clearance due to immunosuppression. In preclinical surgery models and human cancer patients, we and others have demonstrated a profound suppression of both natural killer (NK) and T cell function in the postoperative period and this plays a major role in the enhanced development of metastases following surgery. Oncolytic viruses (OV) were originally designed to selectively infect and replicate in tumors, with the primary objective of directly lysing cancer cells. It is becoming increasingly clear, however, that OV infection results in a profound inflammatory reaction within the tumor, initiating innate and adaptive immune responses against it that is critical for its therapeutic benefit. This anti-tumor immunity appears to be mediated predominantly by NK and cytotoxic T cells. In preclinical models, we found that preoperative OV prevents postoperative NK cell dysfunction and attenuates tumor dissemination. Due to theoretical safety concerns of administering live virus prior to surgery in cancer patients, we characterized safe, attenuated versions of OV, and viral vaccines that could stimulate NK cells and reduce metastases when administered in the perioperative period. In cancer patients, we observed that in vivo infusion with oncolytic vaccinia virus and ex vivo stimulation with viral vaccines promote NK cell activation. These preclinical studies provide a novel and clinically relevant setting for OV therapy. Our challenge is to identify safe and promising OV therapies that will activate NK and T cells in the perioperative period preventing the establishment of micrometastatic disease in cancer patients.
Insights
Preoperative oncolytic viruses (OV) prevent postsurgical immune suppression and reduce cancer metastasis. Safe OV and viral vaccines can activate natural killer (NK) and T cells during the perioperative period to prevent micrometastatic disease.
Area of Science:
- Immunology
- Virology
- Surgical Oncology
Background:
- Cancer surgery, while effective, can impair immune function, leading to increased metastasis.
- Postoperative immunosuppression significantly reduces natural killer (NK) and T cell activity, promoting tumor spread.
- Oncolytic viruses (OV) can induce an inflammatory response, stimulating anti-tumor immunity mediated by NK and T cells.
Purpose of the Study:
- To investigate the potential of oncolytic viruses (OV) and viral vaccines in preventing postoperative immunosuppression and reducing cancer metastasis.
- To evaluate safe, attenuated OV and viral vaccines for perioperative administration to stimulate NK and T cells.
- To explore the clinical relevance of OV therapy in activating immune cells and preventing micrometastatic disease.
Main Methods:
- Preclinical models of surgery and cancer were used to assess the impact of OV on NK cell function and metastasis.
- Development and characterization of safe, attenuated OV and viral vaccines for perioperative use.
- In vivo and ex vivo studies in cancer patients to evaluate NK cell activation by oncolytic vaccinia virus and viral vaccines.
Main Results:
- Preoperative OV administration in preclinical models prevented NK cell dysfunction and reduced tumor dissemination after surgery.
- Attenuated OV and viral vaccines were developed for safe perioperative administration.
- In cancer patients, oncolytic vaccinia virus and viral vaccines promoted NK cell activation.
Conclusions:
- Perioperative oncolytic virus (OV) therapy holds promise for preventing postoperative immunosuppression and reducing cancer metastasis.
- Safe OV and viral vaccines can activate NK and T cells in the perioperative period.
- This approach offers a novel strategy to prevent micrometastatic disease in cancer patients.
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