Phase 1 clinical experience using intravenous administration of PV701, an oncolytic Newcastle disease virus

Robert M Lorence1, M Scot Roberts, James D O'Neil

  • 1Wellstat Biologics Corporation, Gaithersburg, MD 20878, USA. rlorence@wellstatbiologics.com

Insights

Newcastle disease virus (NDV) strain PV701 shows promise as an oncolytic virus therapy. Preclinical models predicted clinical toxicity management, leading to improved patient tolerability and tumor responses in Phase 1 trials.

Area of Science:

  • Oncolytic virotherapy
  • Immunology
  • Viral oncology

Background:

  • PV701 is a naturally-attenuated Newcastle disease virus (NDV) strain.
  • It selectively targets cancer cells by exploiting tumor-specific defects in interferon-mediated antiviral responses.
  • Preclinical studies demonstrated broad-spectrum antitumor activity and predicted key clinical parameters.

Purpose of the Study:

  • To evaluate the safety, tolerability, and preliminary efficacy of intravenous PV701 in cancer patients.
  • To determine optimal dosing, scheduling, and infusion strategies for PV701 administration.
  • To assess the impact of dose escalation and toxicity management strategies on clinical outcomes.

Main Methods:

  • Three Phase 1 clinical trials involving 114 patients were conducted.
  • Intravenous administration of PV701 was evaluated at various doses, schedules, and infusion rates.
  • Toxicity management strategies, including dose desensitization and slow infusion (Hamilton Regimen), were employed.

Main Results:

  • Common side effects included flu-like symptoms, tumor-site adverse events, and infusion reactions.
  • Initial PV701 dosing induced desensitization, allowing for higher subsequent doses and improved tolerability.
  • The Hamilton Regimen demonstrated improved patient tolerability and resulted in six responses (4 major, 2 minor) in 19 patients, with six patients surviving over 2 years.

Conclusions:

  • Intravenous PV701 is a potentially effective oncolytic virus therapy with manageable toxicity.
  • Dose desensitization and slow infusion strategies enhance patient tolerability and enable higher therapeutic doses.
  • Further Phase 2 studies are warranted to confirm the efficacy of PV701 in cancer treatment.