Systemic armed oncolytic and immunologic therapy for cancer with JX-594, a targeted poxvirus expressing GM-CSF

J H Kim1, J Y Oh, B H Park

  • 1Department of Pharmacology and MRCCMT, Dong-A University Medical College, Busan 604-714, South Korea.

Insights

A novel oncolytic virus therapy, JX-594, effectively targets liver tumors and prevents metastasis after intravenous delivery. This cancer treatment shows promise in immunocompetent preclinical models for future clinical applications.

Area of Science:

  • Oncolytic virotherapy
  • Cancer immunotherapy
  • Gene therapy

Background:

  • Targeted oncolytic viruses and immunostimulatory therapeutics are emerging cancer treatments.
  • Combining these approaches involves expressing cytokines from viruses like adenoviruses and herpesviruses.
  • Intratumoral injection shows tumor inhibition but not metastasis eradication, limited by inefficient delivery and lack of predictive models.

Purpose of the Study:

  • To develop a novel oncolytic virus for intravenous delivery to overcome limitations of current approaches.
  • To evaluate the efficacy of JX-594, a targeted vaccinia virus expressing human GM-CSF, in immunocompetent preclinical cancer models.

Main Methods:

  • Developed JX-594, a thymidine kinase-negative vaccinia virus engineered to express human granulocyte-macrophage colony-stimulating factor (hGM-CSF).
  • Administered JX-594 intravenously (i.v.) in two immunocompetent liver tumor models: a rabbit model with lung metastases and a rat liver cancer model.
  • Assessed tumor growth inhibition, metastasis prevention, virus replication, gene expression, systemic cytokine levels, and tumor-infiltrating cytotoxic T lymphocytes (CTLs).

Main Results:

  • Intravenous JX-594 demonstrated significant efficacy and tolerability in both models, achieving complete responses against primary liver tumors.
  • JX-594 treatment completely prevented the development of lung metastases in rabbits, unlike in control groups.
  • Evidence of tumor-specific viral replication, hGM-CSF expression, and increased tumor-infiltrating CTLs confirmed the therapeutic mechanism.

Conclusions:

  • JX-594 is a promising candidate for intravenous delivery as a targeted oncolytic virotherapy.
  • The developed immunocompetent preclinical models are valuable for optimizing this novel cancer treatment strategy.

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