P53-armed Oncolytic Adenovirus Enhances the Efficacy of PD-1 Blockade in Neuroblastoma by Inducing Immunogenic Cell

Morimichi Tani1, Hiroshi Tazawa2,3, Terutaka Tanimoto1

  • 1Department of Pediatric Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama, Japan.

Anticancer Research
|March 27, 2026
PubMed
Abstract

Insights

OBP-702, a novel oncolytic virus, effectively induces immunogenic cell death (ICD) in neuroblastoma (NB) cells. This therapy shows promise in enhancing the efficacy of immune checkpoint inhibitors (ICIs) for treating NB tumors.

Area of Science:

  • Oncology
  • Immunotherapy
  • Virology

Background:

  • Neuroblastoma (NB) is a challenging pediatric cancer, often resistant to current immunotherapies like immune checkpoint inhibitors (ICIs).
  • Oncolytic virotherapy offers a potential strategy to enhance anti-tumor immune responses by inducing immunogenic cell death (ICD).

Purpose of the Study:

  • To evaluate the therapeutic potential of telomerase-specific oncolytic adenoviruses, OBP-301 and OBP-702, for inducing ICD in NB.
  • To assess the combined effect of these oncolytic viruses with PD-1 blockade against NB cells.

Main Methods:

  • Assessed cytopathic activity of OBP-301 and OBP-702 in human and murine NB cell lines.
  • Analyzed virus-mediated antitumor effects including cell viability, ATP/HMGB1 secretion, apoptosis, autophagy, and PD-L1 levels.
  • Evaluated the in vivo antitumor effect of OBP-702 combined with anti-PD-1 antibody in a murine NB tumor model.

Main Results:

  • OBP-702 demonstrated superior cytopathic activity and ICD induction (ATP/HMGB1 secretion) compared to OBP-301 in NB cells.
  • Both viruses increased apoptosis, autophagy, and PD-L1 expression in murine NB cells.
  • OBP-702 significantly improved survival in tumor-bearing mice compared to PD-1 blockade monotherapy.

Conclusions:

  • OBP-702 shows significant potential as an antitumor strategy for neuroblastoma.
  • OBP-702 can enhance the efficacy of immune checkpoint inhibitors (ICIs) by inducing immunogenic cell death (ICD).

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