Intratumoral PD-1-directed IL-2 expression via oncolytic vaccinia virus elicits superior antitumor effects with

Lingjuan Chen1,2,3, Junjie Ye1,2,4, Sefali Patel1

  • 1Allegheny Health Network Cancer Institute, Pittsburgh, PA 15212, USA.

Abstract

Insights

This study developed an oncolytic virus (oVV) expressing a fusion protein of programmed cell death protein-1 (PD-1) and interleukin-2 (IL-2). The engineered virus effectively transformed non-inflamed tumors into immune-inflamed ones, showing promise for cancer immunotherapy.

Area of Science:

  • Oncology
  • Immunology
  • Virology

Background:

  • Cancer immunotherapy has advanced treatment for many cancers.
  • Solid tumors often remain non-inflamed and unresponsive to immunotherapy.
  • Oncolytic viruses and cytokines offer strategies to enhance immune responses against tumors.

Purpose of the Study:

  • To develop and evaluate an oncolytic vaccinia virus (oVV) expressing a fusion protein of PD-1 ectodomain and IL-2 (vvDD-PD-1ecto-R-IL-2).
  • To assess if this engineered virus can transform non-inflamed tumors into immune-inflamed ones and enhance antitumor effects.
  • To minimize systemic toxicity associated with IL-2 administration.

Main Methods:

  • Generation and validation of the vvDD-PD-1ecto-R-IL-2 oncolytic virus.
  • Assessment of antitumor efficacy and safety in murine tumor models.
  • Investigation of mechanisms of action using RT-qPCR, ELISA, and flow cytometry.

Main Results:

  • The vvDD-PD-1ecto-R-IL-2 virus demonstrated significant antitumor effects.
  • PD-1 directed IL-2 to the tumor cell membrane, reducing systemic toxicity and accumulating IL-2 in the tumor microenvironment.
  • Treatment increased antitumor factors (IFN-γ, granzyme B, perforin) and promoted expansion of functional CD8+ T cells while reducing exhausted T cells, thus converting non-inflamed tumors into inflamed ones.

Conclusions:

  • PD-1-directed IL-2 delivered via oncolytic vaccinia virus (oVV) is safe and effective.
  • This approach shows potential for clinical translation in cancer immunotherapy.

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