Targeting IGF2 to reprogram the tumor microenvironment for enhanced viro-immunotherapy

Min Hye Noh1, Jin Muk Kang1,2, Alexandra A Miller3,1

  • 1Department of Neurosurgery, McGovern Medical School, The University of Texas Health Science Center at Houston, Houston, Texas, USA.

Neuro-Oncology
|June 10, 2024
PubMed
Abstract

Insights

Oncolytic herpes simplex-1 virus (oHSV) therapy shows promise but faces resistance. This study reveals IGF2 as a key resistance factor, with a novel oHSV variant (oHSV-D11mt) overcoming this limitation for improved cancer immunotherapy.

Area of Science:

  • Oncology
  • Virology
  • Immunotherapy

Background:

  • Oncolytic herpes simplex-1 virus (oHSV) therapy is a promising cancer immunotherapy approved by the FDA.
  • However, its efficacy is limited by tumor and tumor microenvironment (TME) resistance in many patients.

Purpose of the Study:

  • To identify molecular targets contributing to oHSV resistance.
  • To elucidate the mechanisms underlying resistance to oHSV therapy in glioma and breast cancer brain metastasis (BCBM) models.

Main Methods:

  • RNA sequencing (RNA-Seq) was employed to identify resistance targets.
  • Murine models of intracranial glioma and BCBM were used to study oHSV resistance mechanisms.

Main Results:

  • IGF2 was identified as a key secreted protein upregulated post-oHSV treatment, also observed in recurrent GBM patients.
  • Depleting IGF2 enhanced oHSV's tumor-killing ability and improved survival in vivo.
  • A novel oHSV variant, oHSV-D11mt, secreting IGF2R domain 11 (IGF2RD11mt), effectively blocked IGF2, increasing cytotoxicity and enhancing anti-tumor immune responses.

Conclusions:

  • This study is the first to report that secreted IGF2 plays a critical role in oHSV resistance.
  • The novel oHSV-D11mt variant represents a promising therapeutic advance for overcoming oHSV resistance and enhancing viro-immunotherapy.

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