Development of a novel, high-efficacy oncolytic herpes simplex virus type 1 platform equipped with two distinct

Hyun-Yoo Joo1, Hyunjung Baek1, Chun-Seob Ahn1

  • 1Gencellmed Inc., Korea Institute of Radiological and Medical Sciences, Room 302 Research Building #3, Seoul, Republic of Korea.

PubMed

Insights

A new double-retargeted oncolytic herpes simplex virus (oHSV) effectively targets cancer cells using specific antibodies. A single dose of this engineered virus eliminated tumors in mice, showing promise for cancer therapy.

Area of Science:

  • Oncolytic virotherapy
  • Cancer immunotherapy
  • Viral vector engineering

Background:

  • Oncolytic herpes simplex virus (oHSV) shows potential for cancer treatment.
  • Targeting oHSV to tumor-specific antigens can improve efficacy and safety.
  • Current oHSV platforms may lack specificity and efficient systemic delivery.

Purpose of the Study:

  • To develop a novel, double-retargeted oHSV platform for enhanced cancer cell targeting.
  • To utilize single-chain antibodies (scFvs) for dual-receptor specificity.
  • To evaluate the in vitro and in vivo efficacy and safety of the engineered oHSV.

Main Methods:

  • Designed a double-retargeted oHSV incorporating scFvs into glycoprotein H and a bispecific adapter.
  • Detargeted nectin-1 interaction while retaining herpesvirus entry mediator (HVEM) binding.
  • Tested epithelial cell adhesion molecule (EpCAM)- and human epidermal growth factor receptor 2 (HER2)-specific scFvs.
  • Assessed infection and spread in vitro and in vivo models.

Main Results:

  • Achieved dose-dependent, target receptor-specific infection in vitro.
  • Demonstrated enhanced virus spread compared to single-retargeted viruses.
  • Showcased effective in vivo infection and tumor elimination with EpCAM-specific oHSV.
  • Observed no apparent toxicity in immunocompetent mice.

Conclusions:

  • The double-retargeted oHSV platform offers potent and versatile cancer cell targeting.
  • Systemic delivery of this oHSV shows promise for effective and safe cancer therapeutics.
  • This approach enables specific targeting of cancer cells expressing desired antigens.