Human T cells engineered to express a programmed death 1/28 costimulatory retargeting molecule display enhanced

Chen Ankri1, Katerina Shamalov, Miryam Horovitz-Fried

  • 1Laboratory of Tumor Immunology and Immunotherapy, Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan 52900, Israel.

Insights

Engineered T cells with a novel chimeric molecule targeting Programmed Death 1 (PD1) show enhanced antitumor activity. This strategy diverts inhibitory signals into positive ones, improving T cell function and persistence for cancer immunotherapy.

Area of Science:

  • Immunology
  • Cancer Biology
  • Biotechnology

Background:

  • Adoptive T cell therapy shows promise but is limited by T cell exhaustion due to inhibitory pathways like PD1.
  • Tumor cells can evade immune surveillance by exploiting these inhibitory signals.
  • Lack of positive costimulation further impairs T cell responses at the tumor site.

Purpose of the Study:

  • To enhance T cell antitumor activity by genetically redirecting inhibitory signals into activating ones.
  • To develop chimeric costimulatory retargeting molecules by fusing PD1 extracellular domains with CD28 or 4-1BB signaling domains.
  • To create a tripartite retroviral vector for simultaneous expression of chimeric molecules and cancer-specific T cell receptors (TCRs).

Main Methods:

  • Designed and optimized chimeric costimulatory retargeting molecules (PD1/28).
  • Developed a tripartite retroviral vector for T cell genetic engineering.
  • Co-cultured engineered human T cells with tumor cells to assess cytokine secretion and activation markers.
  • Evaluated T cell proliferation and antitumor function in human melanoma xenograft models.

Main Results:

  • PD1/28-engineered T cells demonstrated enhanced cytokine secretion and activation marker expression.
  • Engineered T cells exhibited improved proliferation compared to control cells.
  • PD1/28-engineered T cells showed superior antitumor function in melanoma xenograft models.

Conclusions:

  • Engineering T cells with costimulatory retargeting molecules can overcome inhibitory signals and enhance antitumor activity.
  • This approach holds significant potential for improving the efficacy of T cell-based cancer immunotherapy.
  • Chimeric costimulatory retargeting offers a promising strategy to boost T cell function in cancer treatment.

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