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Updated: May 8, 2026

Tractable In Vivo Reprogramming of Tumor Cells to Type 1 Conventional Dendritic Cell-like Cells
Published on: August 1, 2025
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.
Abstract:
Adoptive transfer of T cells genetically modified to express cancer-specific receptors can mediate impressive tumor regression in terminally ill patients. However, T cell function and persistence over time could be hampered by the activation of inhibitory costimulatory pathways, such as programmed death 1 (PD1)/programmed death ligand 1, leading to T cell exhaustion and providing tumor cells with an escape mechanism from immunosurveillance. In addition, the lack of positive costimulation at the tumor site can further dampen T cell response. Thus, as T cell genetic engineering has become clinically relevant, we aimed at enhancing T cell antitumor activity by genetically diverting T cell-negative costimulatory signals into positive ones using chimeric costimulatory retargeting molecules and which are composed of the PD1 extracellular domain fused to the signaling domains of positive costimulatory molecules such as CD28 and 4-1BB. After characterizing the optimal PD1 chimera, we designed and optimized a tripartite retroviral vector that enables the simultaneous expression of this chimeric molecule in conjunction with a cancer-specific TCR. Human T cells, transduced to express a PD1/28 chimeric molecule, exhibited enhanced cytokine secretion and upregulation of activation markers upon coculture with tumor cells. These engineered cells also proliferated better compared with control cells. Finally, we tested the function of these cells in two xenograft models of human melanoma tumors and show that PD1/28-engineered human T cells demonstrated superior antitumor function. Overall, we propose that engineering T cells with a costimulatory retargeting molecule can enhance their function, which bears important implications for the improvement of T cell immunotherapy.
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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