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Updated: Aug 22, 2025

Non-Viral Engineering of Primary Human T Cells via Homology-Mediated End-Joining Targeted Integration of Large DNA Templates
Published on: May 9, 2025
Non-viral precision T cell receptor replacement for personalized cell therapy
Susan P Foy1, Kyle Jacoby2, Daniela A Bota3
1PACT Pharma, South San Francisco, CA, USA. sfoy@pactpharma.com.
This study developed a clinical-grade CRISPR-Cas9 gene-editing method to engineer T-cells with neoantigen-specific T-cell receptors (neoTCRs) for cancer therapy. The approach successfully knocked out endogenous TCRs and inserted neoTCRs, demonstrating feasibility and T-cell trafficking to tumors.
Area of Science:
- Immunology
- Genetics
- Oncology
Background:
- T-cell receptors (TCRs) are crucial for T-cells to identify cancer-specific mutations.
- Current T-cell therapies often face challenges in specificity and efficacy against solid tumors.
Purpose of the Study:
- To develop and evaluate a clinical-grade, non-viral CRISPR-Cas9 genome-editing approach for engineering T-cells with neoantigen-specific TCRs (neoTCRs).
- To assess the safety, feasibility, and in vivo T-cell trafficking of neoTCR-engineered T-cell products in patients with refractory solid cancers.
Main Methods:
- Simultaneous knockout of endogenous TRAC and TRBC genes using CRISPR-Cas9 non-viral genome editing.
- Insertion of neoantigen-specific TCRs (neoTCRs) into the TRAC locus, with neoTCRs isolated using personalized neoantigen-HLA capture reagents.
- Phase I clinical trial administering up to three distinct neoTCR transgenic T-cell products in a dose-escalation manner to patients with refractory solid cancers.
Main Results:
- Successful simultaneous knockout of endogenous TCR genes and knock-in of neoTCRs using a single-step, non-viral precision genome-editing method.
- neoTCR transgenic T-cells were detected in tumor biopsies post-infusion at higher frequencies than endogenous TCRs pre-infusion, indicating successful tumor trafficking.
- Observed manageable side effects, including cytokine release syndrome and encephalitis in one patient each, alongside expected chemotherapy-related side effects.
Conclusions:
- Demonstrated the feasibility of isolating and cloning multiple TCRs targeting mutational neoantigens.
- Established the clinical-grade manufacture and safety of infusing multiple gene-edited neoTCR T-cell products.
- Confirmed the ability of engineered T-cells to traffic to tumor sites in patients, supporting the potential of this approach for cancer immunotherapy.
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