Related Experiment Video
Updated: Oct 5, 2026

Streamlined Single Cell TCR Isolation and Generation of Retroviral Vectors for In Vitro and In Vivo Expression of Human TCRs
Published on: September 10, 2017
Engineering "off-the-shelf" TCR-T cells: A transient mRNA platform for balanced alloreactivity and functionality
Shan He1, Yirong Dai1, Qi Chen1,2
1Emerging Infectious Disease Program, Duke-NUS Medical School, Singapore, Singapore.
Abstract:
Adoptive T cell therapy using T cell receptor (TCR)-engineered T (TCR-T) cells shows promise for the treatment of cancer. Our lab employs mRNA electroporation to redirect T cell specificity toward HBV antigens expressed on HBV-related HCC, while exploiting mRNA's transient nature to limit toxicity. Here, we first demonstrated that peripheral blood mononuclear cells (PBMCs) from solid cancer patients are inferior manufacturing sources compared with healthy donors, showing reduced manufacturability and lower naive T cell frequencies. Since these limitations necessitate shifting to allogeneic "off-the-shelf" TCR-T products from healthy donors, we developed a non-gene-editing platform to produce such TCR-T cells. We addressed host-versus-graft rejection by combining transient tacrolimus-induced immunosuppression with immunosuppressive drug-resistant armored (IDRA) TCR-T cells. To reduce the risk of graft-versus-host disease, we optimized manufacturing using an IL-2/4/7 cytokine cocktail. The resulting TCR-T cells exhibited reduced alloreactivity, a less NK-like phenotype, and elevated IL-4/IL-10 secretion, while maintaining robust antigen-specific cytotoxicity and migratory capacity. This study provides an in vitro proof-of-concept for a feasible, multi-layered strategy to produce allogeneic TCR-T cell therapies, warranting further preclinical validation.

