AI Article Synopsis

  • Cell-based therapies using genetically engineered lymphocytes with antigen-specific T cell receptors (TCRs) show potential for cancer treatment, but most research has centered on TCRs from CD8 T cells.
  • In this study, researchers explored the effects of transferring TCRs derived from innate NKT cells to other lymphocytes, leading to enhanced responses in both innate and adaptive immune cells when stimulated with specific ligands.
  • The findings suggest that NKT TCR-transfected γδT cells exhibit improved anti-tumor effects and could represent a novel strategy for tumor immunotherapy across different cancer types.

Article Abstract

Cell-based therapies using genetically engineered lymphocytes expressing antigen-specific T cell receptors (TCRs) hold promise for the treatment of several types of cancers. Almost all studies using this modality have focused on transfer of TCR from CD8 cytotoxic T lymphocytes (CTLs). The transfer of TCR from innate lymphocytes to other lymphocytes has not been studied. In the current study, innate and adaptive lymphocytes were transfected with the human NKT cell-derived TCRα and β chain mRNA (the Vα24 and Vβ11 TCR chains). When primary T cells transfected with NKT cell-derived TCR were subsequently stimulated with the NKT ligand, α-galactosylceramide (α-GalCer), they secreted IFN-γ in a ligand-specific manner. Furthermore when γδT cells were transfected with NKT cell-derived TCR mRNA, they demonstrated enhanced proliferation, IFN-γ production and antitumor effects after α-GalCer stimulation as compared to parental γδT cells. Importantly, NKT cell TCR-transfected γδT cells responded to both NKT cell and γδT cell ligands, rendering them bi-potential innate lymphocytes. Because NKT cell receptors are unique and universal invariant receptors in humans, the TCR chains do not yield mispaired receptors with endogenous TCR α and β chains after the transfection. The transfection of NKT cell TCR has the potential to be a new approach to tumor immunotherapy in patients with various types of cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4488262PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0131477PLOS

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