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April 19, 2026ACS Nano1 citations

Universal Nanovial Screening Enables Functional Discovery of Metabolite-Reactive T-Cell Receptors for Cancer Therapy

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CSCitradewi SoemardyYLYan-Ruide LiYZYichen Zhu

Key Points

  • This research aims to identify and characterize metabolite-reactive T-cell receptors (TCRs) from unconventional T cells for potential cancer therapy.
  • Developed a nanovial-based screening platform for high-throughput TCR discovery.
  • Utilized MR1 and CD1d molecules for antigen presentation and capture.
  • Employed secretion-encoded single-cell sequencing to analyze TCR diversity and functionality.
  • Isolated MAIT and iNKT cells to link TCR identities with their functional characteristics.
  • Identified five MAIT TCRs that triggered antigen-specific cytokine secretion and cytotoxicity in vitro.
  • Demonstrated tumor targeting and intratumoral accumulation of two TCRs in vivo.
  • Showed measurable antitumor activity, indicating therapeutic potential for TCRs found using this screening method.

Abstract

Unconventional T cells, including mucosal-associated invariant T (MAIT) cells and invariant natural killer T (iNKT) cells, recognize nonpeptide antigens presented by MR1 and CD1d, respectively, and offer unique therapeutic potential. Despite invariant TCRα chains, diversity in TCRβ regions may underlie unique sequence-to-function relationships. Here, we develop a nanovial-based functional screening platform for the high-throughput discovery of TCRs from unconventional T cells present in human blood. By labeling nanovials with MR1 or CD1d molecules and cytokine-capture antibodies, we enable antigen-specific capture, activation, cytokine secretion, and oligobarcode-linked identification. Using secretion-encoded single-cell sequencing, we isolate rare MAIT and iNKT cells and associate their TCR identities with functional phenotypes. All five MAIT TCRs conferred antigen-specific cytokine secretion and cytotoxicity in vitro, with the two tested in vivo demonstrating tumor targeting, intratumoral accumulation, and measurable antitumor activity. Our nanotechnology-enabled "function-first" screen unlocks precision TCR discovery for unconventional T cells and supports the development of therapies targeting aberrant metabolic pathways.

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Cite This Study

Soemardy et al. (2026) studied this question.

synapsesocial.com/papers/69e470e9010ef96374d8da81https://doi.org/10.1021/acsnano.5c22721
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