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- W3158676299 abstract "Abstract Adaptive immunity relies on T lymphocytes that use αβ T-cell receptors (TCRs) to discriminate amongst peptides presented by MHC molecules (pMHCs). An enhanced ability to screen for pMHCs capable of inducing robust T-cell responses could have broad applications in diagnosing and treating immune diseases. T-cell activation in vivo relies on biomechanical forces to trigger activation by sparse antigenic pMHCs. However, in vitro screening tests potential pMHCs without force and at high (non-physiological) pMHC densities and thus often fails to predict potent agonists in vivo . Here, we present a technology that uses biomechanical force to initiate T-cell triggering in high throughput. BATTLES (Biomechanically-Assisted T-cell Triggering for Large-scale Exogenous-pMHC Screening) displays candidate pMHCs on spectrally encoded ‘smart beads’ capable of applying physiological loads to T cells, facilitating exploration of the force- and sequence-dependent landscape of T-cell responses. BATTLES can be used to explore basic T-cell mechanobiology and T cell-based immunotherapies." @default.
- W3158676299 created "2021-05-10" @default.
- W3158676299 creator A5073719214 @default.
- W3158676299 date "2021-07-21" @default.
- W3158676299 modified "2023-09-27" @default.
- W3158676299 title "Structure-activity mapping of the peptide- and force-dependent landscape of T-cell activation" @default.
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- W3158676299 doi "https://doi.org/10.21203/rs.3.rs-636850/v1" @default.
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