Technical Articles
antigen-specific T cells
MHC HLA-A*1101/VVVGADGVGK KRAS G12D Tetramer-PE: A Key Tool for Targeting Oncogenic Driver Mutation-Specific T Cell Responses
The precise demand for detecting tumor neoantigen-specific T cells in the field of tumor immunology research, targeting T cell responses to neoantigens generated by oncogenic mutations, represents the most promising type of immune response for therapeutic potential.
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- Cancer
- MHC tetramer
- antigen-specific T cells
- T-cell receptor
- major histocompatibility complex
Deciphering the "Precision Probe" of Immune Recognition: H-2K(b)/SVYDFFVWL TRP2 Tetramer-APC
MHC class I molecules are present on the surface of all nucleated cells and function to "present" protein fragments (i.e., antigenic peptides) from inside the cell to the immune system. If the presented peptides are abnormal fragments produced by viruses or cancer cells, they are recognized by CD8+ T cells, triggering a clearance response.
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- Immunity/Inflamma
- MHC tetramer
- antigen-specific T cells
- T-cell receptor
- major histocompatibility complex
MHC tetramer technology: The "magic tool" for precise tracking of T cells
Simply put, an MHC tetramer is an artificially constructed complex molecule consisting of four major histocompatibility complex molecules linked together by a core scaffold. Each MHC molecule is loaded with a specific antigen peptide (a protein fragment that can elicit an immune response).
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- Immunity/Inflamma
- MHC tetramer
- antigen-specific T cells
- T-cell receptor
- major histocompatibility complex
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