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Updated: Aug 9, 2026

HLA-Ig Based Artificial Antigen Presenting Cells for Efficient ex vivo Expansion of Human CTL
Published on: April 11, 2011
Sensitization of tumour cells to lysis by virus-specific CTL using antibody-targeted MHC class I/peptide complexes
G S Ogg1, P R Dunbar, V Cerundolo
1MRC Human Immunology Unit, Institute of Molecular Medicine, Oxford, UK.
Abstract:
A number of cell surface molecules with specificity to tumour cells have been identified and monoclonal antibodies (mAb) to some of these antigens have been used for targeting tumour cells in vivo. We have sought to link the powerful effector mechanisms of cytotoxic T-cells with the specificity of mAb, by targeting recombinant HLA class I molecules to tumour cells using an antibody delivery system. Soluble recombinant MHC class I/peptide complexes including HLA-A2.1 refolded around an immunodominant peptide from the HIV gag protein (HLA-A2/gag) were synthesized, and the stability of these complexes at 37 degrees C was confirmed by enzyme-linked immunosorbent assay using a conformation-specific antibody. MHC class I-negative lymphoma cells (Daudi) were labelled with a biotinylated mAb specific for a cell surface protein (anti-CD20) then linked to soluble biotinylated HLA-A2/gag complexes using an avidin bridge. Flow cytometry revealed strong labelling of lymphoma cells with HLA-A2/gag complexes (80-fold increase in mean channel fluorescence). CTL specific for HLA-A2/gag efficiently lysed complex-targeted cells, while control CTL (specific for an HLA-A2.1-restricted epitope of melan-A) did not. Similarly, SK-mel-29 melanoma cells were also efficiently lysed by HLA-A2/gag-specific CTL when HLA-A2/gag complexes were linked to their surface via the HMW-MAA specific anti-melanoma antibody 225.28s. With further consideration to the in vivo stability of the MHC class I/peptide complexes, this system could prove a new strategy for the immunological therapy of cancer.
Insights
This study links cytotoxic T-cell immunity with antibody specificity to target cancer cells. Recombinant HLA class I/peptide complexes were successfully targeted to tumor cells, enabling specific cell lysis for potential cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Monoclonal antibodies (mAb) target tumor cells, but effector mechanisms can be enhanced.
- Cytotoxic T-lymphocytes (CTL) are powerful effectors but require specific targeting.
Purpose of the Study:
- To link CTL effector mechanisms with mAb specificity for targeted cancer therapy.
- To develop a system for targeting recombinant HLA class I/peptide complexes to tumor cells.
Main Methods:
- Synthesized soluble recombinant HLA-A2.1/gag peptide complexes.
- Utilized biotinylated mAb and avidin bridges to link complexes to tumor cells (Daudi, SK-mel-29).
- Assessed complex stability and tumor cell targeting via flow cytometry and CTL-mediated lysis.
Main Results:
- Confirmed stability of HLA-A2/gag complexes at 37°C.
- Achieved significant labeling of lymphoma cells with targeted HLA-A2/gag complexes.
- Demonstrated efficient lysis of complex-targeted tumor cells by specific CTL.
Conclusions:
- Developed a novel antibody-based delivery system for targeting recombinant MHC class I/peptide complexes to tumor cells.
- This system enables specific CTL-mediated lysis of targeted cancer cells.
- Shows promise as a new strategy for cancer immunotherapy, pending in vivo stability assessments.
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