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Updated: Jun 21, 2026

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
The shared tumor associated antigen cyclin-A2 is recognized by high-avidity T-cells
Eisei Kondo1, Britta Maecker, Andreas Draube
1Max Eder Junior Research Group, Clinic I for Internal Medicine, University Hospital of Cologne, Cologne, Germany.
Abstract:
Cyclin-A2, a key cell cycle regulator, has been shown to be overexpressed in various types of malignancies with little expression in normal tissue. Such tumor-associated genes potentially are useful targets for cancer immunotherapy. However, high-avidity cyclin-specific T cells are considered to be thymically deleted. We identified at least one nonameric HLA-A*0201 binding cyclin-A2 epitope by a reverse immunology approach. Using a highly efficient T-cell expansion system that is based on CD40-activated B (CD40-B) cells as sole antigen-presenting cells we successfully generated cyclin-A2 specific CTL from HLA-A*0201(+) donors. Interestingly, high-avidity cyclin-A2 specific CTL lines, which recognized peptide-pulsed and antigen expressing target cells, were indeed generated by stimulation with CD40-B cells when pulsed with low concentrations of peptide, whereas CD40-B cells pulsed at saturating concentrations could only induce low-avidity CTL, which recognized peptide-pulsed target cells only. One high-avidity CTL line was subcloned and CTL clones, whose peptide concentration required for half-maximal lysis were less than 1 nM, could lyse cyclin-A2 expressing tumor cells. Taken together, cyclin A2 is an attractive candidate for immune intervention in a significant number of cancer patients and high-avidity T cells can be readily generated using CD40-B cells as antigen-presenting cells.
Insights
Cyclin-A2 is a promising cancer immunotherapy target. Researchers successfully generated high-avidity cyclin-A2 specific T cells using CD40-activated B cells, offering a new approach for cancer treatment.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Cyclin-A2 is overexpressed in many cancers but not normal tissues.
- Tumor-associated genes like Cyclin-A2 are potential targets for cancer immunotherapy.
- High-avidity cyclin-specific T cells are thought to be deleted in the thymus.
Purpose of the Study:
- To identify a Cyclin-A2 epitope that binds to HLA-A*0201.
- To generate high-avidity Cyclin-A2 specific T cells for cancer immunotherapy.
- To evaluate the efficacy of CD40-activated B cells as antigen-presenting cells for T cell generation.
Main Methods:
- Reverse immunology approach to identify HLA-A*0201 binding Cyclin-A2 epitope.
- T-cell expansion using CD40-activated B (CD40-B) cells as antigen-presenting cells.
- Generation and subcloning of Cyclin-A2 specific cytotoxic T lymphocytes (CTLs).
Main Results:
- An HLA-A*0201 binding Cyclin-A2 epitope was identified.
- High-avidity Cyclin-A2 specific CTLs were generated using CD40-B cells pulsed with low peptide concentrations.
- Generated CTL clones effectively lysed Cyclin-A2 expressing tumor cells.
Conclusions:
- Cyclin-A2 is a viable target for cancer immune intervention in numerous patients.
- CD40-B cells are effective antigen-presenting cells for generating high-avidity T cells.
- This approach holds promise for developing novel cancer immunotherapies.
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