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A novel murine T-cell receptor targeting NY-ESO-1
Shannon F Rosati1, Maria R Parkhurst, Young Hong
1Surgery Branch, Center for Cancer Research, National Cancer Institute, Bethesda, MD.
Abstract:
Cancer testis antigens, such as NY-ESO-1, are expressed in a variety of prevalent tumors and represent potential targets for T-cell receptor (TCR) gene therapy. DNA encoding a murine anti-NY-ESO-1 TCR gene (mTCR) was isolated from immunized HLA-A*0201 transgenic mice and inserted into a γ-retroviral vector. Two mTCR vectors were produced and used to transduce human PBL. Transduced cells were cocultured with tumor target cell lines and T2 cells pulsed with the NY-ESO-1 peptide, and assayed for cytokine release and cell lysis activity. The most active TCR construct was selected for production of a master cell bank for clinical use. mTCR-transduced PBL maintained TCR expression in short-term and long-term culture, ranging from 50% to 90% efficiency 7-11 days after stimulation and 46%-82% 10-20 days after restimulation. High levels of interferon-γ secretion were observed (1000-12000 pg/mL), in tumor coculture assays and recognition of peptide-pulsed cells was observed at 0.1 ng/mL, suggesting that the new mTCR had high avidity for antigen recognition. mTCR-transduced T cells also specifically lysed human tumor targets. In all assays, the mTCR was equivalent or better than the comparable human TCR. As the functional activity of TCR-transduced cells may be affected by the formation of mixed dimers, mTCRs, which are less likely to form mixed dimers with endogenous hTCRs, may be more effective in vivo. This new mTCR targeted to NY-ESO-1 represents a novel potential therapeutic option for adoptive cell-transfer therapy for a variety of malignancies.
Insights
Researchers developed a novel murine T-cell receptor (TCR) gene therapy targeting the NY-ESO-1 cancer antigen. This therapy demonstrated potent anti-tumor activity and may offer a new treatment option for various cancers.
Area of Science:
- Immunology
- Oncology
- Gene Therapy
Background:
- Cancer testis antigens like NY-ESO-1 are present in many tumors, making them promising targets for T-cell receptor (TCR) gene therapy.
- Adoptive cell transfer using TCR-engineered T cells is a developing strategy for cancer treatment.
Purpose of the Study:
- To develop and evaluate a murine anti-NY-ESO-1 TCR (mTCR) gene for potential use in adoptive cell-transfer therapy.
- To assess the efficacy and safety of mTCR-transduced T cells in targeting NY-ESO-1 expressing tumors.
Main Methods:
- Isolated DNA encoding an anti-NY-ESO-1 TCR from immunized transgenic mice.
- Inserted the mTCR gene into a gamma-retroviral vector for transduction of human peripheral blood lymphocytes (PBL).
- Assayed cytokine release and cell lysis activity of transduced T cells against tumor cell lines and peptide-pulsed cells.
Main Results:
- mTCR-transduced PBL maintained high TCR expression in vitro (50-90% efficiency).
- Transduced T cells secreted high levels of interferon-gamma (1000-12000 pg/mL) and showed high avidity for antigen recognition.
- mTCR-transduced T cells specifically lysed human tumor targets, performing comparably or better than human TCRs.
Conclusions:
- The developed mTCR targeting NY-ESO-1 is a potent therapeutic candidate for adoptive cell-transfer therapy.
- mTCRs may be more effective in vivo due to reduced risk of mixed dimer formation with endogenous TCRs.
- This novel mTCR offers a potential new treatment strategy for diverse malignancies expressing NY-ESO-1.

