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Updated: Nov 26, 2025

Tracking Bispecific Antibody-Induced T Cell Trafficking Using Luciferase-Transduced Human T Cells
Published on: May 12, 2023
GD2 or HER2 targeting T cell engaging bispecific antibodies to treat osteosarcoma
Jeong A Park1, Nai-Kong V Cheung2
1Department of Pediatrics, Memorial Sloan Kettering Cancer Center, 1275 York Ave, Box 170, New York, NY, USA.
Background:
The cure rate for metastatic osteosarcoma has not substantially improved over the past decades. Clinical trials of anti-HER2 trastuzumab or anti-GD2 dinutuximab for metastatic or refractory osteosarcoma were not successful, and neither was immune checkpoint inhibitors (ICIs).
Methods:
We tested various target antigen expressions on osteosarcoma cell lines using flow cytometry and analyzed in vitro T cell engaging BsAb (T-BsAb)-dependent T cell-mediated cytotoxicity using 4-h 51Cr release assay. We tested in vivo anti-tumor activities of T-BsAb targeting GD2 or HER2 in established osteosarcoma cell line or patient-derived xenograft (PDX) mouse models carried out in BALB-Rag2-/-IL-2R-γc-KO (BRG) mice. We also generated ex vivo BsAb-armed T cells (EATs) and studied their tumor-suppressive effect against osteosarcoma xenografts. In order to improve the anti-tumor response, ICIs, anti-human PD-1 (pembrolizumab) or anti-human PD-L1 (atezolizumab) antibodies were tested their synergy with GD2- or HER2-BsAb against osteosarcoma.
Results:
GD2 and HER2 were chosen from a panel of surface markers on osteosarcoma cell lines and PDXs. Anti-GD2 BsAb or anti-HER2 BsAb exerted potent anti-tumor effect against osteosarcoma tumors in vitro and in vivo. T cells armed with anti-GD2-BsAb (GD2-EATs) or anti-HER2-BsAb (HER2-EATs) showed significant anti-tumor activities as well. Anti-PD-L1 combination treatment enhanced BsAb-armed T cell function in vivo and improved tumor control and survival of the mice, when given sequentially and continuously.
Conclusion:
Anti-GD2 and anti-HER2 BsAbs were effective in controlling osteosarcoma. These data support the clinical investigation of GD2 and HER2 targeted T-BsAb treatment in combination with immune checkpoint inhibitors, particularly anti-PD-L1, in patients with osteosarcoma to improve their treatment outcome.
Insights
New bispecific antibodies targeting GD2 or HER2 show promise for osteosarcoma treatment. Combining these therapies with PD-L1 immune checkpoint inhibitors significantly improved tumor control and survival in preclinical models.
Area of Science:
- Oncology
- Immunotherapy
- Cancer Biology
Background:
- Metastatic osteosarcoma cure rates remain poor despite decades of research.
- Previous trials with anti-HER2 trastuzumab, anti-GD2 dinutuximab, and immune checkpoint inhibitors (ICIs) showed limited success in osteosarcoma.
Purpose of the Study:
- To evaluate the efficacy of T cell engaging bispecific antibodies (T-BsAbs) targeting GD2 or HER2 in osteosarcoma.
- To investigate the synergistic effects of combining T-BsAbs with ICIs, specifically anti-PD-1 and anti-PD-L1, against osteosarcoma.
Main Methods:
- Flow cytometry was used to analyze target antigen expression on osteosarcoma cell lines.
- In vitro cytotoxicity assays and in vivo studies using mouse models (xenografts and patient-derived xenografts) were conducted.
- Ex vivo BsAb-armed T cells (EATs) were generated and tested for anti-tumor activity, alongside combination therapy with ICIs.
Main Results:
- GD2 and HER2 were identified as suitable targets on osteosarcoma cells.
- Anti-GD2 and anti-HER2 BsAbs demonstrated potent anti-tumor effects both in vitro and in vivo.
- Combination therapy with anti-PD-L1 enhanced T-cell function, improved tumor control, and prolonged survival in preclinical models.
Conclusions:
- Anti-GD2 and anti-HER2 bispecific antibodies are effective in controlling osteosarcoma.
- Clinical investigation of GD2/HER2-targeted T-BsAbs combined with anti-PD-L1 is warranted to improve osteosarcoma treatment outcomes.
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