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Comparative Preclinical Analysis of Anti-B7-H3 CAR-T Cells Targeting Neuroblastoma
Dzmitry V Lutskovich1, Alexander N Meleshko1, Valeria M Stepanova2
1Belarusian Research Center for Pediatric Oncology, Hematology and Immunology, 223053 Minsk, Belarus.
Abstract:
Background: Neuroblastoma is a childhood tumor that is usually fatal after relapse in high-risk patients. Most clinical trials of CAR-T therapy for neuroblastoma are based on targeting the disialoganglioside GD2. B7-H3, a protein from the immunoglobulin superfamily, is a specific marker for neuroblastoma and a number of other solid tumors. We conducted a preclinical study of three variants of anti-B7-H3 CAR-T cells in order to justify the selection of the best candidate for subsequent clinical trials. Methods: The expression level of B7-H3 was measured in a number of cell lines and neuroblastoma tissue samples via flow cytometry. The functional activity of CAR-T cells was compared using an NFAT-inducible reporter assay, a cytotoxicity test, cytokine production, and a repeated stimulation assay. Results: The obtained CAR-T cells carrying all resulting CAR variants specifically recognized and killed B7-H3-positive tumor cells in vitro. Nevertheless, TE9-28z and 8H9-28BBz demonstrated superior activation and cytokine production compared to the second-generation 8H9-BBz construct. TE9-28z and 8H9-28BBz exhibited functional differences in expansion, exhaustion markers, and cytokine secretion in co-cultures with target cells in vitro. In particular, TE9-28z induced higher IFNγ production, while 8H9-28BBz showed increased TNFα release. Despite comparable cytotoxicity, TE9-28z and 8H9-28BBz CAR-T cells exhibited varying persistence depending on the tumor type, and showed signs of functional exhaustion upon prolonged exposure to the target antigen. Conclusion: TE9-28z and 8H9-28BBz were selected for further preclinical development as promising candidates for the effective targeting of B7-H3-expressing malignancies.
Insights
This study evaluated anti-B7-H3 CAR-T cell variants for neuroblastoma treatment. TE9-28z and 8H9-28BBz showed promise for targeting B7-H3 malignancies in preclinical models.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Neuroblastoma is a fatal childhood cancer, particularly after relapse in high-risk patients.
- Current CAR-T therapies often target GD2, but B7-H3 presents a novel target for neuroblastoma and other solid tumors.
- This study focused on preclinical evaluation of anti-B7-H3 CAR-T cell variants to identify optimal candidates for clinical trials.
Purpose of the Study:
- To compare the preclinical efficacy of three anti-B7-H3 CAR-T cell variants.
- To identify the most promising CAR-T cell candidate for targeting B7-H3-expressing malignancies in future clinical trials.
Main Methods:
- B7-H3 expression was quantified in cell lines and tumor samples using flow cytometry.
- CAR-T cell functionality was assessed via reporter assays, cytotoxicity tests, cytokine profiling, and repeated stimulation assays.
- Comparative analysis of CAR-T cell variants TE9-28z, 8H9-28BBz, and 8H9-BBz.
Main Results:
- All evaluated CAR-T variants effectively recognized and killed B7-H3-positive neuroblastoma cells in vitro.
- TE9-28z and 8H9-28BBz demonstrated superior activation and cytokine production compared to the 8H9-BBz construct.
- Functional differences were observed in cell expansion, exhaustion markers, and cytokine secretion (IFNγ and TNFα), with varying persistence and signs of exhaustion upon prolonged antigen exposure.
Conclusions:
- TE9-28z and 8H9-28BBz CAR-T cells are promising candidates for further preclinical development.
- These variants show potential for effective targeting of B7-H3-expressing solid tumors.
- The study provides a rationale for selecting these candidates for subsequent clinical trials in neuroblastoma and other malignancies.
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