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ABBV-184: A Novel Survivin-specific TCR/CD3 Bispecific T-cell Engager is Active against Both Solid Tumor and
Adam S Chervin1, Jennifer D Stone1, Iwona Konieczna1
1AbbVie Inc., North Chicago, Illinois.
Abstract:
CD3 bispecific T-cell engagers (TCE), comprised of a tumor-targeting domain linked to a CD3 binding domain, function by bridging target-positive tumors and CD3-expressing effector T cells enabling redirected T cell-mediated killing of tumor cells. Although the majority of CD3 bispecific molecules in clinical development incorporate tumor-targeting antibody-based binding domains, many tumor-associated antigens derive from intracellular proteins and are not accessible to targeting via antibody. Intracellular proteins processed into short peptide fragments and presented on the cell surface by MHC proteins are recognized by T-cell receptors (TCR) on the surface of T cells. Here we describe the generation and preclinical evaluation of ABBV-184, a novel TCR/anti-CD3 bispecific composed of a highly selective soluble TCR that binds a peptide derived from the oncogene survivin (BIRC5) bound to the class I MHC allele human leukocyte antigen (HLA)-A*02:01 expressed on tumor cells, linked to a specific binder to the CD3 receptor on T cells. ABBV-184 drives an optimal distance between T cell and target cell thereby enabling sensitive recognition of low-density peptide/MHC targets. Consistent with the expression profile of survivin across a broad range of both hematologic and solid tumors, treatment of acute myeloid leukemia (AML) and non-small cell lung cancer (NSCLC) cell lines with ABBV-184 results in T-cell activation, proliferation, and potent redirected cytotoxicity of HLA-A2-positive target cell lines, both in vitro and in vivo, including patient-derived AML samples. These results indicate that ABBV-184 is an attractive clinical candidate for the treatment of patients with AML and NSCLC.
Insights
A novel T-cell engager, ABBV-184, targets intracellular survivin peptides on tumors. This bispecific therapy activates T cells to effectively kill cancer cells in acute myeloid leukemia and non-small cell lung cancer.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- CD3 bispecific T-cell engagers (TCE) redirect T cells to kill tumor cells.
- Many tumor antigens are intracellular and inaccessible to antibody-based TCEs.
- T-cell receptors (TCR) recognize intracellular peptides presented by MHC molecules.
Purpose of the Study:
- To describe the preclinical evaluation of ABBV-184, a novel TCR/anti-CD3 bispecific molecule.
- To assess the efficacy of ABBV-184 in targeting survivin peptide/MHC complexes on cancer cells.
Main Methods:
- ABBV-184 comprises a soluble TCR targeting a survivin-derived peptide/HLA-A*02:01 complex and an anti-CD3 binder.
- Preclinical evaluation involved in vitro and in vivo studies using cancer cell lines and patient-derived samples.
Main Results:
- ABBV-184 demonstrated potent T-cell activation, proliferation, and cytotoxicity against HLA-A2-positive cancer cells.
- Effective targeting was observed in acute myeloid leukemia (AML) and non-small cell lung cancer (NSCLC) models.
- The bispecific molecule showed efficacy even with low-density peptide/MHC targets.
Conclusions:
- ABBV-184 is a promising clinical candidate for treating AML and NSCLC.
- TCR-based bispecifics offer a strategy to target intracellular antigens.
- ABBV-184's ability to target survivin presents a broad therapeutic potential.
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