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April 5, 2026Cancer Research0 citations

Abstract 1771: Synergistic lethality of combination treatment with Trop2-directed antibody-drug conjugate (IMMU-132) and Apo2L/TRAIL in triple negative breast cancer (TNBC)

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YAYonit A. AddissieYGYoshimi Endo GreerSLStan Lipkowitz

Key Points

  • The aim is to investigate the synergistic effects of IMMU-132 and Apo2L/TRAIL on TNBC cell growth and death mechanisms.
  • In vitro treatment of human TNBC cell lines with IMMU-132 and Apo2L/TRAIL
  • Assessment of cell viability using propidium iodide and ATP assays
  • Investigation of cell death mechanisms through caspase assays and flow cytometry
  • In vivo experiments with NCr athymic nude mice bearing TNBC xenografts
  • IMMU-132 and Apo2L/TRAIL synergistically induced cell death in Trop2 high TNBC cell lines.
  • Some Trop2 low TNBC cell lines also showed synergy, indicating deconjugation of SN-38.
  • Apoptosis was identified as the primary cell death mechanism from combination treatment.
  • IMMU-132 and Apo2L/TRAIL treatment caused G2/M cell cycle arrest in TNBC cells.
  • The in vivo model demonstrated significant tumor growth reduction and improved survival rates.

Abstract

Abstract Background: Sacituzumab govitecan (IMMU-132) is an antibody drug conjugate targeting trophoblastic cell surface antigen 2 (Trop2) that’s approved for treatment of patients with metastatic TNBC who have received two or more prior systemic therapies. The cytotoxic payload of IMMU-132 is a topoisomerase I inhibitor (SN-38) that kills cancer cells by causing DNA damage. Efforts to enhance the efficacy of IMMU-132 treatment include combination therapy with other agents. Apo2L/TRAIL interacts with death receptors on the cell surface to induce apoptosis in cancer cells, sparing normal cells. We previously have shown that TNBC is most sensitive to Apo2L/TRAIL. We investigated whether combination treatment with IMMU-132 and Apo2L/TRAIL synergistically inhibit TNBC cell growth. Methods: Human TNBC cell lines treated in vitro with IMMU-132 and Apo2L were assessed for cell viability via a propidium iodide-based cell death assay and ATP cell viability assay. The mode of cell death elicited by combination treatment was also investigated by using inhibitors of apoptosis, necroptosis and ferroptosis. Effects of treatment on cell cycle arrest were explored using flow cytometry. In vivo, NCr athymic nude (nu/nu) female mice with HCC1806 TNBC xenografts were treated with IMMU-132 and Apo2L after which tumor growth and survival were monitored. Results: Combination treatment with IMMU-132 and Apo2L synergistically induced cell death in triple negative breast cancer cell lines with high Trop2 expression (e.g. HCC1806, MDA-MB-468) but did not in the Trop2 low expressing MDA-MB-231 cell line. In some Trop2 low TNBC cell lines (e.g. BT-549, SUM-159), combination treatment also showed synergistic induction of cell death, suggesting extracellular deconjugation of the SN-38 cytotoxic payload and diffusion into cells. The synergy seen in Trop2 low TNBC cell lines was abrogated by limiting drug incubation periods - which minimizes the extracellular deconjugation. In contrast, the synergy seen in Trop2 high cells was maintained in these short incubation assays. Caspase activation assays and viability assays with caspase inhibitors showed that the primary mechanism of cell death for Apo2L and combination treatment with IMMU-132 is through apoptosis. Furthermore, flow cytometry-based cell cycle assays showed that IMMU-132 and combination treatment with Apo2L induce cell cycle arrest at the G2/M stage. Our xenograft model also showed significant antitumor effects with SG and TRAIL agonist combination treatment including decrease in tumor growth and improved survival in HCC1806 bearing mice. Conclusions: The data suggest a synergistic effect of combination treatment with Trop2 antibody drug conjugate IMMU-132 and TRAIL agonists in killing TNBC cells. Citation Format: Yonit Addissie, Yoshimi Endo Greer, Stan Lipkowitz. Synergistic lethality of combination treatment with Trop2-directed antibody-drug conjugate (IMMU-132) and Apo2L/TRAIL in triple negative breast cancer (TNBC) abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 1771.

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Addissie et al. (2026) studied this question.

synapsesocial.com/papers/69d1fca7a79560c99a0a24e9https://doi.org/10.1158/1538-7445.am2026-1771
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