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April 4, 2026Cancer Research0 citations

Abstract 659: Ex vivo evaluation of a MUC1-targeted bispecific T-cell engager in ovarian tumoroids using Nilogen’s 3D-EXpress platform.

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VGVanessa T. GarridoJDJanine M. DeBlasiAMAndrea Mockabee

Key Points

  • The aim is to evaluate the immune activation effects of a MUC1-targeted bispecific T-cell engager in ovarian tumoroids.
  • Reviewed pathology reports for high-grade ovarian carcinoma confirmation.
  • Generated tumoroids from cryopreserved ovarian tissues via mechanical dissociation.
  • Administered MUC1-TCE and analyzed T-cell activation using multiparametric flow cytometry.
  • Conducted multiplex cytokine profiling and RNA transcriptomic analysis.
  • MUC1-TCE treatment induced immune activation in multiple tissues.
  • CD4+ T cells showed upregulation of activation markers including 4-1BB and CD69.
  • CD8+ T cells upregulated activation markers such as ICOS and OX40.
  • Cytokine profiling indicated strong responses with high levels of IFN-γ and TNF.

Abstract

Abstract BACKGROUND: Mucin 1 (MUC1) is a relevant target for bispecific T-cell engagers due to its expression in epithelial malignancies. Nilogen Oncosystems’ 3D-EXpress ex vivo tumoroid platform enables direct assessment of patient-specific responses to immunotherapies in a physiologically preserved tumor-immune microenvironment. This study evaluated the activity of a commercially available recombinant Anti-CD3 x Anti-MUC1 bispecific T cell engager antibody (MUC1-TCE) in cryopreserved ovarian tumor-derived tumoroids to characterize immune activation using Nilogen’s integrated platform combining flow cytometry, cytokine profiling, and RNA transcriptomic analysis. METHODS: Pathology reports were reviewed for all tissues and confirmed characteristic histological features consistent with high-grade ovarian carcinoma. Tissues were evaluated for MUC1 expression, showing high to low levels. Tumoroids were generated by mechanical dissociation without enzymatic digestion or in vitro propagation. After thawing, tumoroids were treated with MUC1-TCE, isotype control, or positive control. Multiparametric flow cytometry measured T-cell activation. Parallel supernatants were collected for multiplex cytokine profiling, and RNA was isolated for downstream transcriptional analysis. RESULTS: MUC1-TCE treatment induced clear immune activation across multiple tissues. CD4+ T cells upregulated 4-1BB, CD25, CD69, OX40, and PD-1, while CD8+ T cells upregulated 4-1BB, CD25, ICOS, and OX40. Cytokine profiling showed strong induction of inflammatory mediators, with IFN-γ and TNF displaying the greatest response. Preliminary RNA analysis revealed enrichment of immune-activated, inflammatory, and cytokine-driven pathways consistent with effector engagement. CONCLUSIONS: These findings demonstrate the feasibility of using cryopreserved patient-derived tumoroids for ex vivo testing of bispecific T-cell engagers while preserving the native tumor-immune microenvironment. Integration of cytokine measurements, transcriptomic readouts, and immune phenotyping provides a scalable approach for characterizing mechanisms of action of MUC1-targeted agents and supports continued development of bispecific immunotherapies for solid tumors. Citation Format: Vanessa Garrido, Janine DeBlasi, Andrea Mockabee, Seth Currlin, Justin Silberman, Jessica Linkous, Alliyah Humphrey, Jared Ehrhart. Ex vivo evaluation of a MUC1-targeted bispecific T-cell engager in ovarian tumoroids using Nilogen’s 3D-EXpress platform 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 659.

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Cite This Study

Garrido et al. (2026) studied this question.

synapsesocial.com/papers/69d0aff2659487ece0fa625dhttps://doi.org/10.1158/1538-7445.am2026-659
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 2803: Ex vivo micro-tumor testing platform to characterize and predict patient-specific immunotherapy drug responses2026
  2. 2Abstract IA012: Mechanisms and consequences of bispecific T-cell engager immunotherapy for ovarian cancer2025
  3. 3Abstract A086: Rapid expansion of natural, MUC1-activated T cells from the peripheral blood of ovarian cancer patients for adoptive cell therapy2024
  4. 4Abstract 6782: 3D-EXpress - an <i>ex vivo</i> platform using viably cryopreserved tumoroids for rapid assessment of targeted therapeutic outcomes2024
  5. 5Abstract 6947: A novel bispecific antibody-drug conjugate, BCG016, that targets 5T4 and MUC1, demonstrates robust preclinical antitumor activity2026