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January 22, 2026Cancers0 citationsOpen Access

Evaluating the Therapeutic Potential of MRT68921 and Afatinib in Three-Dimensional Models of Epithelial Ovarian Cancer

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TJTiffany P. A. JohnstonJWJack D. WebbMBMatthew J. Borrelli

Key Points

  • To assess the effects of ULK1 inhibition via MRT68921 and its combination with afatinib in epithelial ovarian cancer models.
  • Cultured high-grade serous and ovarian clear cell carcinoma cell lines under adherent and spheroid conditions.
  • Performed immunoblotting to confirm ULK1 inhibition and autophagic modulation.
  • Assessed autophagic flux using mCherry-eGFP-LC3 reporter assays.
  • Evaluated 96 dose combinations of MRT68921 and afatinib using drug combination matrices and Synergy Finder.
  • Tested combinations across various EOC spheroid models and patient-derived organoids.
  • MRT68921 inhibited ULK1 activity and reduced autophagic flux context-dependently.
  • Afatinib alone induced autophagy, but its combination with MRT68921 showed synergy at select concentrations.
  • Combination treatments impaired spheroid reattachment and overall viability.
  • MRT68921 alone significantly reduced viability across multiple EOC models, including patient-derived organoids.

Abstract

Background/Objectives: Epithelial ovarian cancer (EOC) is often diagnosed at advanced stages, with metastasis driven by spheroid dissemination within the peritoneal cavity. We previously demonstrated that autophagy supports spheroid cell survival and suggest that it contributes to chemoresistance. Unc-51-like autophagy activating kinase 1 (ULK1), a key regulator of autophagy, has emerged as a promising therapeutic target. Here, we evaluated the effects of ULK1 inhibition via MRT68921, alone and in combination with afatinib—a tyrosine kinase inhibitor (TKI) known to induce pro-survival autophagy—in EOC. Methods: High-grade serous (HGSOC) and ovarian clear cell carcinoma (OCCC) cell lines were cultured under adherent and spheroid conditions. Immunoblotting confirmed on-target effects and modulation of autophagy. Autophagic flux was assessed using mCherry-eGFP-LC3 reporter assays. We assessed 96 dose combinations of MRT68921 and afatinib using drug combination matrices, with synergy evaluated via Synergy Finder. Promising combinations were evaluated across multiple EOC spheroid models and patient ascites-derived organoids. Results: MRT68921 inhibited ULK1 activity and reduced autophagic flux in a context-dependent manner while afatinib alone induced autophagy. Their combination produced synergistic effects at select concentrations, impairing spheroid reattachment and viability. However, MRT68921 alone significantly reduced viability across multiple EOC models, including patient ascites-derived organoids. Conclusions: This study is the first to evaluate the combined effects of MRT68921 and afatinib in epithelial ovarian cancer. Our findings demonstrate that ULK1 inhibition via MRT68921 consistently reduces cell viability across multiple ovarian cancer models, supporting ULK1 as a promising therapeutic target. In contrast, combination with afatinib produced limited and context-dependent effects, indicating that further investigation is needed to identify optimal combination strategies for ULK1-targeted therapies.

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Cite This Study

Johnston et al. (2026) studied this question.

synapsesocial.com/papers/6971bdad642b1836717e25a7https://doi.org/10.3390/cancers18020307
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