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September 29, 2025Cancer Research0 citations

Abstract B084: Development of 3D organoid models from patient-derived conditionally reprogrammed cells in pancreatic cancer

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GLGalam LeemJKJin Su KimSBSeungmin Bang

Key Points

  • The 3D organoid models retained molecular features of patient-derived cells and enhanced drug response accuracy.
  • Comparative analysis showed the 3D organoids better represented clinical responses than traditional 2D models.
  • 3D organoid cultures were developed using a Matrigel matrix, preserving the intrinsic properties of the cells.
  • This approach emphasizes significance for precision oncology, addressing limitations of conventional culture models.

Abstract

Abstract Background: Pancreatic cancer is a highly lethal malignancy with limited therapeutic responsiveness. Despite recent advances, systemic chemotherapy remains the standard treatment for over 80% of patients, in the absence of established biomarkers to guide drug selection. Conventional two-dimensional (2D) culture models inadequately replicate the tumor microenvironment, underscoring the need for more physiologically relevant platforms such as three-dimensional (3D) organoid models. Methods: We established 3D organoid cultures from patient-derived conditionally reprogrammed cells (CRCs), which were initially propagated under 2D conditions. The 3D CRC organoids were developed using a Matrigel-based matrix without the addition of organoid-specific medium components, aiming to preserve the cells’ intrinsic molecular subtypes. We conducted morphological, molecular, and drug sensitivity analyses to compare the performance of the 3D CRC organoids with their 2D counterparts and clinical treatment outcomes. Results: The 3D CRC organoids retained the molecular features and mutational landscapes of their parent CRCs and exhibited distinct morphologies reflective of tumor stage and differentiation. Drug response profiling to gemcitabine plus nab-paclitaxel (Abraxane) and FOLFIRINOX showed that the 3D organoids more faithfully recapitulated patient clinical responses than the 2D models. Notably, the 3D organoids exhibited higher IC50 values, consistent with the enhanced structural complexity and drug penetration barriers characteristic of in vivo tumors. Conclusion: Matrigel-based 3D organoid culture systems offer a robust and clinically relevant platform for preclinical drug evaluation, addressing key limitations of conventional 2D models. While more resource- and time-intensive, the integration of 2D and 3D models enables efficient drug screening and validation. This strategy holds significant potential for biomarker discovery and advancing precision oncology in pancreatic cancer. Citation Format: Galam Leem, Jin Su Kim, Seungmin Bang. Development of 3D organoid models from patient-derived conditionally reprogrammed cells in pancreatic cancer abstract. In: Proceedings of the AACR Special Conference in Cancer Research: Advances in Pancreatic Cancer Research—Emerging Science Driving Transformative Solutions; Boston, MA; 2025 Sep 28-Oct 1; Boston, MA. Philadelphia (PA): AACR; Cancer Res 2025;85 (18Suppl₃): Abstract nr B084.

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Cite This Study

Leem et al. (2025) studied this question.

synapsesocial.com/papers/68da58e0c1728099cfd11802https://doi.org/10.1158/1538-7445.pancreatic25-b084
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Also Consider

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

  1. 1Abstract SY36-02: Human cancer models: From patient-derived systems to clinical translation2026
  2. 2Abstract A023: Patient-Derived Organoid Cultures for Personalized Therapies and Targeted Drug Screening Applications2024 · 1 citations
  3. 3Abstract B093: The evaluation of the gene expression profile of pancreatic ductal adenocarcinomas (PDACs) in 3D cell culture vs in vivo and development of new 3D PDACs' models for an evaluation of anti-cancer drug testing2024
  4. 4Abstract 3412: Next-generation cancer organoids 2.0 in precision cancer medicine: Patient-derived pancreatic ductal adenocarcinoma organoids model tells not only drug sensitivity but also complexity of tumor biology2026
  5. 5Abstract B086: Patient-derived pancreatic tumor organoids as a tool to evaluate cancer stem cell populations and their role in therapeutic resistance2024 · 2 citations