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Updated: Apr 27, 2026

Isolation and Characterization of Patient-derived Pancreatic Ductal Adenocarcinoma Organoid Models
Published on: January 14, 2020
Pancreatic cancer organotypics: High throughput, preclinical models for pharmacological agent evaluation
Stacey J Coleman1, Jennifer Watt1, Prabhu Arumugam1
1Stacey J Coleman, Jennifer Watt, Prabhu Arumugam, Leonardo Solaini, Elisabeta Carapuca, Mohammed Ghallab, Richard P Grose, Hemant M Kocher, Centre for Tumour Biology, Barts Cancer Institute - a CR-UK Centre of Excellence, Queen Mary University of London, John Vane Science Centre, Charterhouse Square, London EC1M 6BQ, United Kingdom.
Abstract:
Pancreatic cancer carries a terrible prognosis, as the fourth most common cause of cancer death in the Western world. There is clearly a need for new therapies to treat this disease. One of the reasons no effective treatment has been developed in the past decade may in part, be explained by the diverse influences exerted by the tumour microenvironment. The tumour stroma cross-talk in pancreatic cancer can influence chemotherapy delivery and response rate. Thus, appropriate preclinical in vitro models which can bridge simple 2D in vitro cell based assays and complex in vivo models are required to understand the biology of pancreatic cancer. Here we discuss the evolution of 3D organotypic models, which recapitulare the morphological and functional features of pancreatic ductal adenocarcinoma (PDAC). Organotypic cultures are a valid high throughput preclinical in vitro model that maybe a useful tool to help establish new therapies for PDAC. A huge advantage of the organotypic model system is that any component of the model can be easily modulated in a short time-frame. This allows new therapies that can target the cancer, the stromal compartment or both to be tested in a model that mirrors the in vivo situation. A major challenge for the future is to expand the cellular composition of the organotypic model to further develop a system that mimics the PDAC environment more precisely. We discuss how this challenge is being met to increase our understanding of this terrible disease and develop novel therapies that can improve the prognosis for patients.
Insights
Developing novel pancreatic cancer therapies requires better preclinical models. Three-dimensional organotypic cultures mimic pancreatic ductal adenocarcinoma (PDAC) biology, aiding the development of new treatments targeting cancer and its microenvironment.
Area of Science:
- Oncology
- Cancer Biology
- Translational Research
Background:
- Pancreatic cancer has a poor prognosis, necessitating new therapeutic strategies.
- The tumor microenvironment significantly influences pancreatic cancer progression and treatment response.
- Existing preclinical models often fail to fully recapitulate the complexity of pancreatic ductal adenocarcinoma (PDAC).
Purpose of the Study:
- To discuss the evolution and utility of 3D organotypic models for pancreatic cancer research.
- To highlight the advantages of organotypic cultures in preclinical drug screening.
- To address future challenges in refining these models for improved PDAC understanding.
Main Methods:
- Review of the development and application of 3D organotypic models in pancreatic cancer research.
- Discussion of how organotypic cultures mimic the morphological and functional aspects of PDAC.
- Analysis of the adaptability of organotypic models for testing targeted therapies.
Main Results:
- Organotypic cultures effectively replicate key features of pancreatic ductal adenocarcinoma (PDAC).
- These models allow for high-throughput preclinical testing of therapeutic strategies.
- The modular nature of organotypic systems facilitates rapid modulation of model components.
Conclusions:
- 3D organotypic models are valuable preclinical tools for advancing pancreatic cancer therapy development.
- Further expansion of cellular complexity in organotypic models will enhance their mimicry of the PDAC tumor microenvironment.
- These advanced models hold promise for improving patient outcomes in pancreatic cancer.
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