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.

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.