Establishment of Colorectal Cancer Organoids in Microfluidic-Based System

Diana Pinho1, Denis Santos1, Ana Vila2

  • 1International Iberian Nanotechnology Laboratory, Department of Nanoelectronics Engineering, 4715-330 Braga, Portugal.

Micromachines
|April 30, 2021
PubMed

Insights

A novel microfluidic device, OrganoidChip, enhances colorectal cancer organoid growth and organoid-forming efficiency. This low-cost model shows potential for personalized cancer medicine and drug screening.

Area of Science:

  • Oncology
  • Biotechnology
  • Microfluidics

Background:

  • Colorectal cancer (CRC) is a leading cause of cancer mortality globally.
  • Current drug discovery for CRC is time-consuming and costly.
  • Patient-derived tumor organoids offer promise for preclinical drug screening and personalized therapy.

Purpose of the Study:

  • To develop a low-cost microfluidic device (OrganoidChip) for culturing and expanding patient-derived colorectal cancer organoids.
  • To evaluate the efficacy of OrganoidChip as a preclinical model for colorectal cancer research and drug screening.
  • To compare organoid growth and drug response in OrganoidChip versus traditional plate cultures.

Main Methods:

  • Development of a low-cost microfluidic device, OrganoidChip.
  • Culture of patient-derived colorectal cancer organoids within OrganoidChip and on standard 24-well plates.
  • Assessment of organoid viability, proliferation, organoid-forming efficiency, size, and response to 5-fluorouracil (5-FU) treatment.

Main Results:

  • OrganoidChip significantly increased colorectal cancer organoid viability, proliferative activity, organoid-forming efficiency, and overall size compared to plate cultures.
  • No significant difference in 5-FU drug response was observed between on-chip and on-plate cultures.
  • OrganoidChip culture promoted the development of late-stage organoid structures.

Conclusions:

  • The OrganoidChip is a cost-effective microfluidic platform that enhances colorectal cancer organoid development.
  • OrganoidChip shows potential for generating in vivo-like organotypic structures for disease modeling and drug screening.
  • This technology advances personalized cancer medicine by improving preclinical models.

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