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Updated: Nov 7, 2025

Establishment of a Co-culture System of Patient-Derived Colorectal Tumor Organoids and Tumor-Infiltrating Lymphocytes (TILs)
Published on: June 27, 2025
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.
Abstract:
Colorectal cancer is the second leading cause of cancer death worldwide. Significant advances in the molecular mechanisms underlying colorectal cancer have been made; however, the clinical approval of new drugs faces many challenges. Drug discovery is a lengthy process causing a rapid increase in global health care costs. Patient-derived tumour organoids are considered preclinical models with the potential for preclinical drug screening, prediction of patient outcomes, and guiding optimized therapy strategies at an individual level. Combining microfluidic technology with 3D tumour organoid models to recapitulate tumour organization and in vivo functions led to the development of an appropriate preclinical tumour model, organoid-on-a-chip, paving the way for personalized cancer medicine. Herein, a low-cost microfluidic device suitable for culturing and expanding organoids, OrganoidChip, was developed. Patient-derived colorectal cancer organoids were cultured within OrganoidChip, and their viability and proliferative activity increased significantly. No significant differences were verified in the organoids' response to 5-fluorouracil (5-FU) treatment on-chip and on-plate. However, the culture within the OrganoidChip led to a significant increase in colorectal cancer organoid-forming efficiency and overall size compared with conventional culture on a 24-well plate. Interestingly, early-stage and late-stage organoids were predominantly observed on-plate and within the OrganoidChip, respectively. The OrganoidChip thus has the potential to generate in vivo-like organotypic structures for disease modelling and drug screening applications.
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.

