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Updated: Oct 4, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Multifunctional profiling of triple-negative breast cancer patient-derived tumoroids for disease modeling
Evan F Cromwell1, Oksana Sirenko2, Ekaterina Nikolov1
1Protein Fluidics, Inc., USA.
Abstract:
3D cell models derived from patient tumors are highly translational tools that can recapitulate the complex genetic and molecular compositions of solid cancers and accelerate identification of drug targets and drug testing. However, the complexity of performing assays with such models remains a hurdle for their wider adoption. In the present study, we describe methods for processing and multi-functional profiling of tumoroid samples to test compound effects using a novel flowchip system in combination with high content imaging and metabolite analysis. Tumoroids were formed from primary cells isolated from a patient-derived tumor explant, TU-BcX-4IC, that represents metaplastic breast cancer with a triple-negative breast cancer subtype. Assays were performed in a microfluidics-based device (Pu⋅MA System) that allows automated exchange of media and treatments of tumoroids in a tissue culture incubator environment. Multi-functional assay profiling was performed on tumoroids treated with anti-cancer drugs. High-content imaging was used to evaluate drug effects on cell viability and expression of E-cadherin and CD44. Lactate secretion was used to measure tumoroid metabolism as a function of time and drug concentration. Observed responses included loss of cell viability, decrease in E-cadherin expression, and increase of lactate production. Importantly, the tumoroids were sensitive to romidepsin and trametinib, while showed significantly reduced sensitivity to paclitaxel and cytarabine, consistent with the primary tumor response. These methods for multi-parametric profiling of drug effects in patient-derived tumoroids provide an in depth understanding of drug sensitivity of individual tumor types, with important implications for the future development of personalized medicine.
Insights
Patient-derived tumoroids offer a powerful model for cancer research. New methods using flowchip systems enable comprehensive drug testing and personalized medicine development for solid tumors.
Area of Science:
- Oncology
- Biotechnology
- Drug Discovery
Background:
- Three-dimensional (3D) cell models from patient tumors are valuable for cancer research.
- Challenges in assay complexity hinder the widespread use of these translational models.
Purpose of the Study:
- To develop and validate methods for processing and multi-functional profiling of patient-derived tumoroids.
- To assess anti-cancer compound effects using a novel microfluidics-based system.
Main Methods:
- Utilized patient-derived tumoroids (TU-BcX-4IC) from metaplastic breast cancer.
- Employed a microfluidics-based Pu⋅MA System for automated treatment and media exchange.
- Integrated high-content imaging and metabolite analysis for multi-parametric profiling.
Main Results:
- Demonstrated drug effects on tumoroid cell viability, E-cadherin, and CD44 expression.
- Measured metabolic changes via lactate secretion in response to drug treatment.
- Observed differential sensitivity to various anti-cancer drugs, aligning with primary tumor response.
Conclusions:
- Developed an efficient workflow for multi-parametric drug profiling in patient-derived tumoroids.
- Highlighted the potential of these methods for advancing personalized medicine strategies.
- Provided insights into drug sensitivity for specific tumor subtypes.
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