Multifunctional profiling of triple-negative breast cancer patient-derived tumoroids for disease modeling

Evan F Cromwell1, Oksana Sirenko2, Ekaterina Nikolov1

  • 1Protein Fluidics, Inc., USA.

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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