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Establishment and Culture of Patient-Derived Breast Organoids
Published on: February 17, 2023
Patient-Derived Organoid-Based CRISPR Screens in Cancer Research: Applications, Advances, and Challenges
Julianne du Plessis1, Aadilah Omar1
1Department of Internal Medicine, University of the Witwatersrand, Johannesburg, South Africa.
Abstract:
Patient-derived organoids (PDOs) have emerged as physiologically relevant cancer models that preserve key genetic, histological, and functional features of the tumors from which they are derived. In parallel, CRISPR-based perturbation technologies have transformed functional genomics by enabling scalable interrogation of gene function. Their integration provides a powerful framework for identifying cancer dependencies, modeling oncogenic evolution, and investigating mechanisms of drug response and resistance in patient-relevant settings. This review examines how CRISPR knockout, CRISPR interference/activation, and precision editing approaches have been applied in PDO systems to uncover context-specific vulnerabilities, reconstruct mutational trajectories, and study tumor heterogeneity. We further compare pooled and arrayed screening formats and discuss what is uniquely enabled by performing CRISPR screens in organoids rather than conventional 2D models. Particular emphasis is placed on the technical and analytical constraints of organoid-based screening, including variable editing efficiency, clonal bottlenecks, biological heterogeneity, and limited scalability. We argue that the major value of organoid-based CRISPR screening lies in its ability to identify functionally actionable cancer vulnerabilities in a patient-contextualized model, while also introducing methodological challenges that must be addressed for robust clinical translation.
Insights
Patient-derived organoids combined with CRISPR gene editing offer powerful cancer research tools. This approach identifies patient-specific vulnerabilities and drug resistance mechanisms, advancing personalized cancer therapy.
Area of Science:
- Oncology
- Genomics
- Biotechnology
Background:
- Patient-derived organoids (PDOs) accurately model patient tumors.
- CRISPR gene editing enables scalable functional genomics.
Purpose of the Study:
- Review the application of CRISPR perturbation technologies in PDOs.
- Identify cancer dependencies, oncogenic evolution, and drug resistance mechanisms.
- Compare CRISPR screening formats in PDOs versus 2D models.
Main Methods:
- CRISPR knockout, interference/activation, and precision editing in PDOs.
- Pooled and arrayed CRISPR screening formats.
- Analysis of technical and analytical constraints.
Main Results:
- CRISPR in PDOs uncovers context-specific vulnerabilities and reconstructs mutational trajectories.
- Organoid models reveal unique insights compared to 2D systems.
- Identified challenges include variable editing efficiency and scalability.
Conclusions:
- CRISPR screening in PDOs is valuable for identifying actionable cancer vulnerabilities in patient-specific models.
- Methodological challenges require addressing for clinical translation.
- This integration advances personalized cancer medicine research.
