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Updated: Mar 14, 2026

High-Throughput Dissociation and Orthotopic Implantation of Breast Cancer Patient-Derived Xenografts
Published on: December 20, 2024
Patient-derived tumour xenografts for breast cancer drug discovery
John W Cassidy1, Ankita S Batra2, Wendy Greenwood2
1Breast Cancer Functional GenomicsCRUK Cambridge Research Institute, Li Ka Shing Centre, University of Cambridge, Cambridge, UK john.cassidy@cruk.cam.ac.uk alejandra.bruna@cruk.cam.ac.uk.
Abstract:
Despite remarkable advances in our understanding of the drivers of human malignancies, new targeted therapies often fail to show sufficient efficacy in clinical trials. Indeed, the cost of bringing a new agent to market has risen substantially in the last several decades, in part fuelled by extensive reliance on preclinical models that fail to accurately reflect tumour heterogeneity. To halt unsustainable rates of attrition in the drug discovery process, we must develop a new generation of preclinical models capable of reflecting the heterogeneity of varying degrees of complexity found in human cancers. Patient-derived tumour xenograft (PDTX) models prevail as arguably the most powerful in this regard because they capture cancer's heterogeneous nature. Herein, we review current breast cancer models and their use in the drug discovery process, before discussing best practices for developing a highly annotated cohort of PDTX models. We describe the importance of extensive multidimensional molecular and functional characterisation of models and combination drug-drug screens to identify complex biomarkers of drug resistance and response. We reflect on our own experiences and propose the use of a cost-effective intermediate pharmacogenomic platform (the PDTX-PDTC platform) for breast cancer drug and biomarker discovery. We discuss the limitations and unanswered questions of PDTX models; yet, still strongly envision that their use in basic and translational research will dramatically change our understanding of breast cancer biology and how to more effectively treat it.
Insights
Patient-derived tumor xenograft (PDTX) models are crucial for advancing breast cancer research and drug discovery. These models better reflect tumor heterogeneity, improving the development of targeted therapies and biomarkers.
Area of Science:
- Oncology
- Translational Research
- Drug Discovery
Background:
- Targeted cancer therapies often fail in clinical trials due to reliance on preclinical models that do not capture tumor heterogeneity.
- The cost of drug development is increasing, necessitating more accurate preclinical models.
Purpose of the Study:
- To review current breast cancer models and their application in drug discovery.
- To discuss best practices for developing and utilizing patient-derived tumor xenograft (PDTX) models for enhanced therapeutic development.
Main Methods:
- Review of existing breast cancer models, focusing on PDTX models.
- Discussion of multidimensional molecular and functional characterization of PDTX models.
- Proposal of a cost-effective pharmacogenomic platform (PDTX-PDTC) for drug and biomarker discovery.
Main Results:
- PDTX models are powerful tools for capturing cancer's heterogeneous nature.
- Multidimensional characterization and drug-drug screens are vital for identifying resistance and response biomarkers.
- The proposed PDTX-PDTC platform offers a cost-effective approach for breast cancer research.
Conclusions:
- PDTX models are essential for advancing breast cancer research and improving targeted therapy efficacy.
- Further development and application of PDTX models will significantly impact our understanding of breast cancer biology and treatment strategies.
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