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Updated: Nov 4, 2025

Orthotopic Transplantation of Breast Tumors as Preclinical Models for Breast Cancer
Published on: May 18, 2020
Precision medicine in breast cancer: From clinical trials to clinical practice
Edoardo Crimini1, Matteo Repetto1, Philippe Aftimos2
1European Institute of Oncology, IRCCS, 20141 Milan, Italy; Department of Oncology and Hematology (DIPO), University of Milan, 20122 Milan, Italy.
Introduction:
Breast cancer (BC) is the most common cancer in women and, despite the undeniable improvements in the outcome of these patients obtained in the last decade, the discovery and the validation of new actionable molecular targets represent a priority. ESCAT permits to rank molecular alterations in different classes according to their evidence of actionability in a specific cancer type, assisting clinicians in their therapeutical decisions. MAIN: ERBB2, PIK3CA and germline BRCA1/2 alterations are biomarkers prospectively validated in BC, driving the selection of targeted therapies, and are therefore classified in the highest level of evidence (Ia). Agnostic biomarkers, namely microsatellite instability, NTRK fusions and high tumor mutational burden, demonstrated similar activity across different tumor types and are consequently ranked in tier Ic. In tier II are classified alterations that still need confirmatory prospective studies but for which evidence of efficacy is available. Somatic BRCA1/2 mutations, germline PALB2 mutations, HER2-low expression, ERBB2 mutations, PTEN deletions, AKT1 mutations, ESR1 resistance mutations satisfy the requirements to be classified in this tier. In tier III are ranked various molecular alterations for which there is evidence of actionability in other tumors (IIIa) or that have similar functional impact in the same gene or pathway of a tier I alteration, without clinical data (IIIb). In tier IV are listed the molecular alterations for which only preclinical studies are available.
Conclusion:
In this review we report the most relevant molecular targets in BC, ordered pursuant to their pathway and classified in concordance with ESCAT.
Insights
This review outlines key molecular targets for breast cancer (BC), classifying them by evidence of actionability using the ESCAT system. Understanding these targets aids clinicians in selecting effective targeted therapies for BC patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Breast cancer (BC) remains a leading cause of cancer in women, necessitating continuous discovery of actionable molecular targets.
- Despite advancements, identifying and validating new therapeutic targets is crucial for improving patient outcomes.
- The ESCAT system provides a framework for classifying molecular alterations based on their therapeutic actionability in specific cancers.
Purpose of the Study:
- To review and classify the most relevant molecular targets in breast cancer.
- To organize these targets according to their pathways and evidence of actionability.
- To assist clinicians in therapeutic decision-making for breast cancer patients.
Main Methods:
- Literature review of molecular alterations in breast cancer.
- Classification of molecular targets based on the ESCAT system's evidence tiers.
- Organization of targets by pathway and evidence level.
Main Results:
- ERBB2, PIK3CA, and germline BRCA1/2 alterations are classified as tier Ia (highest evidence) for targeted therapy selection in BC.
- Agnostic biomarkers like MSI, NTRK fusions, and high tumor mutational burden are tier Ic.
- Tier II includes alterations with available efficacy evidence needing prospective confirmation, such as somatic BRCA1/2 mutations and HER2-low expression.
Conclusions:
- This review presents a comprehensive classification of actionable molecular targets in breast cancer.
- The ESCAT framework aids in stratifying targets by evidence level, guiding clinical treatment decisions.
- Understanding these molecular targets and their classification is vital for advancing precision medicine in breast cancer care.
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