@article{10.37349/etat.2026.1002401,
abstract = {With national breast cancer screening programs leading to earlier diagnosis and improved treatments, more women are achieving long-term remission. However, this has resulted in rising rates of cardiotoxicity in breast cancer survivors consequent to their cancer therapies. Anthracyclines, a cornerstone treatment in breast cancer, carry a significant risk of short- and long-term cardiotoxicity through inhibition of topoisomerase II, preventing DNA repair and increasing oxidative stress. This most commonly manifests in the form of left ventricular (LV) systolic dysfunction or heart failure, and in severe cases, death. Many of the other treatments, including taxanes, cyclophosphamide, human epidermal growth factor receptor 2 inhibitors, immunotherapies, hormone therapies, and radiotherapy, also carry a risk of cardiac injury in the form of heart failure, arrhythmias, myocarditis, and pericardial disease. Surveillance has traditionally been performed by monitoring LV ejection fraction by transthoracic echocardiography. However, this has been found to be a late marker of cardiotoxicity, with damage potentially irreversible, and may reflect a missed opportunity for early intervention. Research has focused on identifying cardiac biomarkers and advanced imaging techniques, including strain analysis, to detect subclinical myocardial injury or dysfunction prior to irreversible damage, with LV global longitudinal strain a sensitive marker of subclinical LV systolic dysfunction and superior predictor of future cardiovascular events. Further research is needed to establish standardized guidelines on surveillance and management of this vulnerable patient cohort.},
author = {Emerson, Peter and Thomas, Liza},
doi = {10.37349/etat.2026.1002401},
journal = {Exploration of Targeted Anti-tumor Therapy},
elocation-id = {1002401},
title = {Cardiotoxicity in breast cancer patients treated with chemoradiotherapy},
url = {https://www.explorationpub.com/Journals/etat/Article/1002401},
volume = {7},
year = {2026}
}