Related Experiment Video
Updated: May 28, 2026

Proton Therapy Delivery and Its Clinical Application in Select Solid Tumor Malignancies
Published on: February 6, 2019
Bradyarrhythmias Associated with Oncologic Treatment-An Updated Review
Jakub Stępień1,2, Julita Stępniak-Bielecka1,2, Anna Ciołek1,2
1Department of Cardiooncology, Medical University of Lodz, 90-647 Lodz, Poland.
Abstract:
Background/Objectives: Bradyarrhythmias are an under-recognized component of cancer therapy-related cardiovascular toxicity. As survivorship improves and exposure to targeted and immune therapies increases, clinicians increasingly face clinically relevant sinus node dysfunction and atrioventricular (AV) conduction disease that may interrupt otherwise effective oncologic treatment. We aimed to synthesize evidence on the incidence, phenotype, mechanisms, and management of bradyarrhythmias across major anticancer drug classes. Methods: We performed a narrative review of PubMed and major clinical guidelines, prioritizing prospective trials and large observational cohorts for incidence estimates, and case reports/series for phenotype and management details. Regulatory prescribing information and pharmacovigilance datasets were consulted to complement trial data. Evidence was organized by drug class and prototypical agents. Results: Bradyarrhythmias ranged from transient sinus bradycardia to high-grade atrioventricular block requiring pacing. The most severe phenotype was associated with immune checkpoint inhibitor-related myocarditis, whereas ALK inhibitors, thalidomide, antimetabolites-particularly 5-fluorouracil-and taxanes showed more reproducible signals for sinus bradycardia. Bradyarrhythmic events were also described with proteasome inhibitors, BTK (Bruton tyrosine kinase) inhibitors, anthracyclines, platinum compounds, high-dose cyclophosphamide, corticosteroids, and other agents, but the strength of evidence varied from regulatory or cohort-based data to isolated case reports. Conclusions: Bradyarrhythmias during cancer therapy are heterogeneous but clinically consequential. Recognition of class-specific patterns, proactive ECG/electrolyte monitoring, and context-specific management (e.g., drug interruption/dose modification, pacing when indicated, risk-factor control) can minimize therapy interruption while maintaining oncologic efficacy.
More Related Videos
12:45Benefits of Cardiac Resynchronization Therapy in an Asynchronous Heart Failure Model Induced by Left Bundle Branch Ablation and Rapid Pacing
Published on: December 11, 2017
14:24Percutaneous Contrast Echocardiography-guided Intramyocardial Injection and Cell Delivery in a Large Preclinical Model
Published on: January 21, 2018
Related Concept Videos
Dysrhythmias IV: Characteristics of Bradyarrhythmias
Dysrhythmias VI: Management of Dysrhythmias
Dysrhythmias VII: Nursing Management of Dysrhythmias
Mechanism of Cardiac Arrhythmias
Dysrhythmias II: Classification of Tachyarrhythmias
Decreased pulse rate
There are specific risk factors that can elevate the likelihood of developing bradycardia. Advanced age is a significant factor, with bradycardia...