Why the study?
Anthracyclines are effective chemotherapeutics whose use carries a significant risk of cardiovascular toxicities, cardiomyopathy, and heart failure, with relevant molecular mechanisms impacting strategies to diagnose, prevent, and treat toxicity.
What are the molecular mechanisms of anthracycline-induced cardiovascular toxicity?
What are the molecular mechanisms of anthracycline-induced cardiovascular toxicity?
This review summarizes the molecular mechanisms of anthracycline-induced cardiovascular toxicity, highlighting pathways like topoisomerase II and ROS that are relevant for diagnosis, prevention, and treatment.
May inform mechanism-based prevention strategies; extends molecular insights but leaves clinical translation open.
Anthracyclines are effective chemotherapeutic agents, commonly used in the treatment of a variety of hematologic malignancies and solid tumors. However, their use is associated with a significant risk of cardiovascular toxicities and may result in cardiomyopathy and heart failure. Cardiomyocyte toxicity occurs via multiple molecular mechanisms, including topoisomerase II-mediated DNA double-strand breaks and reactive oxygen species (ROS) formation via effects on the mitochondrial electron transport chain, NADPH oxidases (NOXs), and nitric oxide synthases (NOSs). Excess ROS may cause mitochondrial dysfunction, endoplasmic reticulum stress, calcium release, and DNA damage, which may result in cardiomyocyte dysfunction or cell death. These pathophysiologic mechanisms cause tissue-level manifestations, including characteristic histopathologic changes (myocyte vacuolization, myofibrillar loss, and cell death), atrophy and fibrosis, and organ-level manifestations including cardiac contractile dysfunction and vascular dysfunction. In addition, these mechanisms are relevant to current and emerging strategies to diagnose, prevent, and treat anthracycline-induced cardiomyopathy. This review details the established and emerging data regarding the molecular mechanisms of anthracycline-induced cardiovascular toxicity.
No takes yet. Share an insight, caveat, or question.
Narezkina et al. (2021) studied this question.