ArticleAntioxidants (Basel, Switzerland)2023
Modeling Cardiotoxicity in Pediatric Oncology Patients Using Patient-Specific iPSC-Derived Cardiomyocytes Reveals Downregulation of Cardioprotective microRNAs.
Article in Antioxidants (Basel, Switzerland), 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed, 5 citations in OpenAlex.
- The Therapeutic Potential of Stem Cell Therapy for Doxorubicin-Induced Cardiotoxicity: A Narrative Review.Health science reports · 2026Article
- Impact of CaInternational journal of molecular sciences · 2026Review
- Cardioprotective strategies of ACEi/ARBs and beta-blockers against anthracycline-induced cardiotoxicity in pediatric cancer survivors: a systematic review.Cardio-oncology (London, England) · 2026Review
- Emerging Strategies for the Prevention of Chemotherapy-Induced Cardiotoxicity in Paediatric Cancer Patients: Advances and Future Perspectives.Pharmaceuticals (Basel, Switzerland) · 2025Review
- Update on preclinical models of cancer therapy-related cardiac dysfunction: Challenges and perspectives. A scientific statement of the Heart Failure Association (HFA) of the ESC, the ESC Council of Cardio-Oncology, and the ESC Working Group on Cellular Biology of the Heart.European journal of heart failure · 2025Review
- Synergistic miRNA Combinations Mitigate Doxorubicin-Induced Cardiotoxicity: Are We Ready for Clinical Translation?JACC. CardioOncology · 2025Article
- Transforming Cardiotoxicity Detection in Cancer Therapies: The Promise of MicroRNAs as Precision Biomarkers.International journal of molecular sciences · 2024Review
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Authors and funding
12 authors at 6 institutions in 1 country.
Funding
Abstract
Anthracyclines are widely used in the treatment of many solid cancers, but their efficacy is limited by cardiotoxicity. As the number of pediatric cancer survivors continues to rise, there has been a concomitant increase in people living with anthracycline-induced cardiotoxicity. Accordingly, there is an ongoing need for new models to better understand the pathophysiological mechanisms of anthracycline-induced cardiac damage. Here we generated induced pluripotent stem cells (iPSCs) from two pediatric oncology patients with acute cardiotoxicity induced by anthracyclines and differentiated them to ventricular cardiomyocytes (hiPSC-CMs). Comparative analysis of these cells (CTX hiPSC-CMs) and control hiPSC-CMs revealed that the former were significantly more sensitive to cell injury and death from the anthracycline doxorubicin (DOX), as measured by viability analysis, cleaved caspase 3 expression, oxidative stress, genomic and mitochondrial damage and sarcomeric disorganization. The expression of several mRNAs involved in structural integrity and inflammatory response were also differentially affected by DOX. Functionally, optical mapping analysis revealed higher arrythmia complexity after DOX treatment in CTX iPSC-CMs. Finally, using a panel of previously identified microRNAs associated with cardioprotection, we identified lower levels of miR-22-3p, miR-30b-5p, miR-90b-3p and miR-4732-3p in CTX iPSC-CMs under basal conditions. Our study provides valuable phenotype information for cellular models of cardiotoxicity and highlights the significance of using patient-derived cardiomyocytes for studying the associated pathogenic mechanisms.
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