Modeling Cardiotoxicity in Pediatric Oncology Patients Using Patient-Specific iPSC-Derived Cardiomyocytes Reveals Downregulation of Cardioprotective microRNAs

Author:

Reinal Ignacio1,Ontoria-Oviedo Imelda1ORCID,Selva Marta1ORCID,Casini Marilù1ORCID,Peiró-Molina Esteban12,Fambuena-Santos Carlos3ORCID,Climent Andreu M.3,Balaguer Julia24ORCID,Cañete Adela245,Mora Jaume6ORCID,Raya Ángel78910ORCID,Sepúlveda Pilar121112ORCID

Affiliation:

1. Regenerative Medicine and Heart Transplantation Unit, Health Research Institute Hospital la Fe, 46026 Valencia, Spain

2. Hospital Universitari i Politècnic La Fe, 46026 Valencia, Spain

3. ITACA Institute, Universitat Politècnica de València, 46026 Valencia, Spain

4. Transtational Research in Cancer Unit-Pediatric Oncology, Health Research Institute Hospital La Fe, 46026 Valencia, Spain

5. Department of Pediatrics, University of Valencia, 46010 Valencia, Spain

6. Oncology Service, Hospital Sant Joan de Déu, 08950 Esplugues de Llobregat, Spain

7. Regenerative Medicine Program, Bellvitge Biomedical Research Institute (IDIBELL), L’Hospitalet de Llobregat, 08908 Barcelona, Spain

8. Program for Clinical Translation of Regenerative Medicine in Catalonia—P-[CMRC], L’Hospitalet de Llobregat, 08908 Barcelona, Spain

9. Centro de Investigación Biomédica en Red Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Carlos III Institute of Health, 28029 Madrid, Spain

10. Institució Catalana de Recerca i Estudis Avançats (ICREA), 08010 Barcelona, Spain

11. Centro de Investigación Biomédica en Red Enfermedades Cardiovasculares (CIBERCV), Carlos III Institute of Health, 28029 Madrid, Spain

12. Department of Pathology, University of Valencia, 46010 Valencia, Spain

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.

Funder

Instituto de Salud Carlos III

ETICS TERCEL

Publisher

MDPI AG

Subject

Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology

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