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1. Human frataxin, the Friedreich ataxia deficient protein, interacts with mitochondrial respiratory chain

2. Patient-specific primary and pluripotent stem cell-derived stromal cells recapitulate key aspects of arrhythmogenic cardiomyopathy

3. Editorial: Advances in pluripotent stem cell-based in vitro models of the human heart for cardiac physiology, disease modeling and clinical applications

4. RagD auto-activating mutations impair MiT/TFE activity in kidney tubulopathy and cardiomyopathy syndrome

5. Heart and kidney organoids maintain organ-specific function in a microfluidic system

6. Correction: Human frataxin, the Friedreich ataxia deficient protein, interacts with mitochondrial respiratory chain

8. Generation of four human induced pluripotent stem cell lines from COVID-19 hospitalized patients with increased levels of cardiac Troponin in the acute infection phase developing or not myocarditis

9. Advance in Genomics of Rare Genetic Diseases

10. Toward Human Models of Cardiorenal Syndrome in vitro

11. Inflammation in the Pathogenesis of Arrhythmogenic Cardiomyopathy: Secondary Event or Active Driver?

12. Generation of human induced pluripotent stem cell line EURACi006-A and its isogenic gene-corrected line EURACi006-A-1 from an arrhythmogenic cardiomyopathy patient carrying the c.1643delG PKP2 mutation

13. Generation of three human induced pluripotent stem cell lines, LUMCi024-A, LUMCi025-A, and LUMCi026-A, from two patients with combined oxidative phosphorylation deficiency 8 and a related control

14. Mechanotransduction and Adrenergic Stimulation in Arrhythmogenic Cardiomyopathy: An Overview of in vitro and in vivo Models

15. Generation of human induced pluripotent stem cell line LUMCi027-A and its isogenic gene-corrected line from a patient affected by arrhythmogenic cardiomyopathy and carrying the c.2013delC PKP2 mutation

16. Generation of two human induced pluripotent stem cell lines, LUMCi020-A and LUMCi021-A, from two patients with Catecholaminergic Polymorphic Ventricular Tachycardia carrying heterozygous mutations in the RYR2 gene

17. Human Pluripotent Stem Cell Differentiation into Functional Epicardial Progenitor Cells

18. A new hERG allosteric modulator rescues genetic and drug‐induced long‐QT syndrome phenotypes in cardiomyocytes from isogenic pairs of patient induced pluripotent stem cells

19. Switch From Fetal to Adult SCN5A Isoform in Human Induced Pluripotent Stem Cell–Derived Cardiomyocytes Unmasks the Cellular Phenotype of a Conduction Disease–Causing Mutation

20. Interplay between calcium and sarcomeres directs cardiomyocyte maturation during regeneration

21. Role of microRNAs in arrhythmogenic cardiomyopathy: translation as biomarkers into clinical practice

22. Desmosomal protein degradation as an underlying cause of arrhythmogenic cardiomyopathy

23. Software Tool for Automatic Quantification of Sarcomere Length and Organization in Fixed and Live 2D and 3D Muscle Cell Cultures In Vitro

24. Cardiac Tissues From Stem Cells

25. Maturation of hiPSC-derived cardiomyocytes promotes adult alternative splicing of SCN5A and reveals changes in sodium current associated with cardiac arrhythmia

26. A Miniaturized EHT Platform for Accurate Measurements of Tissue Contractile Properties

27. Generation of human induced pluripotent stem cell line EURACi006-A and its isogenic gene-corrected line EURACi006-A-1 from an arrhythmogenic cardiomyopathy patient carrying the c.1643delG PKP2 mutation

28. Targeting the K(v)11.1 (hERG) channel with allosteric modulators

29. Generation, functional analysis and applications of isogenic three-dimensional self-aggregating cardiac microtissues from human pluripotent stem cells

30. Cardiac microtissues from human pluripotent stem cells recapitulate the phenotype of long-QT syndrome

31. Engineered models of the human heart: directions and challenges

32. Targeting the K

33. Uncoupling DNA damage from chromatin damage to detoxify doxorubicin

34. Expanding the editable genome and CRISPR-Cas9 versatility using DNA cutting-free gene targeting based on in trans paired nicking

35. Human Pluripotent Stem Cell Differentiation into Functional Epicardial Progenitor Cells

36. Human heart disease: lessons from human pluripotent stem cell-derived cardiomyocytes

37. Generation of two human induced pluripotent stem cell lines, LUMCi020-A and LUMCi021-A, from two patients with Catecholaminergic Polymorphic Ventricular Tachycardia carrying heterozygous mutations in the RYR2 gene

38. Calcium as a Key Player in Arrhythmogenic Cardiomyopathy: Adhesion Disorder or Intracellular Alteration?

39. Generation of three human induced pluripotent stem cell lines, LUMCi024-A, LUMCi025-A, and LUMCi026-A, from two patients with combined oxidative phosphorylation deficiency 8 and a related control

40. Integrating cardiomyocytes from human pluripotent stem cells in safety pharmacology: has the time come?

41. Large-Scale Simulation of the Phenotypical Variability Induced by Loss-of-Function Long QT Mutations in Human Induced Pluripotent Stem Cell Cardiomyocytes

42. MUSCLEMOTIONNovelty and Significance

43. Altered calcium handling and increased contraction force in human embryonic stem cell derived cardiomyocytes following short term dexamethasone exposure

44. Co-Differentiation of Human Pluripotent Stem Cells-Derived Cardiomyocytes and Endothelial Cells from Cardiac Mesoderm Provides a Three-Dimensional Model of Cardiac Microtissue

45. Switch From Fetal to Adult SCN5A Isoform in Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes Unmasks the Cellular Phenotype of a Conduction Disease-Causing Mutation

46. Versatile open software to quantify cardiomyocyte and cardiac muscle contraction in vitro and in vivo

47. Electrophysiological Analysis of human Pluripotent Stem Cell-derived Cardiomyocytes (hPSC-CMs) Using Multi-electrode Arrays (MEAs)

48. Three-dimensional cardiac microtissues composed of cardiomyocytes and endothelial cells co-differentiated from human pluripotent stem cells

49. Isogenic human pluripotent stem cell pairs reveal the role of a KCNH2 mutation in long-QT syndrome

50. Readthrough-Promoting Drugs Gentamicin and PTC124 Fail to Rescue Na v 1.5 Function of Human-Induced Pluripotent Stem Cell–Derived Cardiomyocytes Carrying Nonsense Mutations in the Sodium Channel Gene SCN5A

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