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1. Identifying novel data-driven subgroups in congenital heart disease using multi-modal measures of brain structure

2. Mechanism based therapies enable personalised treatment of hypertrophic cardiomyopathy

3. Cardiomyocyte infection by Trypanosoma cruzi promotes innate immune response and glycolysis activation

4. Genome-wide association study for Chagas Cardiomyopathy identify a new risk locus on chromosome 18 associated with an immune-related protein and transcriptional signature

5. Different Transcriptomic Response to T. cruzi Infection in hiPSC-Derived Cardiomyocytes From Chagas Disease Patients With and Without Chronic Cardiomyopathy

6. Myocardial Iron Deficiency and Mitochondrial Dysfunction in Advanced Heart Failure in Humans

7. Probing the subcellular nanostructure of engineered human cardiomyocytes in 3D tissue

8. Multi-Omics Profiling of Hypertrophic Cardiomyopathy Reveals Altered Mechanisms in Mitochondrial Dynamics and Excitation–Contraction Coupling

9. Cell cycle defects underlie childhood-onset cardiomyopathy associated with Noonan syndrome

10. EM-mosaic detects mosaic point mutations that contribute to congenital heart disease

11. De novo and recessive forms of congenital heart disease have distinct genetic and phenotypic landscapes

12. LAMP2 Cardiomyopathy: Consequences of Impaired Autophagy in the Heart

13. Cardiomyocyte Proliferative Capacity Is Restricted in Mice With Lmna Mutation

14. Paternal-age-related de novo mutations and risk for five disorders

15. Hypertrophic cardiomyopathy in myosin-binding protein C (MYBPC3) Icelandic founder mutation carriers

16. Hierarchical and stage-specific regulation of murine cardiomyocyte maturation by serum response factor

17. The uptake of family screening in hypertrophic cardiomyopathy and an online video intervention to facilitate family communication

18. Dynamic Cellular Integration Drives Functional Assembly of the Heart’s Pacemaker Complex

19. Joint analysis of left ventricular expression and circulating plasma levels of Omentin after myocardial ischemia

20. Cardiac Myosin Binding Protein-C Autoantibodies Are Potential Early Indicators of Cardiac Dysfunction and Patient Outcome in Acute Coronary Syndrome

21. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis

22. Loss of RNA expression and allele-specific expression associated with congenital heart disease

23. The Role of the L-Type Ca2+ Channel in Altered Metabolic Activity in a Murine Model of Hypertrophic Cardiomyopathy

24. Cardiac-enriched BAF chromatin-remodeling complex subunit Baf60c regulates gene expression programs essential for heart development and function

25. A Novel Role for CSRP1 in a Lebanese Family with Congenital Cardiac Defects

26. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis

27. Multiplexed Single-Nucleus RNA Sequencing Using Lipid-Oligo Barcodes

29. Pathogenesis of Cardiomyopathy Caused by Variants in ALPK3 , an Essential Pseudokinase in the Cardiomyocyte Nucleus and Sarcomere

30. Missense Mutation in Human CHD4 Causes Ventricular Noncompaction by Repressing ADAMTS1

31. Contribution of Previously Unrecognized RNA Splice-Altering Variants to Congenital Heart Disease

32. Tbx5 maintains atrial identity by regulating an atrial enhancer network

33. Transforming Growth Factor-β Analysis of the VANISH Trial Cohort

34. Ablation of lysophosphatidic acid receptor 1 attenuates hypertrophic cardiomyopathy in a mouse model

35. Evidence-Based Assessment of Congenital Heart Disease Genes to Enable Returning Results in a Genomic Study

36. Targeted therapies in genetic dilated and hypertrophic cardiomyopathies: from molecular mechanisms to therapeutic targets. A position paper from the Heart Failure Association (HFA) and the Working Group on Myocardial Function of the European Society of Cardiology (ESC)

37. Filamin C Cardiomyopathy Variants Cause Protein and Lysosome Accumulation

38. Abstract P1007: Cardiac Fibroblast BAG3 Controls TGFBR2 Signaling And Contributes To Engineered Cardiac Tissue Function

39. Pathogenic variants damage cell composition and single cell transcription in cardiomyopathies

40. Damaging variants in FOXI3 cause microtia and craniofacial microsomia

42. An ancient founder mutation located between

43. Population Prevalence of Premature Truncating Variants in Plakophilin-2 and Association With Arrhythmogenic Right Ventricular Cardiomyopathy: A UK Biobank Analysis

44. Neither cardiac mitochondrial DNA variation nor copy number contribute to congenital heart disease risk

45. Engineering a living cardiac pump on a chip using high-precision fabrication

46. Genome-Wide De Novo Variants in Congenital Heart Disease Are Not Associated With Maternal Diabetes or Obesity

47. Conquering Atherosclerotic Cardiovascular Disease — 50 Years of Progress

48. Association of Potentially Damaging De Novo Gene Variants With Neurologic Outcomes in Congenital Heart Disease

49. Loss of epigenetic information as a cause of mammalian aging

50. Genetic Studies of Hypertrophic Cardiomyopathy in Singaporeans Identify Variants in TNNI3 and TNNT2 That Are Common in Chinese Patients

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