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1. Free essential amino acid feeding improves endurance during resistance training via DRP1‐dependent mitochondrial remodelling

2. Fast myosin binding protein C knockout in skeletal muscle alters length-dependent activation and myofilament structure

3. Roles of cMyBP-C phosphorylation on cardiac contractile dysfunction in db/db mice

4. IL-1β-mediated adaptive reprogramming of endogenous human cardiac fibroblasts to cells with immune features during fibrotic remodeling

5. Etiology of genetic muscle disorders induced by mutations in fast and slow skeletal MyBP-C paralogs

6. Depletion of skeletal muscle satellite cells attenuates pathology in muscular dystrophy

7. Modulation of myosin by cardiac myosin binding protein-C peptides improves cardiac contractility in ex-vivo experimental heart failure models

8. Knockout of Sorbin And SH3 Domain Containing 2 (Sorbs2) in Cardiomyocytes Leads to Dilated Cardiomyopathy in Mice

9. Heterogeneous Distribution of Genetic Mutations in Myosin Binding Protein-C Paralogs

10. Loss of Lipocalin 10 Exacerbates Diabetes-Induced Cardiomyopathy via Disruption of Nr4a1-Mediated Anti-Inflammatory Response in Macrophages

11. Nuclear numbers in syncytial muscle fibers promote size but limit the development of larger myonuclear domains

12. Reduced Left Atrial Emptying Fraction and Chymase Activation in Pathophysiology of Primary Mitral Regurgitation

13. Myofilament Alterations Associated with Human R14del-Phospholamban Cardiomyopathy

14. South Asian-Specific MYBPC3Δ25bp Deletion Carriers Display Hypercontraction and Impaired Diastolic Function Under Exercise Stress

15. KLF2 in Myeloid Lineage Cells Regulates the Innate Immune Response during Skeletal Muscle Injury and Regeneration

16. Dilated cardiomyopathy-mediated heart failure induces a unique skeletal muscle myopathy with inflammation

17. A Novel Homozygous Intronic Variant in TNNT2 Associates With Feline Cardiomyopathy

18. Distal Arthrogryposis and Lethal Congenital Contracture Syndrome – An Overview

19. Loss of microRNA-128 promotes cardiomyocyte proliferation and heart regeneration

20. The C0-C1f Region of Cardiac Myosin Binding Protein-C Induces Pro-Inflammatory Responses in Fibroblasts via TLR4 Signaling

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

22. Inhibition of Senescence‐Associated Genes Rb1 and Meis2 in Adult Cardiomyocytes Results in Cell Cycle Reentry and Cardiac Repair Post–Myocardial Infarction

23. Myonuclear accretion is a determinant of exercise-induced remodeling in skeletal muscle

24. Upregulated Angiogenesis Is Incompetent to Rescue Dilated Cardiomyopathy Phenotype in Mice

25. Genetic Modifiers of Hereditary Neuromuscular Disorders and Cardiomyopathy

26. Cardiac muscle organization revealed in 3-D by imaging whole-mount mouse hearts using two-photon fluorescence and confocal microscopy

27. Probenecid Improves Cardiac Function in Patients With Heart Failure With Reduced Ejection Fraction In Vivo and Cardiomyocyte Calcium Sensitivity In Vitro

28. Hypertrophic cardiomyopathy clinical phenotype is independent of gene mutation and mutation dosage.

29. Recent Advances in the Molecular Genetics of Familial Hypertrophic Cardiomyopathy in South Asian Descendants

30. Alterations in Multi‐Scale Cardiac Architecture in Association With Phosphorylation of Myosin Binding Protein‐C

31. Calcium-Dependent Interaction Occurs between Slow Skeletal Myosin Binding Protein C and Calmodulin

32. Sham surgery and inter-individual heterogeneity are major determinants of monocyte subset kinetics in a mouse model of myocardial infarction.

33. Cardiac myosin binding protein C phosphorylation affects cross-bridge cycle's elementary steps in a site-specific manner.

34. Cardiac myosin binding protein-C plays no regulatory role in skeletal muscle structure and function.

35. Enhanced cardiac function in Gravin mutant mice involves alterations in the β-adrenergic receptor signaling cascade.

36. Targeted genome-wide enrichment of functional regions.

42. Rewiring of 3D Chromatin Topology Orchestrates Transcriptional Reprogramming and the Development of Human Dilated Cardiomyopathy

43. Lipids: a Potential Molecular Pathway Towards Diastolic Dysfunction in Youth-Onset Type 2 Diabetes

44. Structural and Phenotypic Correction of K210del Genetic Cardiomyopathy by an FDA Approved Drug

46. Myosin-Binding Protein C Stabilizes, But Is Not the Sole Determinant of SRX Myosin in Cardiac Muscle

47. Abstract P1043: Myocardial Infarction Induces Translocation Of Gut Bacteria To The Heart

48. Abstract P3022: Multiscale Characterization Of Left Ventricular Diastolic Dysfunction In Diabetic And Cardiac Myosin Binding Protein-C Phospho-Ablated Murine Models

49. Amino terminus of cardiac myosin binding protein-C regulates cardiac contractility

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