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6. Caveolin-3 and Caveolin-1 Interaction Decreases Channel Dysfunction Due to Caveolin-3 Mutations

7. HCN Channels and Cardiac Pacemaking

8. HCN ion channels and accessory proteins in epilepsy: genetic analysis of a large cohort of patients and review of the literature

9. PITX2 gain-of-function mutation associated with atrial fibrillation alters mitochondrial activity in human iPSC atrial-like cardiomyocytes

10. A novel de novo HCN2 loss‐of‐function variant causing developmental and epileptic encephalopathy treated with a ketogenic diet

15. Lack of the transcription factor Nfix causes tachycardia in mice sinus node and rats neonatal cardiomyocytes

16. A novel de novo HCN2 loss-of-function variant causing developmental and epileptic encephalopathy treated with a ketogenic diet

18. Contributors

20. Acetylation mediates Cx43 reduction caused by electrical stimulation

22. The 'Funny' Pacemaker Current

23. Anacardic acid and thyroid hormone enhance cardiomyocytes production from undifferentiated mouse ES cells along functionally distinct pathways

28. Chinese natural compound decreases pacemaking of rabbit cardiac sinoatrial cells by targeting second messenger regulation of f-channels

29. Author response: Chinese natural compound decreases pacemaking of rabbit cardiac sinoatrial cells by targeting second messenger regulation of f-channels

30. Liraglutide Preserves CD34 + Stem Cells from Dysfunction Induced by High Glucose Exposure

35. PCSK9 deficiency rewires heart metabolism and drives heart failure with preserved ejection fraction

38. Human iPSC modelling of a familial form of atrial fibrillation reveals a gain of function of I-f and I-CaL in patient-derived cardiomyocytes

39. Human iPSC modeling of a familial form of atrial fibrillation reveals a gain of function of If and ICaL in patient-derived cardiomyocytes

40. Human iPSC modeling of a familial form of atrial fibrillation reveals a gain of function of If and ICaL in patient-derived cardiomyocytes

43. Liraglutide preserves CD34+ stem cells from dysfunction Induced by high glucose exposure.

45. Block of the background [K.sup.+] channel TASK-1 contributes to arrhythmogenic effects of platelet-activating factor

47. Human cardiac and bone marrow stromal cells exhibit distinctive properties related to their origin

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