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4. When the liver is in poor condition, so is the heart - cardiac remodelling in MASH mouse models.

6. AMPKα1 deletion in myofibroblasts exacerbates post-myocardial infarction fibrosis by a connexin 43 mechanism

7. Transition to innovative, human-relevant pre-clinical cardiovascular research: a perspective.

8. AMPK in Cardiovascular Diseases

9. Recommendations for robust and reproducible preclinical research in personalised medicine

13. AMPK and O-GlcNAcylation, a new paradigm to protect the failing heart

14. Additional file 1 of Gauging innovation and health impact from biomedical research: survey results and interviews with recipients of EU-funding in the fields of Alzheimer’s disease, breast cancer and prostate cancer

15. Additional file 2 of Gauging innovation and health impact from biomedical research: survey results and interviews with recipients of EU-funding in the fields of Alzheimer’s disease, breast cancer and prostate cancer

16. Mitochondrial Protein Cox7b Is a Metabolic Sensor Driving Brain-Specific Metastasis of Human Breast Cancer Cells

17. Factors Modulating COVID-19 : A Mechanistic Understanding Based on the Adverse Outcome Pathway Framework

18. Factors Modulating COVID-19

19. Factors Modulating COVID-19: A Mechanistic Understanding Based on the Adverse Outcome Pathway Framework

22. COVID-19 through adverse outcome pathways: building networks to better understand the disease: report of the 3rd CIAO AOP design workshop

23. COVID-19 through Adverse Outcome Pathways: Building networks to better understand the disease - 3rd CIAO AOP Design Workshop

24. Mitochondrial Protein Cox7b Is a Metabolic Sensor Driving Brain-Specific Metastasis of Human Breast Cancer Cells

25. COVID-19 through Adverse Outcome Pathways: Building networks to better understand the disease - 3rd CIAO AOP Design Workshop

26. Intermittent pacing therapy favorably modulates infarct remodeling

27. Contributors

30. MiR-199a is differentially regulated during physiological and pathological cardiac hypertrophy

31. MiR-199a is differentially regulated during physiological and pathological cardiac hypertrophy

32. Electrophysiologic effects of growth hormone post-myocardial infarction

35. Covid-19 Through Adverse Outcome Pathways: Building Networks To Better Understand the Disease – 3rd CIAO AOP Design Workshop.

36. Towards standardization of echocardiography for the evaluation of left ventricular function in adult rodents: a position paper of the ESC Working Group on Myocardial Function

39. WNT Signaling in Cardiac and Vascular Disease.

40. WNT Signaling in Cardiac and Vascular Disease

41. Attenuation of post-infarction remodeling in rats by sustained myocardial growth hormone administration

42. AMPK activation counteracts cardiac hypertrophy by reducing O-GlcNAcylation

44. Prolonged intra-myocardial growth hormone administration ameliorates post-infarction electrophysiologic remodeling in rats.

45. Sodium-myoinositol cotransporter-1, SMIT1, mediates the production of reactive oxygen species induced by hyperglycemia in the heart

46. Prolonged intra-myocardial growth hormone administration ameliorates post-infarction electrophysiologic remodeling in rats

47. Myofibroblasts in the Infarct Area: Concepts and Challenges

48. AMPK in cardiac fibrosis and repair: Actions beyond metabolic regulation

49. Loss of mouse P2Y6 nucleotide receptor is associated with physiological macrocardia and amplified pathological cardiac hypertrophy.

50. AMPK in cardiovascular diseases

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