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1. Endothelial tip-cell position, filopodia formation and biomechanics require BMPR2 expression and signaling

2. Epigenetic regulation by polycomb repressive complex 1 promotes cerebral cavernous malformations

3. Circulating biomarkers in familial cerebral cavernous malformationResearch in context

4. Impaired retinoic acid signaling in cerebral cavernous malformations

5. pyHeart4Fish: Chamber-specific heart phenotype quantification of zebrafish in high-content screens

7. Mechanosensitive Notch-Dll4 and Klf2-Wnt9 signaling pathways intersect in guiding valvulogenesis in zebrafish

8. Strong as a Hippo’s Heart: Biomechanical Hippo Signaling During Zebrafish Cardiac Development

9. Biomechanical signaling within the developing zebrafish heart attunes endocardial growth to myocardial chamber dimensions

10. A conserved CCM complex promotes apoptosis non-autonomously by regulating zinc homeostasis

11. Sensing and Responding of Cardiomyocytes to Changes of Tissue Stiffness in the Diseased Heart

12. Antagonistic Activities of Vegfr3/Flt4 and Notch1b Fine-tune Mechanosensitive Signaling during Zebrafish Cardiac Valvulogenesis

13. Systematic pharmacological screens uncover novel pathways involved in cerebral cavernous malformations

14. Planar cell polarity signalling coordinates heart tube remodelling through tissue-scale polarisation of actomyosin activity

15. Differentiation of Human Pluripotent Stem Cells into Functional Endothelial Cells in Scalable Suspension Culture

16. Heg1 and Ccm1/2 proteins control endocardial mechanosensitivity during zebrafish valvulogenesis

17. Xirp proteins mark injured skeletal muscle in zebrafish.

18. In vivo conditions to identify Prkci phosphorylation targets using the analog-sensitive kinase method in zebrafish.

19. Transient stabilization of human cardiovascular progenitor cells from hPSCs in vitro reflects stage-specific heart development in vivo

20. An NMR‐Based Biosensor to Measure Stereospecific Methionine Sulfoxide Reductase Activities in Vitro and in Vivo**

21. Mechanosensitive Notch-Dll4 and Klf2-Wnt9 signaling pathways intersect in guiding valvulogenesis in zebrafish

22. Elucidation of the genetic causes of bicuspid aortic valve disease

24. Llgl1 regulates zebrafish cardiac development by mediating Yap stability in cardiomyocytes

25. An NMR-based biosensor to measure stereo-specific methionine sulfoxide reductase (MSR) activities in vitro and in vivo

26. The tight junction protein Claudin-5 limits endothelial cell motility

27. Novel Chronic Mouse Model of Cerebral Cavernous Malformations

28. Blood Flow Matters in a Zebrafish Model of Cerebral Cavernous Malformations

29. Blood Flow Suppresses Vascular Anomalies in a Zebrafish Model of Cerebral Cavernous Malformations

30. Biomechanical signaling within the developing zebrafish heart attunes endocardial growth to myocardial chamber dimensions

31. A conserved CCM complex promotes apoptosis non-autonomously by regulating zinc homeostasis

32. The force within: endocardial development, mechanotransduction and signalling during cardiac morphogenesis

33. Distinct cellular roles for PDCD10 define a gut-brain axis in cerebral cavernous malformation

34. The CCM1-CCM2 complex controls complementary functions of ROCK1 and ROCK2 that are required for endothelial integrity

35. Cerebral Cavernous Malformation 1/2 complex controls ROCK1 and ROCK2 complementary functions for endothelial integrity

36. Differentiation of Human Pluripotent Stem Cells into Functional Endothelial Cells in Scalable Suspension Culture

37. Heg1 and Ccm1/2 proteins control endocardial mechanosensitivity during zebrafish valvulogenesis

38. Regulation of β1 Integrin-Klf2-Mediated Angiogenesis by CCM Proteins

40. Lethal giant larvae 2 regulates development of the ciliated organ Kupffer’s vesicle

41. Unilateral Dampening of Bmp Activity by Nodal Generates Cardiac Left-Right Asymmetry

42. Phosphorylation of the chromatin remodeling factor DPF3a induces cardiac hypertrophy through releasing HEY repressors from DNA

43. BMP signaling in vascular biology and dysfunction

44. Macrophage development from HSCs requires PU.1-coordinated microRNA expression

45. Loss of Lrp2 in zebrafish disrupts pronephric tubular clearance but not forebrain development

46. Establishment of a neuroepithelial barrier by Claudin5a is essential for zebrafish brain ventricular lumen expansion

47. A novel genetic mechanism regulates dorsolateral hinge-point formation during zebrafish cranial neurulation

48. Apical membrane maturation and cellular rosette formation during morphogenesis of the zebrafish lateral line

49. Involvement of zebrafish Na+,K+ ATPase in myocardial cell junction maintenance

50. Nuclear localization of the zebrafish tight junction protein nagie oko

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