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2. Connexines et canaux jonctionnels. Leurs rôles dans la propagation de l’activité électrique cardiaque et le développement du cœur

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3. Long QT syndrome type 3 gain-of-function of Na v 1.5 increases ventricular fibroblasts proliferation and pro-fibrotic factors.

4. Gap-134, a Connexin43 activator, prevents age-related development of ventricular fibrosis in Scn5a +/ - mice.

5. Transforming growth factor β receptor inhibition prevents ventricular fibrosis in a mouse model of progressive cardiac conduction disease.

6. Astroglial networks promote neuronal coordination.

7. Influence of the scaffolding protein Zonula Occludens (ZOs) on membrane channels.

8. Gap-junction-mediated cell-to-cell communication.

9. Gap junctional channels are parts of multiprotein complexes.

10. Mouse Models of SCN5A-Related Cardiac Arrhythmias.

11. Astroglial gap junctions shape neuronal network activity.

12. Epac stimulation induces rapid increases in connexin43 phosphorylation and function without preconditioning effect.

13. 5-HT4 and 5-HT2 receptors antagonistically influence gap junctional coupling between rat auricular myocytes.

14. Reciprocal influence of connexins and apical junction proteins on their expressions and functions.

15. RhoA GTPase and F-actin dynamically regulate the permeability of Cx43-made channels in rat cardiac myocytes.

16. Aberrant expression and localization of connexin43 and connexin30 in a rat glioma cell line.

17. The connexin turnover, an important modulating factor of the level of cell-to-cell junctional communication: comparison with other integral membrane proteins.