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1. The Functional Role of Zinc Finger E Box-Binding Homeobox 2 (Zeb2) in Promoting Cardiac Fibroblast Activation

2. Scleraxis and fibrosis in the pressure-overloaded heart

3. Elimination of endogenous high molecular weight FGF2 prevents pressure-overload-induced systolic dysfunction, linked to increased FGFR1 activity and NR1D1 expression

4. Soft Substrate Culture to Mechanically Control Cardiac Myofibroblast Activation

5. SKI activates the Hippo pathway via LIMD1 to inhibit cardiac fibroblast activation

6. Elimination of endogenous high molecular weight FGF2 prevents pressure-overload-induced systolic dysfunction, linked to increased FGFR1 activity and NR1D1 expression

7. Soft Substrate Culture to Mechanically Control Cardiac Myofibroblast Activation

8. Fibroblast mechanosensing, SKI and Hippo signaling and the cardiac fibroblast phenotype: Looking beyond TGF-β

9. Regulation of cardiac fibroblast MMP2 gene expression by scleraxis

10. Abstract 838: High Molecular Weight FGF2 Contributes to Pressure Overload Induced Systolic Dysfunction by a Mechanism Associated With Modulation of the NR1D1 Orphan Nuclear Receptor Expression

11. Periostin Reexpression in Heart Disease Contributes to Cardiac Interstitial Remodeling by Supporting the Cardiac Myofibroblast Phenotype

12. Proximity‐Labeling by BioID Reveals Pleiotropic Role of Ski in Cardiac Fibrosis

13. Periostin Reexpression in Heart Disease Contributes to Cardiac Interstitial Remodeling by Supporting the Cardiac Myofibroblast Phenotype

14. The Functional Role of Zinc Finger E Box-Binding Homeobox 2 (Zeb2) in Promoting Cardiac Fibroblast Activation

15. An Improved Method of Maintaining Primary Murine Cardiac Fibroblasts in Two-Dimensional Cell Culture

16. Periostin in cardiovascular disease and development: a tale of two distinct roles

18. Ski drives an acute increase in MMP-9 gene expression and release in primary cardiac myofibroblasts

19. Inhibition of autophagy inhibits the conversion of cardiac fibroblasts to cardiac myofibroblasts

20. Non-Canonical Regulation of TGF-β1 Signaling: A Role for Ski/Sno and YAP/TAZ

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