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23 results on '"Prakoura N"'

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2. The family of 14-3-3 proteins and specifically 14-3-3σ are up-regulated during the development of renal pathologies

3. New Targets for End-Stage Chronic Kidney Disease Therapy

4. La délétion du gène de la periostine augmente les lésions tubulaires, réduit l’infiltrat inflammatoire macrophagique, et augmente la fibrose rénale dans le modèle murin d’ischémie-reperfusion...

5. Down-regulation of human long non-coding RNA LINC01187 is associated with nephropathies.

6. The Angiogenesis Inhibitor Isthmin-1 (ISM1) Is Overexpressed in Experimental Models of Glomerulopathy and Impairs the Viability of Podocytes.

7. Role of Periostin and Nuclear Factor-κB Interplay in the Development of Diabetic Nephropathy.

8. Activation of Notch3 in Renal Tubular Cells Leads to Progressive Cystic Kidney Disease.

9. Periostin Promotes Cell Proliferation and Macrophage Polarization to Drive Repair after AKI.

10. Acute Kidney Injury Induces Remote Cardiac Damage and Dysfunction Through the Galectin-3 Pathway.

11. Novel Targets for Therapy of Renal Fibrosis.

12. The family of 14-3-3 proteins and specifically 14-3-3σ are up-regulated during the development of renal pathologies.

13. Notch3 orchestrates epithelial and inflammatory responses to promote acute kidney injury.

14. Connexin 43: a New Therapeutic Target Against Chronic Kidney Disease.

15. Periostin in kidney diseases.

16. Decreased Expression of Connexin 43 Blunts the Progression of Experimental GN.

17. Periostin and Discoidin Domain Receptor 1: New Biomarkers or Targets for Therapy of Renal Disease.

18. NF κ B-Induced Periostin Activates Integrin- β 3 Signaling to Promote Renal Injury in GN.

19. Nuclear receptor NR5A2 is involved in the calreticulin gene regulation during renal fibrosis.

20. Epithelial calreticulin up-regulation promotes profibrotic responses and tubulointerstitial fibrosis development.

21. Transgelin Up-Regulation in Obstructive Nephropathy.

22. Renal fibrosis: insight from proteomics in animal models and human disease.

23. Cumulative contributions of weak DNA determinants to targeting the Drosophila dosage compensation complex.

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