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Your search keyword '"Ludvig J. Backman"' showing total 22 results

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22 results on '"Ludvig J. Backman"'

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1. Regulation of osteogenic differentiation by the pro-inflammatory cytokines IL-1β and TNF-α: current conclusions and controversies

2. Advances in Regulatory Strategies of Differentiating Stem Cells towards Keratocytes

3. Regulation of Keratocyte Phenotype and Cell Behavior by Substrate Stiffness

4. Activation of NF-κB signaling via cytosolic mitochondrial RNA sensing in kerotocytes with mitochondrial DNA common deletion

5. Anti-apoptotic effect of adipose tissue-derived stromal vascular fraction in denervated rat muscle

6. Sustained Release of TPCA-1 from Silk Fibroin Hydrogels Preserves Keratocyte Phenotype and Promotes Corneal Regeneration by Inhibiting Interleukin-1β Signaling

7. Mechanical stress potentiates the differentiation of periodontal ligament stem cells into keratocytes

8. Adipose stem cells enhance myoblast proliferation via acetylcholine and extracellular signal-regulated kinase 1/2 signaling

9. The adipose tissue stromal vascular fraction secretome enhances the proliferation but inhibits the differentiation of myoblasts

10. Acetylcholine enhances keratocyte proliferation through muscarinic receptor activation

11. Substance P and patterned silk biomaterial stimulate periodontal ligament stem cells to form corneal stroma in a bioengineered three-dimensional model

12. Ascorbic Acid Promotes the Stemness of Corneal Epithelial Stem/Progenitor Cells and Accelerates Epithelial Wound Healing in the Cornea

13. Fos Promotes Early Stage Teno-Lineage Differentiation of Tendon Stem/Progenitor Cells in Tendon

14. The Effects of Substance P and Acetylcholine on Human Tenocyte Proliferation Converge Mechanistically via TGF-β1

15. Akt-mediated anti-apoptotic effects of substance P in Anti-Fas-induced apoptosis of human tenocytes

16. Antiapoptotic Effect of Acetylcholine in Fas-Induced Apoptosis in Human Keratocytes

17. Ciliary Neurotrophic Factor Promotes the Migration of Corneal Epithelial Stem/progenitor Cells by Up-regulation of MMPs through the Phosphorylation of Akt

18. Substance P enhances collagen remodeling and MMP-3 expression by human tenocytes

19. Human tenocytes are stimulated to proliferate by acetylcholine through an EGFR signalling pathway

20. Substance P is a mechanoresponsive, autocrine regulator of human tenocyte proliferation

21. 13 Fibrotic Regulators Ccn1 And Ccn2 Respond To Mechanical Loading Of Tendon Cells

22. HUMAN TENOCYTES ARE STIMULATED TO PROLIFERATE BY ACETYLCHOLINE THROUGH AN EGFR SIGNALLING PATHWAY

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