21 results on '"Sherwood, J"'
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2. TRANSIENT RECEPTOR POTENTIAL CHANNEL 1 (TRPC1) LINKS INTRACELLULAR CALCIUM SIGNALING TO CELLULAR SENESCENCE AND IS INVOLVED IN THE DEVELOPMENT OF OSTEOARTHRITIS IN MICE
3. Barriers and enablers for referral to, and participation in, a contemporary osteoarthritis management program
4. A homeostatic role for transient receptor potential cation channel (TRPC1) in articular cartilage
5. Detection of beta1 integrin activation in chondrocytes
6. Transient receptor potential cation channel (TRPC6) as a regulator of CXCR2-mediated articular cartilage homeostasis
7. Programmed cell death and toll-like receptor activation in articular cartilage
8. Year in review – OA biology
9. The role of GCP-2 in cartilage differentiation and repair
10. The role of transient receptor potential cation channel trpc6 activity in cxcr2-mediated chondrocyte phenotypic stability
11. The Role of CXCl6 in Cartilage Development and Homeostasis
12. WNT16 antagonizes excessive canonical WNT activation and protects cartilage in osteoarthritis
13. Activation of the transient receptor potential cation channel TRPC6 is required for chondrocyte phenotypic stability
14. TRPC6 plays a role in CXCR2-mediated chondrocyte phenotypic stability
15. Wnt16 supports the phenotype of the superficial zone cells in cartilage
16. Wnt16 is induced by oxidative stress following cartilage injury and contributes to cartilage homeostasis in osteoarthritis
17. The role of CXCR2 signaling in articular cartilage homeostasis
18. Syndecan-4 deficient chondrocytes exhibit alterations in activation of WNT signaling pathways leading to higher phenotypic stability
19. Wnt5a/CaMKII pathway is activated in osteoarthritis and promotes loss of chondrocyte phenotype
20. ELR+ CXC chemokine signalling in cartilage homeostasis
21. 203 CXCR1 AND CXCR2 SIGNALLING IS REQUIRED BUT IS NOT SUFFICIENT TO MAINTAIN THE PHENOTYPIC STABILITY OF HUMAN ARTICULAR CHONDROCYTES
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