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2. Osteoblast‐specific deficiency of ectonucleotide pyrophosphatase or phosphodiesterase‐1 engenders insulin resistance in high‐fat diet fed mice

3. Extracellular pyrophosphate: The body's 'water softener'

5. Differing calcification processes in cultured vascular smooth muscle cells and osteoblasts

8. Spina bifida-predisposing heterozygous mutations in Planar Cell Polarity genes and Zic2 reduce bone mass in young mice

9. Metabolic properties of the osteoclast

10. Inhibition of arterial medial calcification and bone mineralization by extracellular nucleotides: The same functional effect mediated by different cellular mechanisms

11. Activation of the P2Y2 receptor regulates bone cell function by enhancing ATP release

14. Lack of effect of adenosine on the function of rodent osteoblasts and osteoclasts in vitro

16. Acidosis Is a Key Regulator of Osteoblast Ecto-Nucleotidase Pyrophosphatase/Phosphodiesterase 1 (NPP1) Expression and Activity

17. Mineralisation of collagen rich soft tissues and osteocyte lacunae in Enpp1-/- mice

19. Tumour-derived alkaline phosphatase regulates tumour growth, epithelial plasticity and disease-free survival in metastatic prostate cancer.

21. Kidins220/ARMS mediates the integration of the neurotrophin and VEGF pathways in the vascular and nervous systems

22. Kidins220/ARMS mediates the integration of the neurotrophin and VEGF pathways in the vascular and nervous systems.

24. Strontium potently inhibits mineralisation in bone-forming primary rat osteoblast cultures and reduces numbers of osteoclasts in mouse marrow cultures

28. Extracellular ATP released by osteoblasts is a key local inhibitor of bone mineralisation

31. Optimisation of the differing conditions required for bone formation in vitro by primary osteoblasts from mice and rats

32. Nucleotides as regulators of bone cell function and mineralisation

33. Glomerulonephritis and autoimmune vasculitis are independent of P2RX7 but may depend on alternative inflammasome pathways.

34. Chronic administration of Glucagon-like peptide-1 receptor agonists improves trabecular bone mass and architecture in ovariectomised mice.

35. Role of the P2Y13 receptor in the differentiation of bone marrow stromal cells into osteoblasts and adipocytes.

37. Bone phenotypes of P2 receptor knockout mice.

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