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Your search keyword '"Shanahan CM"' showing total 43 results

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43 results on '"Shanahan CM"'

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1. Calcinosis: insights from other calcinoses.

2. Macrophage-derived matrix vesicles: an alternative novel mechanism for microcalcification in atherosclerotic plaques.

3. Vascular calcification and hypertension: cause and effect.

4. Vitamin K-antagonists accelerate atherosclerotic calcification and induce a vulnerable plaque phenotype.

6. Arterial calcification in chronic kidney disease: key roles for calcium and phosphate.

7. Calcium and osteoprotegerin regulate IGF1R expression to inhibit vascular calcification.

8. Calcium regulates key components of vascular smooth muscle cell-derived matrix vesicles to enhance mineralization.

9. Crystallizing nanoparticles derived from vascular smooth muscle cells contain the calcification inhibitor osteoprotegerin.

10. Nanocrystals seed calcification in more ways than one.

11. Signalling pathways and vascular calcification.

12. Klotho: an elixir of youth for the vasculature?

13. Chronic mineral dysregulation promotes vascular smooth muscle cell adaptation and extracellular matrix calcification.

14. Mineral surface in calcified plaque is like that of bone: further evidence for regulated mineralization.

15. Dialysis accelerates medial vascular calcification in part by triggering smooth muscle cell apoptosis.

16. Calcium phosphate crystals induce cell death in human vascular smooth muscle cells: a potential mechanism in atherosclerotic plaque destabilization.

17. Role for alkaline phosphatase as an inducer of vascular calcification in renal failure?

18. Exploring the biology of vascular calcification in chronic kidney disease: what's circulating?

20. Post-translational modifications regulate matrix Gla protein function: importance for inhibition of vascular smooth muscle cell calcification.

21. The vascular biology of calcification.

22. Vascular calcification and osteoporosis--from clinical observation towards molecular understanding.

23. Molecular mechanisms mediating vascular calcification: role of matrix Gla protein.

24. Vascular smooth muscle cell phenotypic plasticity and the regulation of vascular calcification.

25. Vascular calcification--a matter of damage limitation?

26. Multifunctional roles for serum protein fetuin-a in inhibition of human vascular smooth muscle cell calcification.

27. Vascular calcification.

28. Mechanisms of vascular calcification in renal disease.

29. Biology of vascular calcification in renal disease.

30. Human vascular smooth muscle cells undergo vesicle-mediated calcification in response to changes in extracellular calcium and phosphate concentrations: a potential mechanism for accelerated vascular calcification in ESRD.

31. Vascular calcification in chronic kidney disease.

32. Osteo/chondrocytic transcription factors and their target genes exhibit distinct patterns of expression in human arterial calcification.

33. Acetylated low-density lipoprotein stimulates human vascular smooth muscle cell calcification by promoting osteoblastic differentiation and inhibiting phagocytosis.

34. Biology of calcification in vascular cells: intima versus media.

35. The role of apoptosis in the initiation of vascular calcification.

36. Transcriptional regulation of matrix gla protein.

37. Apoptosis regulates human vascular calcification in vitro: evidence for initiation of vascular calcification by apoptotic bodies.

38. Expression of mineralisation-regulating proteins in association with human vascular calcification.

39. Medial localization of mineralization-regulating proteins in association with Mönckeberg's sclerosis: evidence for smooth muscle cell-mediated vascular calcification.

40. Vascular calcification: new insights into an old problem.

41. Calcification of human vascular cells in vitro is correlated with high levels of matrix Gla protein and low levels of osteopontin expression.

42. The role of Gla proteins in vascular calcification.

43. High expression of genes for calcification-regulating proteins in human atherosclerotic plaques.

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