Arterial media calcification in end-stage renal disease: Impact on all-cause and cardiovascular mortality
London GM, Guerin AP, Marchais SJ et al (2003) Arterial media calcification in end-stage renal disease: impact on all-cause and cardiovascular mortality. Nephrol Dial Transpl 18:1731-1740
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
Reynolds JL, Joannides AJ, Skepper JN et al (2004) 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. J Am Soc Nephrol 15:2857-2867
Smooth muscle cell phenotypic transition associated with calcification: Upregulation of Cbfa-1 and downregulation of smooth muscle lineage markers
Steitz SA, Speer MY, Curinga G et al (2001) Smooth muscle cell phenotypic transition associated with calcification: upregulation of Cbfa-1 and downregulation of smooth muscle lineage markers. Circ Res 89:1147-1154
Sevelamer hydrochloride prevents ectopic calcification and renal osteodystrophy in chronic renal failure rats
Katsumata K, Kusano K, Hirata M et al (2003) Sevelamer hydrochloride prevents ectopic calcification and renal osteodystrophy in chronic renal failure rats. Kidney Int 64:441-450
Iron sucrose promotes endothelial injury and dysfunction and monocyte adhesion/infiltration
Kamanna VS, Ganji SH, Shelkovnikov S et al (2012) Iron sucrose promotes endothelial injury and dysfunction and monocyte adhesion/infiltration. Am J Nephrol 35(2):114-119
Arterial calcification in chronic kidney disease: Key roles for calcium and phosphate
Shanahan CM, Crouthamel MH, Kapustin A, Giachelli CM (2011) Arterial calcification in chronic kidney disease: key roles for calcium and phosphate. Circ Res 109:697-711
Iron overload alters iron-regulatory genes and proteins, down-regulates osteoblastic phenotype, and is associated with apoptosis in fetal rat calvaria cultures
Messer JG, Kilbarger AK, Erikson KM, Kipp DE (2009) Iron overload alters iron-regulatory genes and proteins, down-regulates osteoblastic phenotype, and is associated with apoptosis in fetal rat calvaria cultures. Bone 45:972-979