BACKGROUND: Phosphate (Pi) toxicity is a strong determinant of vascular calcification development in chronic kidney disease (CKD). Magnesium (Mg2+) may improve cardiovascular risk via vascular calcification. The mechanism by which Mg2+ counteracts vascular calcification remains incompletely described. Here we investigated the effects of Mg2+ on Pi and secondary crystalline calciprotein particles (CPP2)-induced calcification and crystal maturation. METHODS: Vascular smooth muscle cells (VSMCs) were treated with high Pi or CPP2 and supplemented with Mg2+ to study cellular calcification. The effect of Mg2+ on CPP maturation, morphology and composition was studied by medium absorbance, electron microscopy and energy dispersive spectroscopy. To ...
Vascular calcification (VC) is prevalent in patients suffering from chronic kidney disease (CKD). Hi...
Vitamin K-dependent matrix Gla protein (MGP) is a key inhibitor of vascular calcification (VC). MGP ...
BACKGROUND: Vascular calcification is a key process involved in cardiovascular morbidity and mortali...
Background: Phosphate (Pi) toxicity is a strong determinant of vascular calcification development in...
Vascular calcification is a prognostic marker for cardiovascular mortality in chronic kidney disease...
PURPOSE OF REVIEW: Vascular calcification is a major contributor to increased cardiovascular mortali...
Magnesium has been shown to effectively prevent vascular calcification associated with chronic kidne...
Over the last decade, an increasing number of studies report a close relationship between serum magn...
International audienceBackgroundCardiovascular disease including vascular calcification (VC) remains...
Contains fulltext : 187823.pdf (publisher's version ) (Open Access)Magnesium has b...
Patients with chronic kidney disease (CKD) have a high prevalence of vascular calcification, and car...
BACKGROUND: Vascular calcification is a key process involved in cardiovascular morbidity and mortali...
Vascular calcification (VC) is prevalent in patients suffering from chronic kidney disease (CKD). Hi...
Vitamin K-dependent matrix Gla protein (MGP) is a key inhibitor of vascular calcification (VC). MGP ...
BACKGROUND: Vascular calcification is a key process involved in cardiovascular morbidity and mortali...
Background: Phosphate (Pi) toxicity is a strong determinant of vascular calcification development in...
Vascular calcification is a prognostic marker for cardiovascular mortality in chronic kidney disease...
PURPOSE OF REVIEW: Vascular calcification is a major contributor to increased cardiovascular mortali...
Magnesium has been shown to effectively prevent vascular calcification associated with chronic kidne...
Over the last decade, an increasing number of studies report a close relationship between serum magn...
International audienceBackgroundCardiovascular disease including vascular calcification (VC) remains...
Contains fulltext : 187823.pdf (publisher's version ) (Open Access)Magnesium has b...
Patients with chronic kidney disease (CKD) have a high prevalence of vascular calcification, and car...
BACKGROUND: Vascular calcification is a key process involved in cardiovascular morbidity and mortali...
Vascular calcification (VC) is prevalent in patients suffering from chronic kidney disease (CKD). Hi...
Vitamin K-dependent matrix Gla protein (MGP) is a key inhibitor of vascular calcification (VC). MGP ...
BACKGROUND: Vascular calcification is a key process involved in cardiovascular morbidity and mortali...