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Updated: May 20, 2026

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Effects of phosphate on vascular function under normal conditions and influence of the uraemic state
Isabelle Six1, Julien Maizel, Fellype C Barreto
1INSERM, Unit 1088 and Jules Verne University of Picardie, Amiens, France.
Insights
High phosphate levels worsen vascular function in mice, contributing to cardiovascular disease risk. Phosphate binder sevelamer-HCl improved vascular health in chronic kidney disease (CKD) mice.
Area of Science:
- Nephrology
- Cardiovascular Biology
- Pharmacology
Background:
- Elevated serum phosphorus is linked to cardiovascular disease in chronic kidney disease (CKD) and general populations.
- High phosphate may directly impair vascular function and contribute to vascular dysfunction.
Purpose of the Study:
- To investigate the impact of phosphate loading on vascular function.
- To evaluate the effects of the phosphate binder sevelamer-HCl on vascular function in CKD and non-CKD mice.
Main Methods:
- Used C57/BL6 mice (CKD and non-CKD) to assess vascular function and structure.
- Conducted in vitro studies on aortic rings and in vivo studies with high-phosphate diets and sevelamer-HCl treatment.
- Measured vascular contractility, relaxation, endothelial integrity, and arterial stiffness parameters.
Main Results:
- In vitro, phosphate caused vasoconstriction, an effect reduced in CKD vessels and mediated by reactive oxygen species.
- High-phosphate diet induced endothelial dysfunction and detachment in both CKD and non-CKD mice.
- Sevelamer-HCl normalized endothelial dysfunction, improved arterial stiffness, and reduced adhesion molecule expression in CKD mice.
Conclusions:
- Extracellular phosphorus concentrations directly influence vascular smooth muscle responses in normal and CKD mice.
- Phosphate modulation may be a therapeutic target for improving arterial function.
- Further research is needed to confirm if phosphorus lowering improves arterial function in humans.
Aims:
Increased serum phosphorus levels are associated with cardiovascular disease in patients with chronic kidney disease (CKD) and in the general population. High phosphate levels may play a direct role in vascular dysfunction. We investigated here the effects of phosphate loading and of the phosphate binder sevelamer-HCl on vascular function.
Methods And Results:
CKD and non-CKD C57/BL6 mice were used to study the effects of CKD, phosphate, and sevelamer-HCl on vascular function and structure. In vitro, phosphate exhibited a direct vasoconstrictor effect on aortic rings. This effect was smaller in vessels from CKD than non-CKD mice and it was abolished by reactive oxygen species inhibitor dimethylthiourea. A high-phosphate diet (1.3%) increased phenylephrine-induced contraction and lowered acetylcholine-induced relaxation of aortic rings ex vivo, both in non-CKD and CKD mice. It also induced endothelial cell detachment. Sevelamer-HCl exposure in vitro normalized the endothelial dysfunction induced by 3.0 mM phosphate and restored endothelial integrity. Sevelamer-HCl treatment of CKD mice under normal diet (0.65% phosphate) improved the endothelial dysfunction, aortic systolic expansion rate, and pulse wave velocity, and it reduced the endothelial expression of adhesion molecules.
Conclusion:
Changes in extracellular phosphorus concentrations may directly modulate vascular function and thereby modulate the vascular smooth muscle response to physiological or pathological stimuli in normal and CKD mice. Whether serum phosphorus lowering and/or dietary phosphate restriction can improve arterial function in humans remains to be established.
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