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.
Abstract

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