Back to Search
Start Over
Deleterious effects of phosphate on vascular and endothelial function via disruption to the nitric oxide pathway.
- Source :
-
Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association [Nephrol Dial Transplant] 2017 Oct 01; Vol. 32 (10), pp. 1617-1627. - Publication Year :
- 2017
-
Abstract
- Background: Hyperphosphataemia is an independent risk factor for accelerated cardiovascular disease in chronic kidney disease (CKD), although the mechanism for this is poorly understood. We investigated the effects of sustained exposure to a high-phosphate environment on endothelial function in cellular and preclinical models, as well as in human subjects.<br />Methods: Resistance vessels from rats and humans (± CKD) were incubated in a normal (1.18 mM) or high (2.5 mM) phosphate concentration solution and cells were cultured in normal- (0.5 mM) or high-phosphate (3 mM) concentration media. A single-blind crossover study was performed in healthy volunteers, receiving phosphate supplements or a phosphate binder (lanthanum), and endothelial function measured was by flow-mediated dilatation.<br />Results: Endothelium-dependent vasodilatation was impaired when resistance vessels were exposed to high phosphate; this could be reversed in the presence of a phosphodiesterase-5-inhibitor. Vessels from patients with CKD relaxed normally when incubated in normal-phosphate conditions, suggesting that the detrimental effects of phosphate may be reversible. Exposure to high-phosphate disrupted the whole nitric oxide pathway with reduced nitric oxide and cyclic guanosine monophosphate production and total and phospho endothelial nitric oxide synthase expression. In humans, endothelial function was reduced by chronic phosphate loading independent of serum phosphate, but was associated with higher urinary phosphate excretion and serum fibroblast growth factor 23.<br />Conclusions: These directly detrimental effects of phosphate, independent of other factors in the uraemic environment, may explain the increased cardiovascular risk associated with phosphate in CKD.<br /> (© The Author 2016. Published by Oxford University Press on behalf of ERA-EDTA. All rights reserved.)
- Subjects :
- Animals
Cardiovascular Diseases blood
Cardiovascular Diseases pathology
Cells, Cultured
Cross-Over Studies
Cyclic GMP metabolism
Endothelial Cells enzymology
Endothelium, Vascular metabolism
Fibroblast Growth Factor-23
Fibroblast Growth Factors blood
Humans
Hyperphosphatemia blood
Hyperphosphatemia pathology
Male
Nitric Oxide Synthase Type III metabolism
Phosphates physiology
Phosphates toxicity
Rats
Rats, Inbred WKY
Renal Insufficiency, Chronic blood
Renal Insufficiency, Chronic pathology
Risk Factors
Signal Transduction
Single-Blind Method
Vasodilation drug effects
Cardiovascular Diseases etiology
Hyperphosphatemia complications
Nitric Oxide physiology
Renal Insufficiency, Chronic complications
Subjects
Details
- Language :
- English
- ISSN :
- 1460-2385
- Volume :
- 32
- Issue :
- 10
- Database :
- MEDLINE
- Journal :
- Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association
- Publication Type :
- Academic Journal
- Accession number :
- 27448672
- Full Text :
- https://doi.org/10.1093/ndt/gfw252