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The Uremic Toxicity of Indoxyl Sulfate and p-Cresyl Sulfate

Journal of the American Society of Nephrology · 2014 · Vol. 25(9) · pp. 1897–1907
Raymond VanholderEva SchepersAnneleen PletinckEvi NaglerGriet Glorieux

Abstract

A growing number of publications supports a biologic effect of the protein-bound uremic retention solutes indoxyl sulfate and p-cresyl sulfate. However, the use of unrealistically high free concentrations of these compounds and/or inappropriately low albumin concentrations may blur the interpretation of these results. Here, we performed a systematic review, selecting only studies in which, depending on the albumin concentration, real or extrapolated free concentrations of indoxyl sulfate and p-cresyl sulfate remained in the uremic range. The 27 studies retrieved comprised in vitro and animal studies. A quality score was developed, giving 1 point for each of the following criteria: six or more experiments, confirmation by more than one experimental approach, neutralization of the biologic effect by counteractive reagents or antibodies, use of a real-life model, and use of dose-response analyses in vitro and/or animal studies. The overall average score was 3 of 5 points, with five studies scoring 5 of 5 points and six studies scoring 4 of 5 points, highlighting the superior quality of a substantial number of the retrieved studies. In the 11 highest scoring studies, most functional deteriorations were related to uremic cardiovascular disease and kidney damage. We conclude that our systematic approach allowed the retrieval of methodologically correct studies unbiased by erroneous conditions related to albumin binding. Our data seem to confirm the toxicity of indoxyl sulfate and p-cresyl sulfate and support their roles in vascular and renal disease progression.

Dialysis and Renal Disease ManagementAcute Kidney Injury ResearchChronic Kidney Disease and DiabetesToxicitySulfateChemistryCresyl violetUremic toxinsAlbuminPharmacologyMedicineInternal medicineBiochemistry

MeSH terms

AnimalsCresolsDisease Models, AnimalHumansIndicanKidneyModels, BiologicalProtein BindingSulfuric Acid EstersToxins, BiologicalUremiaRenal Insufficiency, Chronic
Citations
647
FWCI
20.24
field-weighted impact
References
86
Percentile
100%
vs. same field & year
Citations per year
References
Chronic kidney disease as cause of cardiovascular morbidity and mortality
Nephrology Dialysis Transplantation · 2005 · 600 citations
p-Cresyl sulphate and indoxyl sulphate predict progression of chronic kidney disease
Nephrology Dialysis Transplantation · 2010 · 486 citations
Normal and Pathologic Concentrations of Uremic Toxins
Journal of the American Society of Nephrology · 2012 · 931 citations
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