Dietary protein intake and the tubular handling of indoxyl sulfate

Publication date

2025-04

Authors

Lauriola, Mara
Farré, Ricard
Dejongh, Sander
de Loor, Henriette
Evenepoel, Pieter
Masereeuw, RosalindeORCID 0000-0002-1560-1074ISNI 0000000369326917
Zadora, Ward
Meijers, Björn

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Background. Chronic kidney disease (CKD) patients are advised to limit their protein intake. A high protein diet is known to induce glomerular hyperfiltration, as well as hypertrophy of the remnant kidney, and glomerulosclerosis. Whether the diet causes changes in kidney tubule transport via gut microbiome metabolites is still unknown. We hypothesized that protein intake affects not only the intestinal generation and absorption, but also the kidney disposal of microbial amino acid metabolites. Methods. We combined data from animal models and human studies. 5/6th nephrectomy rats were administered a high (HP) or low-protein (LP) diet for 7 weeks. Plasma and urine concentration of the uremic toxins (UTs) indoxyl sulfate (IS), p-cresyl sulfate (PCS) and p-cresyl glucuronide (PCG) were measured. Their fractional excretion (FE) was calculated. The expression of kidney membrane transporters organic anion transporter 1 (OAT1), OAT3, BCRP, OCT2 and MRP4 was analyzed. Differences in FE of UTs between individuals with higher and lower protein intake in two CKD cohorts were sought. Results. CKD rats on an HP diet showed increased plasma levels of PCS and PCG but not IS compared with rats on an LP diet. Conversely, urinary excretion and FE of IS were higher in the HP CKD group. BCRP, MRP4 and OCT2 were not influenced by the diet. OAT1 and OAT3 were upregulated in the HP CKD group. In two independent cohorts of CKD patients, individuals with a high dietary protein intake showed a significantly higher FE of IS. Conclusions. A HP diet leads to a higher generation and/or absorption of amino acid–derived UT precursors in CKD rodent models and humans, most likely via gut microbiome modulation. We demonstrate that dietary protein intake modulates transcription and expression of OAT1 and OAT3, corroborating the existence of the remote sensing and signaling hypothesis. Dietary protein intake influences kidney physiology beyond glomerular filtration.

Keywords

chronic kidney disease, gut–kidney axis, indoxyl sulfate, kidney transporters, uremic toxins, Taverne, SDG 3 - Good Health and Well-being

Citation

Lauriola, M, Farré, R, Dejongh, S, de Loor, H, Evenepoel, P, Masereeuw, R, Zadora, W & Meijers, B 2025, 'Dietary protein intake and the tubular handling of indoxyl sulfate', Nephrology Dialysis Transplantation, vol. 40, no. 4, pp. 739–750. https://doi.org/10.1093/ndt/gfae220