Related Experiment Video
Updated: Aug 13, 2026

Surgical Techniques for Catheter Placement and 5/6 Nephrectomy in Murine Models of Peritoneal Dialysis
Published on: July 19, 2018
Biocompatible membranes preserve residual renal function in patients undergoing regular hemodialysis
J Hartmann1, H Fricke, H Schiffl
1Department of Internal Medicine, Ludwig-Maximilians University, Munich, Germany.
Abstract:
Initiation of hemodialysis causes a further decrease of residual renal function (RRF). To assess the impact of the biocompatibility of the dialysis membrane, we performed a prospective randomized investigation in 20 normotensive patients with tubulointerstitial nephritis. The patients were randomly allocated to treatment with either a high-flux polysulfone or cellulose membrane over a period of 12 months. RRF, defined by creatinine clearance and daily urine volume, was found to decrease in both groups of patients after the initiation of hemodialysis. Of the two membranes used, however, the cellulose membrane caused an accelerated decrease of RRF (P < 0.05). The better maintenance of RRF in patients treated with polysulfone membranes was associated with higher Kt/V values and increased hematocrit values (P < 0.05). The pathophysiologic mechanism underlying the more rapid decline of RRF could not be explained by intradialytic hypotension, but may be related to the nephrotoxic effects of inflammatory mediators due to bioincompatibility. Therefore, the use of polysulfone membranes might be preferable in patients with relevant RRF.
Related Concept Videos
Dialysis
Dialysis
Acute kidney injury develops suddenly and can be caused by pre-renal causes (e.g., hypovolemia, shock), intrinsic renal causes (e.g., acute tubular necrosis), or post-renal causes (e.g., urinary obstruction). In contrast, chronic renal failure progresses gradually over time and is often...
Extracorporeal Removal of Drugs: Peritoneal Dialysis and Hemodialysis
Extracorporeal Removal of Drugs: Continuous Renal Replacement Therapy
Continuous Renal Replacement Therapy
Hemodialysis I: Introduction

