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Published on: December 16, 2011
Can one long peritoneal dwell with icodextrin replace two short dwells with glucose?
Joanna Stachowska-Pietka1,2, Jacek Waniewski1, Anna Olszowska3
1Nalecz Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, Warsaw, Poland.
Icodextrin solutions offer improved fluid and solute removal in peritoneal dialysis compared to glucose. One icodextrin exchange can effectively replace two glucose exchanges, enhancing ultrafiltration efficiency and sodium removal.
Area of Science:
- Nephrology
- Biomedical Engineering
- Pharmacology
Background:
- Peritoneal dialysis (PD) solutions are crucial for fluid and solute management in patients with kidney failure.
- Glucose-based solutions are standard but can lead to faster osmotic gradient dissipation.
- Icodextrin-based solutions offer a slower osmotic gradient dissipation, potentially improving ultrafiltration (UF).
Purpose of the Study:
- To investigate the efficacy of replacing glucose-based exchanges with icodextrin in PD.
- To compare fluid and solute removal between icodextrin and glucose solutions under various PD schedules.
- To evaluate the impact of different peritoneal solute transfer rates (PSTRs) on the performance of icodextrin.
Main Methods:
- Numerical simulations using a three-pore model incorporating icodextrin hydrolysis.
- Evaluation of ultrafiltration (UF), absorbed glucose (AbsGluc), absorbed carbohydrates (AbsCHO), and ultrafiltration efficiency (UFE).
- Assessment of removed sodium (ReNa), urea (ReU), and creatinine (ReCr) for 7.5% icodextrin versus glucose solutions (1.36%, 2.27%) across different dwell times and PSTRs.
Main Results:
- Replacing one of three or four daily glucose exchanges with a 7.5% icodextrin long dwell increased fluid and solute removal and UF efficiency.
- Substituting two glucose exchanges with one icodextrin exchange resulted in comparable or higher water removal and increased daily sodium removal.
- Slightly lower daily urea and creatinine removal was observed with icodextrin, regardless of patient PSTR.
Conclusions:
- A single 7.5% icodextrin exchange can effectively replace two glucose-based exchanges.
- Icodextrin demonstrated minimal differences in water and solute removal across PSTR groups, with stable UFE up to 16 hours.
- Icodextrin offers a viable alternative for enhanced fluid and solute management in PD, particularly for long dwell exchanges.
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