Recent advances in dialysis membranes
Autor: | Bernard Canaud |
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Rok vydání: | 2021 |
Předmět: |
Large molecular weight
Dialysis membranes Polymers business.industry Chemistry medicine.medical_treatment Hemodiafiltration Dialysis tubing Membrane technology Solutions Membrane Renal Dialysis Nephrology Internal Medicine medicine Humans Hemodialysis Process engineering business Dialysis (biochemistry) Clearance |
Zdroj: | Current Opinion in Nephrology & Hypertension. 30:613-622 |
ISSN: | 1473-6543 1062-4821 |
DOI: | 10.1097/mnh.0000000000000744 |
Popis: | Purpose of review Improvement in hemodialysis treatment and membrane technology are focused on two aims: the first one is to achieve a better control of circulating uremic solutes by enhancing removal capacity and by broadening molecular weight spectrum of solutes cleared; the second one is to prevent inflammation by improving hemocompatibility of the global dialysis system. Recent findings Despite impressive progresses in polymers chemistry few hazards are still remaining associated with leaching or sensitization to polymer additives. Research has focused on developing more stable polymers by means of additives or processes aiming to minimize such risks. Membrane engineering manufacturing with support of nanocontrolled spinning technology has opened up membrane to middle and large molecular weight substances, while preserving albumin losses. Combination of diffusive and enhanced convective fluxes in the same hemodialyzer module, namely hemodiafiltration, provides today the highest solute removal capacity over a broad spectrum of solutes. Summary Dialysis membrane is a crucial component of the hemodialysis system to optimize solute removal efficacy and to minimize blood membrane biological reactions. Hemodialyzer is much more than a membrane. Dialysis membrane and hemodialyzer choice are parts of a treatment chain that should be operated in optimized conditions and adjusted to patient needs and tolerance, to improve patient outcomes. |
Databáze: | OpenAIRE |
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