Repository of Research and Investigative Information

Repository of Research and Investigative Information

Shahid Sadoughi University of Medical Sciences

Characterization of the cylindrical electrospun nanofibrous polysulfone membrane for hemodialysis with modelling approach

(2021) Characterization of the cylindrical electrospun nanofibrous polysulfone membrane for hemodialysis with modelling approach. Medical and Biological Engineering and Computing. pp. 1629-1641.

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Official URL: https://www.scopus.com/inward/record.uri?eid=2-s2....

Abstract

Electrospun nanofibrous membrane (ENM) is a membrane fabricated using electrospinning technique which has considerable characteristics such as high porosity, nanometer pore size, and simple process. Although ENMs are being evaluated in various medical applications, the effectiveness for hemodialysis (HD) has not been evaluated carefully. Thus, in this study, the cylindrical electrospun nanofibrous polysulfone (CENP) membrane was fabricated and its performance in the dialysis adequacy in HD patients was evaluated. The CENP membrane was fabricated in a tabular shape. The physical characteristics of the membrane are examined using scanning electron microscope (SEM) images and the permporometry technique. Then, its efficiency in urea and creatinine removal from the blood serum of 21 HD patients was evaluated at a low blood flow rate (BFR) of 200 ml min-1 and dialysate fluid rate (DFR) of 300 ml min-1. Afterwards, the results were modeled and optimized using artificial neural network (ANN) and genetic algorithm (GA), respectively. Finally, sensitive analysis was performed via Spearman�s rank correlation coefficient. The highest dialysis adequacy was observed in membranes with an inner diameter of 3 mm. The CENP membrane belongs to the super high-flux membrane and it could be replaced with existing commercial hollow fiber membranes. Graphical abstract: Figure not available: see fulltext.. © 2021, International Federation for Medical and Biological Engineering.

Item Type: Article
Keywords: Blood; Dialysis; Genetic algorithms; Hemodialyzers; Medical applications; Nanofibers; Neural networks; Pore size; Scanning electron microscopy; Urea, Electrospinning techniques; Electrospun nanofibrous membranes; Hollow fiber membranes; Its efficiencies; Physical characteristics; Polysulfone membranes; Rank correlation coefficient; Sensitive analysis, Dialysis membranes
Page Range: pp. 1629-1641
Journal or Publication Title: Medical and Biological Engineering and Computing
Volume: 59
Number: 7-8
Depositing User: ms soheila Bazm
URI: http://eprints.ssu.ac.ir/id/eprint/11976

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