Membranes with zeolites are encouraging for performing blood dialysis because zeolites can eliminate uremic toxins through molecular sieving. Although the addition of various pore-gen and adsorbent in the membrane can certainly impact the membrane production along with creatinine adsorption, however, it is not directed which pore-gen along with zeolite leads to better performance. The research was aimed at reducing the adsorption of protein-bound and uremic toxins by using mordenite zeolite as an adsorbent while polyethylene glycol and cellulose acetate as a pore generating agent. Membranes were cast by a phase-inversion technique which is cheap and easy to handle as compared to the electro-spinning technique. Through this strategy, the ability to adsorb creatinine and solute rejection percentage were measured and compared against the pristine PSU, when only PEG was used as a pore-modifier and when PEG along with CA was used as a pore-modifier along with a different concentration of zeolite. The experiments revealed that PEG membranes can give a better solute rejection percentage (93%) but with a low creatinine adsorption capacity that is 7654 μg/g and low bio-compatibility (PRT 392 s, HR 0.46%). However, PEG/CA membranes give maximum creatinine adsorption that is 9643 μg/g and also better bio-compatibility (PRT 490 s, HR 0.37%) but with a low BSA rejection (72%) as compared to the pristine PSU and PEG membranes. The present study finds that the concentration of mordenite zeolite affects the membrane performance because its entrapment and large pore size of the membrane decreases solute rejection but increases creatinine uptake level along with the better bio-compatibility.
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http://dx.doi.org/10.1016/j.msec.2021.112260 | DOI Listing |
Zhonghua Gan Zang Bing Za Zhi
December 2024
Center of Infectious Diseases, West China Hospital of Sichuan University, Chengdu61004, China.
To retrospectively analyze the dual plasma molecular adsorption system (DPMAS) treatment technology and the laboratory data before and after treatment in patients with liver failure and refractory hyperbilirubinemia, so as to provide a clinical basis for the prediction and prevention of common related complications. A retrospective study was conducted on 161 cases with liver failure and 68 cases with refractory hyperbilirubinemia who underwent DPMAS treatment in our department from October 2022 to July 2024. The general clinical data characteristics, DPMAS treatment status, DPMAS-related complications, and changes in important laboratory indicators before and after the initial DPMAS treatment in both patient groups were analyzed.
View Article and Find Full Text PDFACS Appl Bio Mater
December 2024
Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.
In 2023, around 850 million people globally were affected by chronic kidney disease, which leads to the retention of uremic toxins and excess fluid in the blood. This study examines the adsorption of these toxins to poly(ethylene oxide) (PEO) films, known for their low-fouling properties. The gold surfaces were treated with 5 mM end-thiolated methoxy-terminated PEO (-PEO) and analyzed using dynamic contact angle measurements, X-ray photoelectron spectroscopy, and spectroscopic ellipsometry to confirm the PEO film's presence and determine chain density.
View Article and Find Full Text PDFAnal Chim Acta
December 2024
Institute of Chemistry, Saratov State University, Astrakhanskaya 83, 410012, Saratov, Russia. Electronic address:
ACS Nano
November 2024
Department of Urology, Zhongnan Hospital of Wuhan University, Cancer Precision Diagnosis and Treatment and Translational Medicine Hubei Engineering Research Center, Wuhan 430072, P. R. China.
J Biomater Sci Polym Ed
September 2024
Department of Chemical Engineering, Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Topi, Pakistan.
The majority of treatments are performed with polysulfone (PSf) membranes. The main issue of the PSf membrane is its lack of endothelial function, leading to various processes like platelet adhesion, protein adsorption, and thrombus formation when comes in contact with blood. The crucial aspect in the development of hemodialysis (HD) membrane materials is a biocompatibility factor.
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