Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal

In this study, a highly biocompatible adsorptive membrane is developed for haemodialysis application. Silica/α-mangostin hybrid nanoparticle was incorporated into polysulfone (PSf) based membrane to enhance the biocompatibility and the adsorption capacity of the membrane. The PSf based membranes wer...

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Published in:Journal of Environmental Chemical Engineering
Main Author: Mansur S.; Othman M.H.D.; Abidin M.N.Z.; Ismail A.F.; Abdul Kadir S.H.S.; Goh P.S.; Hasbullah H.; Ng B.C.; Abdullah M.S.; Mustafar R.
Format: Article
Language:English
Published: Elsevier Ltd 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85112643592&doi=10.1016%2fj.jece.2021.106141&partnerID=40&md5=fb2e76b5b2ef9ffe79d05345f84bc238
id 2-s2.0-85112643592
spelling 2-s2.0-85112643592
Mansur S.; Othman M.H.D.; Abidin M.N.Z.; Ismail A.F.; Abdul Kadir S.H.S.; Goh P.S.; Hasbullah H.; Ng B.C.; Abdullah M.S.; Mustafar R.
Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
2021
Journal of Environmental Chemical Engineering
9
5
10.1016/j.jece.2021.106141
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85112643592&doi=10.1016%2fj.jece.2021.106141&partnerID=40&md5=fb2e76b5b2ef9ffe79d05345f84bc238
In this study, a highly biocompatible adsorptive membrane is developed for haemodialysis application. Silica/α-mangostin hybrid nanoparticle was incorporated into polysulfone (PSf) based membrane to enhance the biocompatibility and the adsorption capacity of the membrane. The PSf based membranes were fabricated via dry-wet phase inversion technique and characterised based on scanning electron microscopy and contact angle measurement. The effects of silica/α-mangostin nanoparticle incorporation into PSf membrane were evaluated in terms of permeability, p-cresol adsorption capacity, urea, and creatinine removal capabilities, bovine serum albumin rejection and p-cresol dynamic adsorption. The biocompatibility assessment was done based on platelet adhesion, antioxidant properties, and complement activation of the membrane. The incorporation of the nanoparticle into PSf based membrane helped to smoothen the surface of the membrane and enhanced its hydrophilicity of the membrane by 12.54%. The presence of silica/α-mangostin in the membrane enhanced the adsorption capacity of the membrane by 20.92% with adsorption capacity of 55.64 mg/g at 500 mg/L initial concentration. The modified PSf membrane had also successfully improved the biocompatibility of the membrane by enhancing the scavenging activity of hydrogen peroxide and nitrogen oxide by 61.8% and 36%, respectively and inhibited the formation of C5a by 27.27%. The developed biocompatible PSf based adsorptive membrane has a good potential to be used for haemodialysis application. © 2021 Elsevier Ltd
Elsevier Ltd
22133437
English
Article

author Mansur S.; Othman M.H.D.; Abidin M.N.Z.; Ismail A.F.; Abdul Kadir S.H.S.; Goh P.S.; Hasbullah H.; Ng B.C.; Abdullah M.S.; Mustafar R.
spellingShingle Mansur S.; Othman M.H.D.; Abidin M.N.Z.; Ismail A.F.; Abdul Kadir S.H.S.; Goh P.S.; Hasbullah H.; Ng B.C.; Abdullah M.S.; Mustafar R.
Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
author_facet Mansur S.; Othman M.H.D.; Abidin M.N.Z.; Ismail A.F.; Abdul Kadir S.H.S.; Goh P.S.; Hasbullah H.; Ng B.C.; Abdullah M.S.; Mustafar R.
author_sort Mansur S.; Othman M.H.D.; Abidin M.N.Z.; Ismail A.F.; Abdul Kadir S.H.S.; Goh P.S.; Hasbullah H.; Ng B.C.; Abdullah M.S.; Mustafar R.
title Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
title_short Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
title_full Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
title_fullStr Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
title_full_unstemmed Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
title_sort Enhanced adsorption and biocompatibility of polysulfone hollow fibre membrane via the addition of silica/alpha-mangostin hybrid nanoparticle for uremic toxins removal
publishDate 2021
container_title Journal of Environmental Chemical Engineering
container_volume 9
container_issue 5
doi_str_mv 10.1016/j.jece.2021.106141
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85112643592&doi=10.1016%2fj.jece.2021.106141&partnerID=40&md5=fb2e76b5b2ef9ffe79d05345f84bc238
description In this study, a highly biocompatible adsorptive membrane is developed for haemodialysis application. Silica/α-mangostin hybrid nanoparticle was incorporated into polysulfone (PSf) based membrane to enhance the biocompatibility and the adsorption capacity of the membrane. The PSf based membranes were fabricated via dry-wet phase inversion technique and characterised based on scanning electron microscopy and contact angle measurement. The effects of silica/α-mangostin nanoparticle incorporation into PSf membrane were evaluated in terms of permeability, p-cresol adsorption capacity, urea, and creatinine removal capabilities, bovine serum albumin rejection and p-cresol dynamic adsorption. The biocompatibility assessment was done based on platelet adhesion, antioxidant properties, and complement activation of the membrane. The incorporation of the nanoparticle into PSf based membrane helped to smoothen the surface of the membrane and enhanced its hydrophilicity of the membrane by 12.54%. The presence of silica/α-mangostin in the membrane enhanced the adsorption capacity of the membrane by 20.92% with adsorption capacity of 55.64 mg/g at 500 mg/L initial concentration. The modified PSf membrane had also successfully improved the biocompatibility of the membrane by enhancing the scavenging activity of hydrogen peroxide and nitrogen oxide by 61.8% and 36%, respectively and inhibited the formation of C5a by 27.27%. The developed biocompatible PSf based adsorptive membrane has a good potential to be used for haemodialysis application. © 2021 Elsevier Ltd
publisher Elsevier Ltd
issn 22133437
language English
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