Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation

Membrane chromatography can overcome the limitation of packed bed chromatography in terms of high processing speed, low pressure drop and acceptable protein binding capacity. In the current study, multiple interactions mixed matrix membrane (MMM) chromatography was prepared for batch fractionation o...

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Main Authors: Chan, Fong Shiew, Nurul, Shamsinar, Nurul Izwanie, Rasli, Syed Mohd Saufi, Tuan Chik
Format: Article
Language:English
Published: Penerbit Universiti Teknologi Malaysia 2015
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/10093/1/Multiple%20Interactions%20Mixed%20Matrix%20Membrane%20Chromatography%20Using%20Anion%20And%20Cation%20Exchanger%20Resin%20For%20Whey%20Protein%20Fractionation.pdf
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author Chan, Fong Shiew
Nurul, Shamsinar
Nurul Izwanie, Rasli
Syed Mohd Saufi, Tuan Chik
author_facet Chan, Fong Shiew
Nurul, Shamsinar
Nurul Izwanie, Rasli
Syed Mohd Saufi, Tuan Chik
author_sort Chan, Fong Shiew
collection UMP
description Membrane chromatography can overcome the limitation of packed bed chromatography in terms of high processing speed, low pressure drop and acceptable protein binding capacity. In the current study, multiple interactions mixed matrix membrane (MMM) chromatography was prepared for batch fractionation of whey protein. Lewatit CNP105 cation exchanger resin and Lewatit MP500 anion exchanger resin were mixed into two different membrane polymer solutions of ethylene vinyl alcohol (EVAL) and cellulose acetate (CA). The membranes were test to bind lactoferrin (LF)-spiked whey. The binding capacity for acidic whey proteins to the MMM follows the order of β-lactoglobulin (β-Lac) > BSA > α-lactalbumin. The binding capacity of EVAL MMM is higher than CA based MMM, more prominently for β-Lac. The average binding capacity of β-Lac in the EVAL and CA MMM are 50.827 mg β-Lac/ g MMM and 19.174 mg β-Lac /g MMM, respectively. High purity of β-Lac and LF were recovered from the MMM after the elution as shown by the SDS PAGE gel.
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spelling UMPir100932018-04-11T03:34:10Z http://umpir.ump.edu.my/id/eprint/10093/ Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation Chan, Fong Shiew Nurul, Shamsinar Nurul Izwanie, Rasli Syed Mohd Saufi, Tuan Chik TP Chemical technology Membrane chromatography can overcome the limitation of packed bed chromatography in terms of high processing speed, low pressure drop and acceptable protein binding capacity. In the current study, multiple interactions mixed matrix membrane (MMM) chromatography was prepared for batch fractionation of whey protein. Lewatit CNP105 cation exchanger resin and Lewatit MP500 anion exchanger resin were mixed into two different membrane polymer solutions of ethylene vinyl alcohol (EVAL) and cellulose acetate (CA). The membranes were test to bind lactoferrin (LF)-spiked whey. The binding capacity for acidic whey proteins to the MMM follows the order of β-lactoglobulin (β-Lac) > BSA > α-lactalbumin. The binding capacity of EVAL MMM is higher than CA based MMM, more prominently for β-Lac. The average binding capacity of β-Lac in the EVAL and CA MMM are 50.827 mg β-Lac/ g MMM and 19.174 mg β-Lac /g MMM, respectively. High purity of β-Lac and LF were recovered from the MMM after the elution as shown by the SDS PAGE gel. Penerbit Universiti Teknologi Malaysia 2015 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/10093/1/Multiple%20Interactions%20Mixed%20Matrix%20Membrane%20Chromatography%20Using%20Anion%20And%20Cation%20Exchanger%20Resin%20For%20Whey%20Protein%20Fractionation.pdf Chan, Fong Shiew and Nurul, Shamsinar and Nurul Izwanie, Rasli and Syed Mohd Saufi, Tuan Chik (2015) Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation. Jurnal Teknologi (Sciences and Engineering), 75 (1). pp. 259-263. ISSN 0127-9696 (print); 2180-3722 (online). (Published) http://dx.doi.org/10.11113/jt.v75.3621 doi: 10.11113/jt.v75.3621
spellingShingle TP Chemical technology
Chan, Fong Shiew
Nurul, Shamsinar
Nurul Izwanie, Rasli
Syed Mohd Saufi, Tuan Chik
Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation
title Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation
title_full Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation
title_fullStr Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation
title_full_unstemmed Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation
title_short Multiple Interactions Mixed Matrix Membrane Chromatography Using Anion and Cation Exchanger Resin for Whey Protein Fractionation
title_sort multiple interactions mixed matrix membrane chromatography using anion and cation exchanger resin for whey protein fractionation
topic TP Chemical technology
url http://umpir.ump.edu.my/id/eprint/10093/1/Multiple%20Interactions%20Mixed%20Matrix%20Membrane%20Chromatography%20Using%20Anion%20And%20Cation%20Exchanger%20Resin%20For%20Whey%20Protein%20Fractionation.pdf
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AT nurulizwanierasli multipleinteractionsmixedmatrixmembranechromatographyusinganionandcationexchangerresinforwheyproteinfractionation
AT syedmohdsaufituanchik multipleinteractionsmixedmatrixmembranechromatographyusinganionandcationexchangerresinforwheyproteinfractionation