首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Simultaneous anion and cation exchange chromatography of whey proteins using a customizable mixed matrix membrane
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Simultaneous anion and cation exchange chromatography of whey proteins using a customizable mixed matrix membrane

机译:使用可定制的混合基质膜同时进行乳清蛋白的阴离子和阳离子交换色谱

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摘要

Membrane chromatography can overcome some of the limitations of packed bed column chromatography but preparation of adsorptive membranes usually involves complex and harsh chemical modifications. Mixed matrix membranes (MMMs) require only the physical incorporation of an ion exchange resin into the membrane polymer solution prior to membrane casting. An advantage of MMMs not previously exploited is that resins with differing adsorptive functionalities can be conveniently embedded within a single membrane at any desired ratio. This presents the opportunity to customize an adsorptive membrane to suit the expected protein profile of a raw feed stream e.g. bovine whey or serum. In this work, a novel mixed mode interaction MMM customized to extract all major proteins from bovine whey was synthesized in a single membrane by incorporating 42.5wt% Lewatit MP500 anionic resin and 7.5wt% SP Sepharose cationic resin into an ethylene vinyl alcohol base polymer casting solution. The mixed mode MMM developed was able to bind both basic and acidic proteins simultaneously from whey, with binding capacities of 7.16±2.24mg α-lactalbuming~(-1) membrane, 11.40±0.73mg lactoferrin (LF)g~(-1) membrane, 59.21±9.90mg β-lactoglobuling~(-1) membrane and 6.79±1.11mg immunoglobulin Gg~(-1) membrane (85mg total proteing~(-1) membrane) during batch fractionation of LF-spiked whey. A 1000m~2 spiral-wound membrane module (200L membrane volume, 1m~3 module volume) is predicted to be able to produce approximately 25kg total whey protein per h.
机译:膜色谱法可以克服填充床柱色谱法的某些局限性,但吸附膜的制备通常涉及复杂而苛刻的化学修饰。混合基质膜(MMM)仅需要在膜浇铸之前将离子交换树脂物理掺入到膜聚合物溶液中即可。以前未开发的MMM的优点是,具有不同吸附功能的树脂可以方便地以任何所需比例嵌入到单个膜中。这提供了定制吸附膜以适合原料进料流例如牛乳清或血清。在这项工作中,通过将42.5wt%的Lewatit MP500阴离子树脂和7.5wt%的SP Sepharose阳离子树脂掺入乙烯乙烯醇基聚合物铸件中,在单个膜上合成了定制的新型混合模式相互作用MMM,该混合物可从牛乳清中提取所有主要蛋白质。解。所开发的混合模式MMM能够同时结合乳清中的碱性蛋白和酸性蛋白,结合能力为7.16±2.24mgα-乳清蛋白〜(-1)膜,11.40±0.73mg乳铁蛋白(LF)g〜(-1) LF加标乳清的分馏过程中,分别使用59.21±9.90mgβ-乳球蛋白(-1)膜和6.79±1.11mg免疫球蛋白Gg〜(-1)膜(总蛋白85mg(-1)膜)。预计1000m〜2螺旋缠绕膜组件(200L膜体积,1m〜3模块体积)每小时可生产约25kg乳清蛋白。

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