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Recovery of lactoferrin from whey using cross-flow cation exchange mixed matrix membrane chromatography

机译:错流阳离子交换混合基质膜色谱法从乳清中回收乳铁蛋白

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A cationic mixed matrix membrane (MMM) was developed for recovery of lactoferrin (LF) from bovine whey by embedding ground SP Sepharose? cation exchange resin into an ethylene vinyl alcohol polymer base membrane. The static LF binding capacity of the cationic MMM was 384 mg g~(-1) membrane or 155 mg mL~(-1) membrane, exceeding the capacity of several commercial adsorptive membranes. Adsorption of lysozyme onto the embedded ion exchange resin was visualized by confocal laser scanning microscopy. The membrane chromatography system was operated in cross-flow mode to minimize fouling and enhance LF binding, resulting in an LF recovery as high as of 91%, with high purity. The system was operated at a constant permeate flux rate of 100L m~(-2) h~(-1), except during the whey loading step, which was run at 50 L m~(-2) h~(-1). This is the first time a cross-flow MMM process has been reported for LF recovery from whey.
机译:开发了一种阳离子混合基质膜(MMM),用于通过包埋地面SP Sepharose?从牛乳清中回收乳铁蛋白(LF)。阳离子交换树脂制成乙烯乙烯醇聚合物基膜。阳离子MMM的静态LF结合能力为384 mg g〜(-1)膜或155 mg mL〜(-1)膜,超过了几种商业吸附膜的能力。通过共聚焦激光扫描显微镜观察溶菌酶在包埋的离子交换树脂上的吸附。膜色谱系统以错流模式运行,以最大程度地减少结垢并增强LF结合,从而使LF回收率高达91%,且纯度高。除了在乳清装载步骤中以50 L m〜(-2)h〜(-1)运行之外,该系统以100L m〜(-2)h〜(-1)的恒定渗透通量速率运行。 。这是首次报道了用于从乳清中回收LF的错流式MMM工艺。

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