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Studies on improved integrated membrane-based chromatographic process for bioseparation.

机译:改进的基于膜的集成膜色谱法用于生物分离的研究。

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摘要

To improve protein separation and purification directly from a fermentation broth, a novel membrane filtration-cum-chromatography device configuration having a relatively impermeable coated zone near the hollow fiber module outlet has been developed. The integrated membrane filtration-cum-chromatography unit packed with chromatographic beads on the shell side of the hollow fiber unit enjoys the advantages of both membrane filtration and chromatography; it allows one to load the chromatographic media directly from the fermentation broth or lysate and separate the adsorbed proteins through the subsequent elution step in a cyclic process.; Interfacial polymerization was carried out to coat the bottom section of the hollow fiber membrane while leaving the rest of the hollow fiber membrane unaffected. Myoglobin (Mb), bovine serum albumin (BSA) and alpha-lactalbumin (alpha-LA) were used as model proteins in binary mixtures. Separation behaviors of binary protein mixtures were studied in devices using either an ultrafiltration (UF) membrane or a microfiltration (MF) membrane. Experimental results show that the breakthrough time and the protein loading capacities were dramatically improved after coating in both UF and MF modules. For a synthetic yeast fermentation broth feed, the Mb and alpha-LA elution profiles for the four consecutive cyclic runs were almost superimposable. Due to the lower transmembrane flux in this device plus the periodical washing-elution during the chromatographic separation, fouling was not a problem as it is in conventional microfiltration.; A mathematical model describing the hydrodynamic and protein loading behaviors of the integrated device using UF membrane with a coated zone was developed. The simulation results for the breakthrough agree well with the experimental breakthrough curves. The optimal length of the coated zone was obtained from the simulation.; A theoretical analysis of the protein mass transfer was performed using a diffusion-convection model considering the feed-side concentration polarization and the permeate-side concentration gradient formed by the adsorption. The permeate-side adsorption can enhance the observed protein transmission through the membrane considerably at low permeate flux. But the enhancement effect can be neglected at higher permeate flux when convection dominates the total mass transfer process or the proteins are very highly rejected by the membrane.
机译:为了直接从发酵液中改善蛋白质的分离和纯化,已经开发了一种新颖的膜过滤-色谱装置,其在中空纤维组件出口附近具有相对不可渗透的涂层区域。在中空纤维单元壳侧装有色谱珠的集成膜过滤兼色谱单元既具有膜过滤又具有色谱的优势。它允许人们直接从发酵液或裂解物中加载色谱介质,并通过循环过程中的后续洗脱步骤分离吸附的蛋白质。进行界面聚合以涂覆中空纤维膜的底部,而其余的中空纤维膜不受影响。肌红蛋白(Mb),牛血清白蛋白(BSA)和α-乳白蛋白(alpha-LA)被用作二元混合物中的模型蛋白。在使用超滤(UF)膜或微滤(MF)膜的设备中研究了二元蛋白质混合物的分离行为。实验结果表明,在超滤和MF模块中包被后,穿透时间和蛋白质负载量均得到显着提高。对于合成酵母发酵液进料,四个连续循环运行的Mb和α-LA洗脱曲线几乎是重叠的。由于该装置中较低的跨膜通量以及色谱分离过程中的定期洗涤-洗脱,结垢不会像常规微滤那样成为问题。建立了描述使用带涂层区域的超滤膜的集成设备的水动力和蛋白质负载行为的数学模型。突破的仿真结果与实验的突破曲线吻合得很好。从模拟中获得涂层区域的最佳长度。考虑到进料侧浓度极化和由吸附形成的透过物侧浓度梯度,使用扩散-对流模型对蛋白质传质进行了理论分析。渗透物侧的吸附可以在低渗透物通量的情况下显着增强观察到的蛋白质通过膜的传输。但是,当对流在整个传质过程中占主导地位或蛋白质被膜高度排斥时,在较高的通量下,增强作用可以忽略不计。

著录项

  • 作者

    Xu, Yanke.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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