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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >An integrated expanded bed adsorption process for lactoferrin and immunoglobulin G purification from crude sweet whey
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An integrated expanded bed adsorption process for lactoferrin and immunoglobulin G purification from crude sweet whey

机译:从粗乳清中纯化乳铁蛋白和免疫球蛋白G的集成扩展床吸附工艺

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An integrated expanded bed adsorption process was developed in this study to purify lactoferrin and immunoglobulin G (IgG) from crude sweet whey. The process used two sequential expanded beds packed with a cationic exchanger (Fastline SP) and a mixed-mode resin (Streamline Direct CST-1), respectively. Lactoferrin was isolated in the first expanded bed packed with Fastline SP, and the flow through was loaded into the second expanded bed packed with Streamline Direct CST-1 to separate IgG. Three integration strategies were compared to improve the separation efficiency, especially for the purification of IgG in the second expanded bed. The purities of IgG obtained from these three strategies were 91.9%, 83.8% and 92.4%, and the recoveries were 14.3%, 63.7% and 29.7%, respectively. By efficient integration of the two expanded beds, lactoferrin and IgG were successfully recovered from crude sweet whey with high purities and reasonable recoveries. Moreover, the stream flowed out of the integrated process was collected and separated by ultrafiltration to produce whey protein concentrate. Therefore, sweet whey resource could be fully utilized. The results demonstrated that it is possible to purify multiple proteins from untreated crude resource with a rationally designed expanded bed adsorption process.
机译:本研究开发了一种集成的扩展床吸附工艺,以从粗制甜乳清中纯化乳铁蛋白和免疫球蛋白G(IgG)。该方法使用了两个连续的膨胀床,分别装有阳离子交换剂(Fastline SP)和混合模式树脂(Streamline Direct CST-1)。乳铁蛋白在装有Fastline SP的第一个膨胀床中分离,并将流通液装入装有Streamline Direct CST-1的第二个膨胀床中,以分离IgG。比较了三种整合策略以提高分离效率,尤其是在第二张扩展床中纯化IgG时。通过这三种策略获得的IgG纯度分别为91.9%,83.8%和92.4%,回收率分别为14.3%,63.7%和29.7%。通过有效地整合两个膨胀床,可以从高纯度,合理回收率的粗制甜乳清中成功回收乳铁蛋白和IgG。此外,收集从集成过程中流出的物流,并通过超滤分离以生产乳清蛋白浓缩物。因此,可以充分利用甜乳清资源。结果表明,可以通过合理设计的扩展床吸附工艺从未经处理的原油中纯化多种蛋白质。

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