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首页> 外文期刊>Separation and Purification Technology >A practical implementation and exploitation of ATPS for intensive processing of biological feedstock: A novel approach for heavily biological feedstock loaded ATPS
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A practical implementation and exploitation of ATPS for intensive processing of biological feedstock: A novel approach for heavily biological feedstock loaded ATPS

机译:密集处理生物原料的ATPS的实际实施和开发:重载生物原料的ATPS的新方法

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Aqueous two-phase systems (ATPS) are sensitive to loading with more than modest quantities (>5%, w/w, of system) of biological feedstock due to the contribution of contained macromolecular components (additional to phase-forming chemicals) to the phase diagram in respect of the binodal, tie-line length (TLL) and volume ratio. The present work demonstrates the method in the development and monitoring of ATPS loaded with high concentrations of citrated bovine blood (10-70%, w/w, of system) characterised by varied states of lysis. Variation of protein concentration and extent of cell debris could be accounted for in terms of effective tie-line length (TLLe) values determined by distribution analysis of radiolabelled analytes (DARA) and accommodated by adjustments to phase chemical compositions. The method also provided an opportunity for careful design and control of ATPS formed by adding blood feedstocks to previously monophasic systems (i.e. below the binodal) where phenomena associated with interfacial tension and additional phase formation is sensitively balanced. Such a monophasic/biphasic transformation, uniquely initiated by the phase forming properties of the biological feedstock, facilitates a reduction in the inventory of phase-forming chemicals required to achieve separations.
机译:水相两相系统(ATPS)对载有适量(> 5%(w / w)的系统生物原料)的负载敏感,这是由于所含大分子组分(除相形成化学物质外)对生物原料的贡献。相线图,连接线长度(TLL)和体积比的相位图。本工作证明了开发和监测载有高浓度柠檬酸牛血(系统的10-70%,w / w)的ATPS的方法,该方法的裂解状态多种多样。蛋白质浓度和细胞碎片程度的变化可以通过有效的联系线长度(TLLe)值来解释,该值由放射性标记分析物(DARA)的分布分析确定,并通过调整相化学成分来适应。该方法还提供了仔细设计和控制ATPS的机会,该ATPS是通过将血液原料添加到先前的单相系统(即,在比诺达尔(binodal)以下)中而形成的,该单相系统中与界面张力和附加相形成相关的现象被敏感地平衡。由生物原料的相形成特性唯一引发的这种单相/双相转化,有助于减少实现分离所需的相形成化学品的库存。

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