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A novel vortex flow reactor for the purification of B-phycoerythrin from Porphyridium cruentum

机译:一种用于从紫球藻中纯化B-藻红蛋白的新型涡流反应器

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摘要

The purification of B-phycoerythrin from a concentrated extract of disrupted Porphyridium cruentum cells was carried out using a new vortex flow reactor design for protein purification. The reactor behaved as an expanded bed in the laminar vortices flow regime where the Streamline DEAE resin was expanded by the axial flow and stabilized by the vortex flow. After the broth culture was centrifuged and resuspended in the adsorption buffer, the concentrated extract of disrupted cells was directly loaded into the vortex flow reactor. The purification of B-phycoerythrin was carried out in two steps: adsorption in the expanded bed and elution from the settled bed. 142.0 mg of B-phycoerythrin was eluted representing a total recovery yield of 86.6%. Prior to B-phycoerythrin purification, the protein adsorption of the vortex flow reactor was characterized through hydrodynamic studies and a dynamic capacity measurement using a standard protein.
机译:使用新的涡流反应器设计进行蛋白质纯化,从破碎的卟啉菌细胞的浓缩提取物中纯化B-藻红蛋白。反应器在层流涡流状态下充当膨胀床,其中Streamline DEAE树脂通过轴向流膨胀并通过涡流稳定。将肉汤培养物离心并重悬在吸附缓冲液中后,将破碎细胞的浓缩提取物直接上样到涡流反应器中。 B-藻红蛋白的纯化分两个步骤进行:在膨胀床中吸附和从沉降床洗脱。洗脱了142.0 mg的B-藻红蛋白,代表总回收率为86.6%。在纯化B-藻红蛋白之前,通过流体动力学研究和使用标准蛋白质的动态容量测量来表征涡流反应器中的蛋白质吸附。

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