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首页> 外文期刊>Protein Expression and Purification >Process intensification of fluidized bed dye-ligand adsorption of G3PDH from unclarified disrupted yeast: A case study of the performance of a high-density steel-agarose pellicular adsorbent
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Process intensification of fluidized bed dye-ligand adsorption of G3PDH from unclarified disrupted yeast: A case study of the performance of a high-density steel-agarose pellicular adsorbent

机译:流化床染料-配体从未澄清的破坏酵母中吸附G3PDH的过程强化:以高密度钢-琼脂糖薄膜吸附剂的性能为例

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摘要

The development of a process intensified primary capture step for the direct selective recovery of intracellular proteins from very dense particulate-containing yeast extract has been explored. The purification of glyceraldchyde 3-phosphate dehydrogenase from bakers' yeast was chosen as a potential demonstration of this approach. A high throughput (50% w/v, yeast extracts at a superficial linear velocity of 450 cm h(-1)) was achieved by adoption of a high-density adsorbent (UpFront steel agarose: rho = 2.65 g ml(-1)) derivatized with selective ligand chemistries (Cibacron Blue 3GA). This should ultimately minimize adsorption time and maximize process efficiency of fluidized bed adsorption. (c) 2005 Elsevier Inc. All rights reserved.
机译:已经探索了开发用于从非常稠密的含有微粒的酵母提取物中直接选择性回收细胞内蛋白质的过程强化一级捕获步骤的开发。选择从面包酵母中纯化3-磷酸甘油醛脱氢酶作为该方法的潜在证明。通过使用高密度吸附剂(UpFront钢琼脂糖:rho = 2.65 g ml(-1),可实现高通量(50%w / v,酵母提取物的表面线速度为450 cm h(-1))。 )用选择性配体化学物质(Cibacron Blue 3GA)衍生化。这最终将使吸附时间最短,并使流化床吸附的工艺效率最大化。 (c)2005 Elsevier Inc.保留所有权利。

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