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Process integration of cell disruption and fluidised bed adsorption of microbial enzymes: application to the retro-design of the purification of L-asparaginase

机译:细胞破碎和流化床吸附微生物酶的过程整合:应用于L-天冬酰胺酶纯化的逆向设计

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摘要

The practical feasibility and generic applicability of the direct integration in the same time frame of cell disruption by bead milling with the capture of intracellular products by fluidised bed adsorption has been demonstrated. Pilot-scale purification of the enzyme L-asparaginase from unclarified Erwinia chrysanthemi disruptates exploiting this novel approach yielded an interim product which rivalled or bettered that produced by the current commercial process employing discrete operations of alkaline lysis, centrifugal clarification and batch adsorption. In addition to improved yield and quality of product, the process time during primary stages of purification was greatly diminished. Two cation exchange adsorbents, CM HyperD LS (Biosepra/Life Technologies) and SP UpFront (custom made SP form of a prototype stainless steel/agarose matrix, UpFront Chromatography) were physically and biochemically evaluated for such direct product sequestration. Differences in performance with regard to product capacity and adsorption/desorption kinetics were demonstrated and are discussed with respect to the designof adsorbents for specific applications. In any purification of L-asparaginase (pI=8.6), product-debris interactions commonly diminish the recovery of available product. It was demonstrated herein, that immediate disruptate exposure to a fluidised bed adsorbent promoted concomitant reduction of product in the liquid phase, which clearly counter-acted the product-debris interactions to the benefit of overall product yield.
机译:通过珠磨与通过流化床吸附捕获细胞内产物而直接整合在同一时间范围内破坏细胞的实际可行性和通用性已得到证明。从未澄清的菊花欧文氏菌中试纯化L-天冬酰胺酶破坏了这种新方法的开发,产生了一种中间产物,该产物与通过碱裂解,离心澄清和分批吸附的离散操作的当前商业过程所产生的产物相媲美或更好。除了提高产量和产品质量外,纯化初级阶段的处理时间也大大减少。物理和生化评估了两种阳离子交换吸附剂CM HyperD LS(Biosepra / Life Technologies)和SP UpFront(原型不锈钢/琼脂糖基质的定制SP形式,UpFront色谱),用于这种直接的产品螯合。证明了在产品容量和吸附/解吸动力学方面的性能差异,并针对特定应用的吸附剂设计进行了讨论。在任何纯化的L-天冬酰胺酶(pI = 8.6)中,产物-碎片之间的相互作用通常会降低可用产物的回收率。在本文中证明,立即中断流化床吸附剂的暴露促进了液相中产物的同时还原,这明显抵消了产物-碎片的相互作用,从而有利于总产物收率。

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  • 作者

    Bierau Horst;

  • 作者单位
  • 年度 2001
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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