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Ultra Scale-Down To Define and Improve the Relationship between Flocculation and Disc-Stack Centrifugation

机译:超比例缩小以定义和改善絮凝与碟片式离心机之间的关系

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The recovery of intracellular recombinant proteins produced in microbial systems typically requires physical, chemical or thermal treatment of the cells post-harvest to release the product into the broth, followed by removal of the cell debris using centrifugation or tangential flow filtration. Often a precipitation or flocculation step is introduced to facilitate the liquid—solid separation. Due to the complex nature of the cell materials and the unit operations, it is difficult to obtain data at laboratory scale that closely reflect the performance of these operations on larger scales (pilot or manufacturing). This study uses a predictive scale-down model that enables rapid optimization of the operating conditions for a flocculation followed with a centrifugation step using only small volumes (20 mL) of a high solids (~20% w/w) E. coli heat extract. Results obtained show that, with proper theoretical and experimental consideration to account for high cell density, conditions could be found that improve the beneficial interaction between flocculation and centrifugation. These experiments suggested that adding a higher level of a cationic polymer could substantially increase the strength of the flocculated particles produced, thereby enhancing overall clarification performance in a large scale centrifuge. This was subsequently validated at pilot scale.
机译:回收微生物系统中产生的细胞内重组蛋白通常需要对收获后的细胞进行物理,化学或热处理,以将产物释放到肉汤中,然后使用离心或切向流过滤去除细胞碎片。通常会引入沉淀或絮凝步骤以促进液固分离。由于电池材料和单元操作的复杂性,很难在实验室规模获得与这些操作在较大规模(试点或制造)上的性能紧密相关的数据。这项研究使用了预测性的按比例缩小模型,该模型能够快速优化絮凝的操作条件,随后仅使用小体积(20 mL)的高固体含量(〜20%w / w)大肠杆菌热量提取物进行离心分离步骤。获得的结果表明,在适当的理论和实验考虑下考虑到高细胞密度,可以发现改善絮凝和离心之间有益相互作用的条件。这些实验表明,添加更高含量的阳离子聚合物可以大大提高所产生的絮凝颗粒的强度,从而提高大规模离心机的总体澄清性能。随后在试点规模上对此进行了验证。

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