Dept. of Biochemical Engineering, The Advanced Centre for Biochemical Engineering, University College London, Torrington Place, London, WC1E 7JE, UK.
Biotechnol Prog. 2010 Mar-Apr;26(2):466-76. doi: 10.1002/btpr.327.
Ultra scale-down (USD) approach is a powerful tool to predict large-scale process performance by using very small amounts of material. In this article, we present a method to mimic flux and transmission performance in a labscale crossflow operation by an USD rotating disc filter (RDF). The Pellicon 2 labscale system used for evaluation of the mimic can readily be related to small pilot and industrial scale. Adopted from the pulsed sample injection technique by Ghosh and Cui (J Membr Sci. 2000;175:5-84), the RDF has been modified by building in inserts to allow the flexibility of the chamber volume, so that only 1.5 mL of processing material is required for each diafiltration experiment. The reported method enjoys the simplicity of dead-end mode operation with accurate control of operation conditions that can mimic well the crossflow operation in large scale. Wall shear rate correlations have been established for both the labscale cassette and the USD device, and a mimic has been developed by operating both scales under conditions with equivalent averaged shear rates. The studies using E. coli lysate show that the flux vs. transmembrane pressure profile follows a first-order model, and the transmission of antibody fragment (Fab') is independent of transmembrane pressure. Predicted flux and transmission data agreed well with the experimental results of a labscale diafiltration where the cassette resistance was considered.
超缩比(USD)方法是一种通过使用少量材料来预测大规模过程性能的强大工具。在本文中,我们提出了一种通过 USD 旋转圆盘过滤器(RDF)模拟实验室规模错流操作中通量和传输性能的方法。用于评估模拟的 Pellicon 2 实验室系统可以很容易地与小型试验和工业规模相关联。采用 Ghosh 和 Cui(J Membr Sci. 2000;175:5-84)提出的脉冲样品注入技术,通过内置插件对 RDF 进行了修改,允许腔室体积具有灵活性,因此每个渗滤实验仅需要 1.5 毫升处理材料。所报道的方法具有简单的死端模式操作的优点,并且可以准确控制操作条件,从而可以很好地模拟大规模错流操作。已经为实验室规模盒式装置和 USD 装置建立了壁剪切速率相关性,并通过在具有等效平均剪切速率的条件下操作这两个规模来开发了模拟。使用大肠杆菌裂解物的研究表明,通量与跨膜压力曲线遵循一级模型,并且抗体片段(Fab')的传输与跨膜压力无关。预测的通量和传输数据与考虑盒式阻力的实验室规模渗滤实验的实验结果吻合良好。