Suppr超能文献

从盘式到褶式滤芯的除菌级膜过滤器放大:操作参数和溶液性质的影响

Scale-up of Sterilizing-grade Membrane Filters from Discs to Pleated Cartridges: Effects of Operating Parameters and Solution Properties.

作者信息

Kumar Anil, Martin Jerold, Kuriyel Ralf

机构信息

Pall Life Sciences, Westborough, MA; and.

Pall Life Sciences, Port Washington, NY.

出版信息

PDA J Pharm Sci Technol. 2015 Jan-Feb;69(1):74-87. doi: 10.5731/pdajpst.2015.01006.

Abstract

UNLABELLED

For direct flow sterilizing-grade filtration, a linear scale-up between the performance of discs and pleated filter cartridges has traditionally been assumed. Linear scale-up assumes that the filtration performances, defined here as filter flux and capacity, scale linearly with the membrane area and remains independent of the selected device formats. However, experimental results show that the later assumption does not hold in all cases. In this article, we investigated the effect of solution properties and operating parameters on scale-up with both fouling and non-fouling feeds. For non-fouling solutions, such as buffers, the flux ratio, defined as α, between pleated filter cartridges and disc filters range from 0.5 to 0.85. For complex fouling feeds, such as protein or cell culture media solutions, the ratio of initial flux between pleated filter cartridges and discs was the same as the flux ratio, α. For fouling solutions, the ratio of filtration capacity between pleated cartridges and discs, referred to as capacity ratio, β, was variable. We found that β was sensitive to the particle size distribution of the challenge solution and the mode of filtration operation (constant pressure or constant flux), whereas it was less sensitive to the magnitude of the operating pressure or flux and concentration of the fouling species. For most conditions tested, β among pleated cartridges and discs was within ±20% variation of unity. At the end, we present a modified standard model that accounts for both variations in flux ratio, α, as well as capacity ratios, β, for estimating the requirement for membrane area at manufacturing scale with proteinacious fouling and non-protein/non-fouling feeds. The data show that for cases where filtration is capacity controlled, flux ratios between the pleated filter and disc are not critical. For such cases, the use of a high-area laid-over pleated cartridge construction allows for reducing the number of 10 inch pleated filter cartridges required to process the batch volume.

LAY ABSTRACT

Scale-up remains at the core of a process development. For direct flow sterilizing-grade filtration, a linear scale-up between the performance of discs and pleated filter cartridges has traditionally been assumed. Linear scale-up assumes that the filtration performances, defined here as filter flux and capacity, scale linearly with the membrane area and remains independent of the selected device formats. However, experimental results show that the later assumption does not hold in all cases. We investigated the effect of solution properties and operating parameters on scale-up from membrane disc to pleated filter cartridges. Typical values of flux and capacity ratios and the guidelines on scale-up of direct flow filters from bench-scale to manufacturing-scale are presented. Specifically, we found that the flux ratio for pleated filter and small-scale disc range from 0.5 to 0.85, and capacity ratio for most cases is within ±20% variation of unity, with some exceptions.

摘要

未标注

对于直流式除菌级过滤,传统上假定圆盘过滤器和折叠式滤芯的性能之间呈线性放大关系。线性放大假定过滤性能(在此定义为过滤通量和容量)与膜面积呈线性比例变化,且与所选的装置形式无关。然而,实验结果表明,后一个假定并非在所有情况下都成立。在本文中,我们研究了溶液性质和操作参数对有污染和无污染进料放大过程的影响。对于无污染溶液,如缓冲液,折叠式滤芯和圆盘过滤器之间的通量比(定义为α)在0.5至0.85之间。对于复杂的污染进料,如蛋白质或细胞培养基溶液,折叠式滤芯和圆盘过滤器之间的初始通量比与通量比α相同。对于有污染的溶液,折叠式滤芯和圆盘过滤器之间的过滤容量比(称为容量比β)是可变的。我们发现β对挑战性溶液的粒径分布和过滤操作模式(恒压或恒流)敏感,而对操作压力或通量的大小以及污染物质的浓度不太敏感。在大多数测试条件下,折叠式滤芯和圆盘过滤器之间的β在±20%的统一变化范围内。最后,我们提出了一个改进的标准模型,该模型考虑了通量比α以及容量比β的变化,用于估计在生产规模下处理含蛋白质污染和非蛋白质/无污染进料时的膜面积需求。数据表明,对于过滤受容量控制的情况,折叠式过滤器和圆盘过滤器之间的通量比并不关键。对于此类情况,使用大面积铺设的折叠式滤芯结构可以减少处理批量所需的10英寸折叠式滤芯数量。

摘要

放大仍然是工艺开发的核心。对于直流式除菌级过滤,传统上假定圆盘过滤器和折叠式滤芯的性能之间呈线性放大关系。线性放大假定过滤性能(在此定义为过滤通量和容量)与膜面积呈线性比例变化,且与所选的装置形式无关。然而,实验结果表明,后一个假定并非在所有情况下都成立。我们研究了溶液性质和操作参数对从膜盘到折叠式滤芯放大过程的影响。给出了通量和容量比的典型值以及直流式过滤器从实验室规模放大到生产规模的指导原则。具体而言,我们发现折叠式过滤器和小型圆盘过滤器之间的通量比在0.5至0.85之间,并且在大多数情况下容量比在±20%的统一变化范围内,但有一些例外。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验