Voulgaris Ioannis, Chatel Alex, Hoare Mike, Finka Gary, Uden Mark
Dept. of Biochemical Engineering, The Advanced Centre for Biochemical Engineering, UCL, Gower St, London, WC1E 6BT.
Biopharm Process Research, BioPharm R&D, GlaxoSmithKline, R&D, Stevenage, SG1 2NY.
Biotechnol Prog. 2016 Mar;32(2):382-92. doi: 10.1002/btpr.2220. Epub 2016 Jan 12.
Ultra scale-down (USD) methods operating at the millilitre scale were used to characterise full-scale processing of E. coli fermentation broths autolysed to different extents for release of a domain antibody. The focus was on the primary clarification stages involving continuous centrifugation followed by depth filtration. The performance of this sequence was predicted by USD studies to decrease significantly with increased extents of cell lysis. The use of polyethyleneimine reagent was studied to treat the lysed cell broth by precipitation of soluble contaminants such as DNA and flocculation of cell debris material. The USD studies were used to predict the impact of this treatment on the performance and here it was found that the fermentation could be run to maximum productivity using an acceptable clarification process (e.g., a centrifugation stage operating at 0.11 L/m(2) equivalent gravity settling area per hour followed by a resultant required depth filter area of 0.07 m(2) /L supernatant). A range of USD predictions was verified at the pilot scale for centrifugation followed by depth filtration. © 2015 American Institute of Chemical Engineers Biotechnol. Prog., 32:382-392, 2016.
采用在毫升规模下运行的超微缩(USD)方法来表征大肠杆菌发酵液不同程度自溶以释放结构域抗体的全规模加工过程。重点在于初级澄清阶段,包括连续离心后进行深层过滤。USD研究预测,随着细胞裂解程度的增加,该流程的性能会显著下降。研究了使用聚乙烯亚胺试剂处理裂解后的细胞培养液,通过沉淀DNA等可溶性污染物以及絮凝细胞碎片物质来实现。USD研究用于预测这种处理对性能的影响,结果发现可以通过可接受的澄清过程(例如,离心阶段以每小时0.11 L/m²等效重力沉降面积运行,随后所需的深层过滤面积为0.07 m²/L上清液)将发酵运行至最大生产率。在中试规模下对离心后进行深层过滤的一系列USD预测进行了验证。© 2015美国化学工程师学会生物技术进展,32:382 - 392,2016。