Kim Seung-Chul, An Sora, Kim Hyun-Ki, Park Beom-Soo, Na Kyu-Heum, Kim Byung-Gee
Research Institute, Dong-A Socio-Holdings Co., Ltd., Yong-in 449-900, Republic of Korea; Interdisciplinary Program for Bioengineering, Seoul National University, Seoul 151-742, Republic of Korea.
Research Institute, Dong-A Socio-Holdings Co., Ltd., Yong-in 449-900, Republic of Korea.
J Biosci Bioeng. 2016 May;121(5):561-5. doi: 10.1016/j.jbiosc.2015.10.001. Epub 2016 Feb 20.
This study describes the development and experimental verification of a modified harvest system to enhance Factor VIII (FVIII) yield in an alternating tangential flow (ATF) perfusion culture. The main innovation of the modified harvest system is the use of check and pinch valves, eliminating the need of a peristaltic pump for harvest. The system was applied to perfusion cultures of Chinese hamster ovary cells, which co-express both recombinant human FVIII (rhFVIII) and von Willebrand factor (vWF). The modified harvest system showed comparable cell growth with the conventional harvest system using a peristaltic pump. The perfusion rate was successfully controlled using the system. In addition, the modified harvest system achieved an approximately 13.6-fold increase in the final concentration yield of FVIII activity and a 1.47-fold increase in the production yield of FVIII activity compared with a peristaltic pump. Enhancement of the yield of FVIII activity resulted from the reduction of FVIII antigen (
Ag) retention. As a result of transmembrane pressure (TMP) measurement, the reduction of the retained
Ag was due to the increased TMP, which was caused by the characteristic function of a check valve, compared with a peristaltic harvest system. The modified harvest system developed in this study could be useful to enhance the production yield of other recombinant proteins in ATF perfusion culture.
本研究描述了一种改良收获系统的开发及实验验证,该系统用于提高交替切向流(ATF)灌注培养中凝血因子VIII(FVIII)的产量。改良收获系统的主要创新之处在于使用了止回阀和夹管阀,无需蠕动泵进行收获。该系统应用于共表达重组人FVIII(rhFVIII)和血管性血友病因子(vWF)的中国仓鼠卵巢细胞的灌注培养。改良收获系统与使用蠕动泵的传统收获系统相比,细胞生长情况相当。使用该系统成功控制了灌注速率。此外,与蠕动泵相比,改良收获系统使FVIII活性的最终浓度产量提高了约13.6倍,FVIII活性的生产产量提高了1.47倍。FVIII活性产量的提高源于FVIII抗原(FVIII:Ag)保留量的减少。通过跨膜压力(TMP)测量发现,与蠕动收获系统相比,FVIII:Ag保留量的减少是由于止回阀的特性功能导致TMP升高所致。本研究开发的改良收获系统可能有助于提高ATF灌注培养中其他重组蛋白的生产产量。