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结合膜吸附剂和树脂的三步直接纯化策略的开发。

Development of a 3-step straight-through purification strategy combining membrane adsorbers and resins.

作者信息

Hughson Michael D, Cruz Thayana A, Carvalho Rimenys J, Castilho Leda R

机构信息

Federal University of Rio de Janeiro (UFRJ), COPPE, Chemical Engineering Program, Cell Culture Engineering Laboratory, Ilha do Fundao, Rio de Janeiro, 21941-972, Brazil.

Federal University of Rio de Janeiro (UFRJ), IQ, Biochemistry Program, Ilha do Fundao, Rio de Janeiro, 21941-909, Brazil.

出版信息

Biotechnol Prog. 2017 Jul;33(4):931-940. doi: 10.1002/btpr.2501. Epub 2017 Jun 19.

Abstract

The pressures to efficiently produce complex biopharmaceuticals at reduced costs are driving the development of novel techniques, such as in downstream processing with straight-through processing (STP). This method involves directly and sequentially purifying a particular target with minimal holding steps. This work developed and compared six different 3-step STP strategies, combining membrane adsorbers, monoliths, and resins, to purify a large, complex, and labile glycoprotein from Chinese hamster ovary cell culture supernatant. The best performing pathway was cation exchange chromatography to hydrophobic interaction chromatography to affinity chromatography with an overall product recovery of up to 88% across the process and significant clearance of DNA and protein impurities. This work establishes a platform and considerations for the development of STP of biopharmaceutical products and highlights its suitability for integration with single-use technologies and continuous production methods. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:931-940, 2017.

摘要

以降低成本高效生产复杂生物制药的压力推动了新技术的发展,例如在下游加工中采用直通式加工(STP)。该方法涉及以最少的保持步骤直接且顺序地纯化特定目标物。这项工作开发并比较了六种不同的三步STP策略,将膜吸附剂、整体柱和树脂相结合,以从中国仓鼠卵巢细胞培养上清液中纯化一种大型、复杂且不稳定的糖蛋白。表现最佳的途径是阳离子交换色谱法到疏水相互作用色谱法再到亲和色谱法,整个过程的总产品回收率高达88%,并且能有效清除DNA和蛋白质杂质。这项工作为生物制药产品的STP开发建立了一个平台并提供了相关考量,并突出了其与一次性技术和连续生产方法整合的适用性。© 2017美国化学工程师学会生物技术进展,33:931 - 940,2017年。

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