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发酵对产品稠度的影响。

Effects of fermentation on product consistency.

作者信息

Lubiniecki A S, Anumula K, Callaway J, L'Italien J, Oka M, Okita B, Wasserman G, Zabriskie D, Arathoon R, Builder S

机构信息

SmithKline Beecham Pharmaceuticals, King of Prussia, PA 19406.

出版信息

Dev Biol Stand. 1992;76:105-15.

PMID:1478331
Abstract

A variety of different fermentation processes has been successfully employed to produce consistent protein-based biopharmaceuticals from genetically engineered animal cells. Chinese hamster ovary (CHO) cells were genetically modified to produce recombinant human soluble CD4, tissue plasminogen activator (tPA) or erythropoietin (EPO). Soluble CD4 was collected from extended perfused fermentations of several months' duration, during which some quantitative loss of DNA copy level, mRNA expression level, and fermentation titer were observed. In one extended run, a novel contaminant appeared in intermediates purified from later harvests. However, in all cases, the final soluble CD4 product was consistent in terms of purity and potency. Evaluation of genetic stability for tPA examined both biological traits at the cellular level as well as potency, purity and structure of product derived from cells at various levels of in vitro age; no significant cell age effects were observed. Similarly, evaluation of the EPO product showed that genetically-determined and process-determined traits such as potency, tryptic peptide mapping, and sialylation were consistent from lot to lot. These data exemplified how process design, process validation, and in-process and quality control assays can be used effectively to ensure the consistency of recombinant products derived from cell culture fermentations.

摘要

多种不同的发酵工艺已成功用于从基因工程动物细胞生产一致性的蛋白质类生物制药产品。中国仓鼠卵巢(CHO)细胞经过基因改造以生产重组人可溶性CD4、组织纤溶酶原激活剂(tPA)或促红细胞生成素(EPO)。可溶性CD4是从持续数月的延长灌注发酵中收集的,在此期间观察到DNA拷贝水平、mRNA表达水平和发酵效价出现了一些定量损失。在一次延长运行中,从后期收获物中纯化的中间体中出现了一种新型污染物。然而,在所有情况下,最终的可溶性CD4产品在纯度和效力方面都是一致的。对tPA的遗传稳定性评估考察了细胞水平的生物学特性以及来自不同体外传代次数细胞的产品的效力、纯度和结构;未观察到明显的传代次数效应。同样,对EPO产品的评估表明,诸如效力、胰蛋白酶肽图谱和唾液酸化等由基因决定和工艺决定的特性在批次之间是一致的。这些数据例证了工艺设计、工艺验证以及过程中和质量控制检测如何能够有效地用于确保源自细胞培养发酵的重组产品的一致性。

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