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基于 T 瓶的筛选平台,用于评估和鉴定用于分批补料细胞培养过程的植物水解产物。

A T-flask based screening platform for evaluating and identifying plant hydrolysates for a fed-batch cell culture process.

机构信息

Immunomedics, Inc., 300 American Road, Morris Plains, NJ, 07950, USA,

出版信息

Cytotechnology. 2007 Sep;55(1):15-29. doi: 10.1007/s10616-007-9090-3. Epub 2007 Aug 18.

Abstract

This paper presents a T-flask based screening platform for evaluating and identifying plant hydrolysates for cell culture processes. The development of this platform was driven by an urgent need of replacing a soy hydrolysate that was no longer available for the fed-batch process of recombinant Sp2/0 cell culture expressing a humanized antibody. Series of small-scale experiments in T-flasks and 3-l bioreactors were designed to gain an insight on how this soy hydrolysate benefits the culture. A comprehensive, function-oriented screening platform then was developed, consisting of three T-flask tests, namely the protection test, the growth promotion test, and the growth inhibition test. The cell growth in these three T-flask tests enabled a good prediction of the cell growth in the fed-batch bioreactor process. Fourteen plant hydrolysate candidates were quickly evaluated by this platform for their ability to exert strong protection, high cell growth promotion, and low cell growth inhibition to the culture. One soy hydrolysate was successfully identified to support the comparable cell growth as the discontinued soy hydrolysate. Because of the advantage of using small-scale batch culture to guide bioreactor fed-batch culture, this proposed platform approach has the potential for other applications, such as the medium and feeding optimization, and the mechanism study of plant hydrolysates, in a high throughput format.

摘要

本文提出了一种基于 T 瓶的筛选平台,用于评估和鉴定用于细胞培养过程的植物水解产物。该平台的开发是由替代一种不再可用于重组 Sp2/0 细胞表达人源化抗体的补料分批过程的大豆水解产物的迫切需求所驱动的。在 T 瓶和 3L 生物反应器中进行了一系列小规模实验,以深入了解这种大豆水解产物如何有益于培养。然后开发了一个全面的、面向功能的筛选平台,由三个 T 瓶测试组成,即保护测试、生长促进测试和生长抑制测试。这三个 T 瓶测试中的细胞生长能够很好地预测补料分批生物反应器过程中的细胞生长。通过该平台快速评估了 14 种植物水解产物候选物,以确定它们对培养物具有强大的保护作用、高细胞生长促进作用和低细胞生长抑制作用的能力。成功鉴定出一种大豆水解产物,其支持细胞生长的能力可与已停产的大豆水解产物相媲美。由于使用小规模分批培养来指导生物反应器补料分批培养的优势,这种提出的平台方法具有在高通量格式中进行介质和补料优化以及植物水解产物作用机制研究等其他应用的潜力。

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