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Using cell engineering and omic tools for the improvement of cell culture processes

机译:使用细胞工程学和omic工具改善细胞培养过程

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摘要

Significant strides have been made in mammalian cell based biopharmaceutical process and cell line development over the past years. With several established mammalian host cell lines and expression systems, optimization of selection systems to reduce development times and improvement of glycosylation patterns are only some of the advances being made to improve cell culture processes. In this article, the advances pertaining to cell line development and cell engineering strategies are discussed. An overview of the cell engineering strategies to enhance cellular characteristics by genetic manipulation are illustrated, focusing on the use of genomics and proteomics tools and their application in such endeavors. Included in this review are some of the early studies using the ‘omic’ technique to understand cellular mechanisms of product synthesis and secretion, apoptosis, cell proliferation and the influence of the physicochemical environment. The article highlights the significance of integrating genomics and proteomics data with the vast amounts of bioprocess data for improved analysis of the biological pathways involved. Further improvements of the techniques and methodologies used are needed but ultimately, the new cell engineering strategies should provide great insight into the regulatory networks within the cell in a bioprocess environment and how to manipulate them to increase overall productivity.
机译:在过去的几年中,基于哺乳动物细胞的生物制药工艺和细胞系开发取得了重大进展。利用几种已建立的哺乳动物宿主细胞系和表达系统,选择系统的优化以减少发育时间和糖基化模式的改善只是改善细胞培养过程的部分进展。在本文中,讨论了有关细胞系开发和细胞工程策略的进展。说明了通过基因操作增强细胞特性的细胞工程策略的概述,重点是基因组学和蛋白质组学工具的使用及其在此类研究中的应用。这篇综述中包括一些使用“组学”技术的早期研究,以了解产物合成和分泌,凋亡,细胞增殖以及理化环境影响的细胞机制。本文强调了将基因组学和蛋白质组学数据与大量生物过程数据相集成的重要性,以改善对所涉及的生物途径的分析。需要进一步改进所使用的技术和方法,但是最终,新的细胞工程策略应提供对生物过程环境中细胞内调节网络以及如何操纵它们以提高整体生产率的深刻见解。

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