Suppr超能文献

大型搅拌和气升式动物细胞生物反应器中的均化和氧传递速率:对生长和生产的一些影响。

Homogenisation and oxygen transfer rates in large agitated and sparged animal cell bioreactors: Some implications for growth and production.

机构信息

BBSRC Centre for Biochemical Engineering, The University of Birmingham, Birmingham, UK.

出版信息

Cytotechnology. 1996 Jan;22(1-3):87-94. doi: 10.1007/BF00353927.

Abstract

Because of concern for cell damage, very low agitation energy inputs have been used in industrial animal cell bioreactors, typical values being two orders of magnitude less than those found in bacterial fermentations. Aeration rates are also very small. As a result, such bioreactors might be both poorly mixed and also unable to provide the higher oxygen up-take rates demanded by more intensive operation. This paper reports experimental studies both of K( L ) a and of mixing (via pH measurements) in bioreactors up to 8 m(3) at Wellcome and of scaled down models of such reactors at Birmingham. Alongside these physical measurements, sensitivity of certain cell lines to continuously controlled dO(2) has been studied and the oxygen up-take rates measured in representative growth conditions. An analysis of characteristic times and mixing theory, together with other recent work showing that more vigorous agitation and aeration can be used especially in the presence of Pluronic F-68, indicates ways of improving their performance. pH gradients offer a special challenge.

摘要

由于对细胞损伤的关注,工业动物细胞生物反应器中使用的搅拌能量输入非常低,典型值比细菌发酵低两个数量级。通气速率也非常小。因此,这样的生物反应器可能混合效果不佳,并且无法提供更密集操作所需的更高氧气摄取率。本文报告了在威康研究所进行的高达 8 立方米的 K(L)a 和混合(通过 pH 测量)的实验研究,以及伯明翰的此类反应器的缩小模型。除了这些物理测量外,还研究了某些细胞系对连续控制的 dO(2)的敏感性,并在代表性生长条件下测量了氧气摄取率。特征时间和混合理论的分析,以及最近的其他工作表明,可以使用更剧烈的搅拌和通气,特别是在存在 Pluronic F-68 的情况下,可以改善它们的性能。pH 梯度带来了特殊的挑战。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验