Riesenberg D, Guthke R
Hans Knöll Institute for Natural Product Research, Jena, Germany.
Appl Microbiol Biotechnol. 1999 Apr;51(4):422-30. doi: 10.1007/s002530051412.
High-cell-density cultivation (HCDC) is required to improve microbial biomass and product formation substantially. An overview of HCDC is given for microorganisms including bacteria, archae and eukarya (yeasts). Problems encountered by HCDC and their possible solutions are discussed. Improvements of strains, different types of bioreactors and cultivation strategies for successful HCDC are described. Stirred-tank reactors with and without cell retention, a dialysis-membrane reactor, a gas-lift reactor and a membrane cyclone reactor used for HCDC are outlined. Recently modified traditional feeding strategies and new ones are included, in particular those for unlimited growth to very dense cultures. Emphasis is placed on robust fermentation control because of the growing industrial interest in this field. Therefore, developments in the application of multivariate statistical control, artificial neural networks, fuzzy control and knowledge-based supervision (expert systems) are summarized. Recent advances using Escherichia coli--the pioneer organism for HCDC--are outlined.
为了大幅提高微生物生物量和产物生成量,需要进行高细胞密度培养(HCDC)。本文概述了针对包括细菌、古菌和真核生物(酵母)在内的微生物的高细胞密度培养。讨论了高细胞密度培养过程中遇到的问题及其可能的解决方案。描述了用于成功进行高细胞密度培养的菌株改良、不同类型的生物反应器和培养策略。概述了用于高细胞密度培养的带或不带细胞截留的搅拌罐反应器、透析膜反应器、气升式反应器和膜旋风反应器。介绍了最近改良的传统补料策略和新的补料策略,特别是那些用于实现无限生长至极高密度培养物的策略。由于该领域在工业上的关注度不断提高,因此重点强调了稳健的发酵控制。因此,总结了多元统计控制、人工神经网络、模糊控制和基于知识的监督(专家系统)在应用方面的进展。概述了使用大肠杆菌(高细胞密度培养的先驱生物)的最新进展。