Buque-Taboada Evelyn M, Straathof Adrie J J, Heijnen Joseph J, van der Wielen Luuk A M
Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC, Delft, The Netherlands.
Appl Microbiol Biotechnol. 2006 Jun;71(1):1-12. doi: 10.1007/s00253-006-0378-6. Epub 2006 Apr 11.
The removal of inhibiting or degrading product from a bioreactor as soon as the product is formed is an important issue in industrial bioprocess development. In this review, the potential of crystallization as an in situ product removal (ISPR) technique for the biocatalytic production of crystalline compounds is discussed. The emphasis of this review is on the current status of crystalline product formation by metabolically active cells for application in fine-chemicals production. Examples of relevant biocatalytic conversions are summarized, and some basic process options are discussed. Furthermore, a case study is presented in which two conceptual process designs are compared. In one process, product formation and crystallization are integrated by applying ISPR, whereas a second, nonintegrated process is based on a known conventional process equivalent for the production of 6R-dihydro-oxoisophorone. The comparison indicates that employing ISPR leads to significant advantages over the nonintegrated case in terms of increased productivity and yield with a corresponding decrease in the number of downstream processing steps, as well as in the quantity of waste streams. This leads to an economically more interesting process alternative. Finally, a general outlook on the various research aspects of ISPR by crystallization is given.
在工业生物工艺开发中,一旦生物反应器中的产物形成,就立即将抑制性或降解性产物去除是一个重要问题。在本综述中,讨论了结晶作为一种原位产物去除(ISPR)技术用于生物催化生产结晶化合物的潜力。本综述的重点是代谢活性细胞形成结晶产物以应用于精细化学品生产的现状。总结了相关生物催化转化的实例,并讨论了一些基本的工艺选择。此外,还给出了一个案例研究,比较了两种概念性工艺设计。在一种工艺中,通过应用ISPR将产物形成和结晶整合在一起,而第二种非整合工艺基于生产6R-二氢氧代异佛尔酮的已知传统等效工艺。比较表明,采用ISPR相对于非整合情况具有显著优势,即在提高生产率和产率的同时,相应减少下游加工步骤的数量以及废物流的量。这导致了一种在经济上更具吸引力的工艺替代方案。最后,对通过结晶进行ISPR的各个研究方面给出了总体展望。