Wang Zhilong, Dai Zewen
School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, PR China.
School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, PR China.
Enzyme Microb Technol. 2010 May 5;46(6):407-18. doi: 10.1016/j.enzmictec.2010.02.004. Epub 2010 Feb 13.
Extractive microbial fermentation of organic compounds in liquid-liquid two-phase systems is a potential strategy to overcome the limitations of microbial fermentation in an aqueous solution, such as low substrate solubility, substrate/product inhibition and product further degradation. A conventional aqueous-organic solvent two-phase system is inaccessible to extractive fermentation of a relatively high polar bioproduct as the confliction between the biocompatibility and the extraction ability of the corresponding organic solvent. An exploitation of cloud point system as a novel medium engineering method for extractive microbial fermentation is reviewed in present work. The relationship between phase separation of nonionic surfactant aqueous solution forming cloud point system and its corresponding biocompatibility to microorganisms, and the relationship between solubilization and bioavailability of organic compounds in a cloud point system are discussed. Paradigms of extractive microbial fermentation in cloud point system are highlighted with some cases in our lab. The downstream processing for nonionic surfactant recovery and product separation with microemulsion extraction is also presented.
在液-液两相系统中对有机化合物进行萃取式微生物发酵是一种潜在策略,可克服微生物在水溶液中发酵的局限性,例如底物溶解度低、底物/产物抑制以及产物进一步降解等问题。由于相应有机溶剂的生物相容性与萃取能力之间存在冲突,传统的水-有机溶剂两相系统无法用于相对高极性生物产物的萃取发酵。本文综述了利用浊点系统作为萃取式微生物发酵的新型介质工程方法。讨论了形成浊点系统的非离子表面活性剂水溶液的相分离与其对微生物的生物相容性之间的关系,以及有机化合物在浊点系统中的增溶作用与生物利用度之间的关系。结合我们实验室的一些案例,重点介绍了浊点系统中萃取式微生物发酵的范例。还介绍了利用微乳液萃取回收非离子表面活性剂和分离产物的下游处理方法。