In situ product removal in fermentation systems: improved process performance and rational extractant selection

被引:64
作者
Dafoe, Julian T. [1 ]
Daugulis, Andrew J. [1 ]
机构
[1] Queens Univ, Dept Chem Engn, Kingston, ON K7L 3N6, Canada
关键词
Absorption; Adsorption; Biocatalysis; Extractive fermentation; Ionic liquids; Reactive extraction; Product removal (in situ); 2-PHASE PARTITIONING BIOREACTOR; ENHANCED BIOTRANSFORMATION; CLOSTRIDIUM-ACETOBUTYLICUM; BUTANOL FERMENTATION; ACID FERMENTATION; L-PHENYLALANINE; SUCCINIC ACID; LIQUID; BIOPRODUCTION; 2-PHENYLETHANOL;
D O I
10.1007/s10529-013-1380-6
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The separation of inhibitory compounds as they are produced in biotransformation and fermentation systems is termed in situ product removal (ISPR). This review examines recent ISPR strategies employing several classes of extractants including liquids, solids, gases, and combined extraction systems. Improvement through the simple application of an auxiliary phase are tabulated and summarized to indicate the breadth of recent ISPR activities. Studies within the past 5 years that have highlighted and have discussed "second phase" properties, and that have an effect on fermentation performance, are particular focus of this review. ISPR, as a demonstrably effective processing strategy, continues to be widely adopted as more applications are explored; however, focus on the properties of extractants and their rational selection based on first principle considerations will likely be key to successfully applying ISPR to more challenging target molecules.
引用
收藏
页码:443 / 460
页数:18
相关论文
共 67 条
[1]   In situ recovery of 2,3-butanediol from fermentation by liquid-liquid extraction [J].
Anvari, Masumeh ;
Khayati, Gholam .
JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2009, 36 (02) :313-317
[2]  
BARTON WE, 1992, APPL MICROBIOL BIOT, V36, P632
[3]   Simultaneous production and partitioning of heterologous polyketide and isoprenoid natural products in an Escherichia coli two-phase bioprocess [J].
Boghigian, Brett A. ;
Myint, Melissa ;
Wu, Jiequn ;
Pfeifer, Blaine A. .
JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2011, 38 (11) :1809-1820
[4]   Extractive fermentation of L-(+)-lactic acid by Pediococcus pentosaceus using electrodeionization (EDI) technique [J].
Boontawan, Pailin ;
Kanchanathawee, Sunthorn ;
Boontawan, Apichat .
BIOCHEMICAL ENGINEERING JOURNAL, 2011, 54 (03) :192-199
[5]   Alleviating monoterpene toxicity using a two-phase extractive fermentation for the bioproduction of jet fuel mixtures in Saccharomyces cerevisiae [J].
Brennan, Timothy C. R. ;
Turner, Christopher D. ;
Kroemer, Jens O. ;
Nielsen, Lars K. .
BIOTECHNOLOGY AND BIOENGINEERING, 2012, 109 (10) :2513-2522
[6]   Application of Aqueous Two-Phase Systems for the Potential Extractive Fermentation of Cyanobacterial Products [J].
Chavez-Santoscoy, Ana ;
Benavides, Jorge ;
Vermaas, Willem ;
Rito-Palomares, Marco .
CHEMICAL ENGINEERING & TECHNOLOGY, 2010, 33 (01) :177-182
[7]   Simulation study of biobutanol production in a polymer-loaded two-phase partitioning bioreactor (PL-TPPB): Model development [J].
Choi, Jae Min ;
Yeom, Sung Ho .
KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2011, 28 (11) :2170-2177
[8]   Polymer characterization and optimization of conditions for the enhanced bioproduction of benzaldehyde by Pichia pastoris in a two-phase partitioning bioreactor [J].
Craig, Tom ;
Daugulis, Andrew J. .
BIOTECHNOLOGY AND BIOENGINEERING, 2013, 110 (04) :1098-1105
[9]   Production of 4-valerolactone by an equilibrium-limited transformation in a partitioning bioreactor: impact of absorptive polymer properties [J].
Dafoe, Julian T. ;
Daugulis, Andrew J. .
BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2014, 37 (03) :533-542
[10]   Manipulating the composition of absorbent polymers affects product and by-product concentration profiles in the biphasic biotransformation of indene to cis-1,2-indandiol [J].
Dafoe, Julian T. ;
Daugulis, Andrew J. .
BIOCHEMICAL ENGINEERING JOURNAL, 2013, 77 :7-14