Rehmann Lars, Sun Bozhi, Daugulis Andrew J
Department of Chemical Engineering, Queen's University, Kingston, Ontario, Canada K7L 3N6.
Biotechnol Prog. 2007 Jul-Aug;23(4):814-9. doi: 10.1021/bp0700962. Epub 2007 Jun 9.
The commercially available thermoplastic polymer Hytrel was selected as the delivery phase for the hydrophobic model compound biphenyl in a solid-liquid two-phase partitioning bioreactor (TPPB), and 2.9 g biphenyl could successfully be degraded in 1-L TPPBs by a pure culture of the biphenyl-degrading bacterium Burkholderia xenovorans LB400 in 50 h and by a mixed microbial consortium isolated from contaminated soil in 45 h. TPPBs consist of an aqueous cell-containing phase and an immiscible second phase that partitions toxic and/or poorly soluble substrates (in this case biphenyl) on the basis of maintaining a thermodynamic equilibrium. This paper illustrates a rational strategy for selecting a suitable solid polymeric substance for the delivery of the poorly water-soluble model compound biphenyl. The partitioning of biphenyl between the selected polymers and water was analogous to partitioning of solutes between two immiscible liquid phases. The partitioning coefficients varied between 180 for Nylon 6.6 and 11,000 for Desmopan, where the later numerical value is comparable to biphenyl partitioning coefficients between water and organic solvents. Employing a solid delivery phase enabled the utilization of a surfactant-producing microbial mixed culture, which could not be cultivated in liquid-liquid TPPBs and thereby extended the range of biocatalysts that can be employed in TPPBs.
在固液两相分配生物反应器(TPPB)中,选用市售热塑性聚合物Hytrel作为疏水性模型化合物联苯的传递相。在1升的TPPB中,联苯降解菌伯克霍尔德氏菌LB400的纯培养物在50小时内可成功降解2.9克联苯,从污染土壤中分离出的混合微生物群落则在45小时内完成降解。TPPB由含细胞的水相和不混溶的第二相组成,该第二相基于维持热力学平衡来分配有毒和/或难溶性底物(在此为联苯)。本文阐述了一种合理策略,用于选择合适的固体聚合物来传递难溶于水的模型化合物联苯。联苯在所选聚合物和水之间的分配类似于溶质在两个不混溶液相之间的分配。分配系数在尼龙6.6的180至德士模帕的11,000之间变化,其中后者的数值与联苯在水和有机溶剂之间的分配系数相当。使用固体传递相能够利用产生表面活性剂的微生物混合培养物,这种培养物无法在液 - 液TPPB中培养,从而扩展了可用于TPPB的生物催化剂范围。