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cBSA-147 for the preparation of bacterial biofilms in a microchannel reactor

机译:cBSA-147,用于在微通道反应器中制备细菌生物膜

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Whole cells are attractive biocatalysts, particularly if the reaction requires cofactors or involves multiple transformations. Immobilization of the catalyst is often a prerequisite for continuous processes. The highly cationic chemically modified plasma protein bovine serum albumin (cBSA-147) has been applied for the electrostatically mediated immobilization of the planktonic bacterium E. coli BL21 star (DE3), and the resulting biofilms were superior to those formed on poly-L-lysine coated surfaces. The biocatalyst was immobilized in a capillary column (inside diameter of 530 μm and L=30 m) and evaluated in the enantioselective reduction of ethyl acetoacetate to R-(?)ethyl hydroxybutyrate. In continuous operation in the microreactor format, the productivity of the cells was about 30% higher than that determined in a bench-scale fermentation system. This increase is attributed to the improved mass transfer over short geometrical dimensions. The similarity in the results indicates that studies on a biofilm-coated microreactor can be used for the accelerated collection of data for process optimization.
机译:全细胞是有吸引力的生物催化剂,特别是如果反应需要辅因子或涉及多次转化时。催化剂的固定通常是连续过程的先决条件。高度阳离子化学修饰的血浆蛋白牛血清白蛋白(cBSA-147)已用于浮游细菌大肠杆菌BL21星(DE3)的静电介导固定化,所得生物膜优于聚L-形成的生物膜。赖氨酸涂层表面。将生物催化剂固定在毛细管柱(内径为530μm,L = 30 m)中,并通过对乙酰乙酸乙酯将对映体还原为羟基丁酸R-(β)乙酯进行评估。在微反应器形式的连续操作中,细胞的生产率比台式规模的发酵系统确定的生产率高约30%。这种增加归因于短几何尺寸上传质的改善。结果的相似性表明,对涂有生物膜的微反应器的研究可用于加速数据收集以优化工艺。

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