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A Compartmented Flow Microreactor System for Automated Optimization of Bioprocesses Applying Immobilized Enzymes

机译:隔室流动微反应器系统用于自动优化应用固定化酶的生物过程

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摘要

In the course of their development, industrial biocatalysis processes have to be optimized in small-scale, e. g., within microfluidic bioreactors. Recently, we introduced a novel microfluidic reactor device, which can handle defined reaction compartments of up to 250 μL in combination with magnetic micro carriers. By transferring the magnetic carriers between subsequent compartments of differing compositions, small scale synthesis, and bioanalytical assays can be conducted. In the current work, this device is modified and extended to broaden its application range to the screening and optimization of bioprocesses applying immobilized enzymes. Besides scaling the maximum compartment volume up to 3 mL, a temperature control module, as well as a focused infrared spot were integrated. By adjusting the pump rate, compartment volumes can be accurately dosed with an error <5% and adjusted to the requested temperature within less than a minute. For demonstration of bioprocess parameter optimization within such compartments, the influence of pH, temperature, substrate concentration, and enzyme carrier loading was automatically screened for the case of transferring UDP-Gal onto N-acetylglucosamine linked to a tert-butyloxycarbonyl protected amino group using immobilized β1,4-galactosyltransferase-1. In addition, multiple recycling of the enzyme carriers and the use of increased compartment volumes also allows the simple production of preparative amounts of reaction products.
机译:在其发展过程中,必须以小规模优化工业生物催化工艺,例如:例如,在微流生物反应器中。最近,我们推出了一种新型的微流体反应器设备,与磁性微载体结合使用时,该设备可以处理高达250μL的规定反应室。通过在不同组成的随后隔室之间转移磁性载体,可以进行小规模合成和生物分析测定。在当前工作中,对该设备进行了修改和扩展,以扩大其应用范围,以筛选和优化应用固定化酶的生物过程。除了将最大隔室容积放大到3 mL外,还集成了温度控制模块和聚焦的红外光斑。通过调整泵速,可以精确分配隔室容积,误差<5%,并在不到一分钟的时间内将其调整到要求的温度。为了展示在此类隔室内进行生物工艺参数优化的情况,自动筛选了pH,温度,底物浓度和酶载体负载的影响,以了解使用固定化将UDP-Gal转移至与叔丁氧羰基保护的氨基连接的N-乙酰氨基葡萄糖上的情况β1,4-半乳糖基转移酶-1。另外,酶载体的多次再循环和增加的隔室体积的使用还允许简单制备制备量的反应产物。

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