Institute of Chemical Biology, Imperial College London, Exhibition Road, London, UK SW7 2AZ.
Lab Chip. 2013 Sep 7;13(17):3426-32. doi: 10.1039/c3lc50231g. Epub 2013 Jul 10.
As a reference platform for in vitro synthetic biology, we have developed a prototype flow microreactor for enzymatic biosynthesis. We report the design, implementation, and computer-aided optimisation of a three-step model pathway within a microfluidic reactor. A packed bed format was shown to be optimal for enzyme compartmentalisation after experimental evaluation of several approaches. The specific substrate conversion efficiency could significantly be improved by an optimised parameter set obtained by computational modelling. Our microreactor design provides a platform to explore new in vitro synthetic biology solutions for industrial biosynthesis.
作为体外合成生物学的参考平台,我们开发了用于酶促生物合成的原型流微反应器。我们报告了在微流控反应器内三步模型途径的设计、实现和计算机辅助优化。在对几种方法进行实验评估后,填充床格式被证明是酶分隔的最佳选择。通过计算建模获得的优化参数集可显著提高特定底物的转化率效率。我们的微反应器设计为探索用于工业生物合成的新型体外合成生物学解决方案提供了一个平台。