Technology Division, Joint BioEnergy Institute, Emeryville, California 94608, United States.
Lab Chip. 2013 May 7;13(9):1817-22. doi: 10.1039/c3lc41418c.
Heterogeneous enzymatic reactions are used in many industrial processes including pulp and paper, food, and biofuel production. Industrially-relevant optimization of the enzymes used in these processes requires assaying them with insoluble substrates. However, platforms for high throughput heterogeneous assays do not exist thereby severely increasing the cost and time of enzyme optimization, or leading to the use of assays with soluble substrates for convenient, but non-ideal, optimization. We present an innovative approach to perform heterogeneous reactions in a high throughput fashion using droplet microfluidics. Droplets provide a facile platform for heterogeneous reactions as internal recirculation allows rapid mixing of insoluble substrates with soluble enzymes. Moreover, it is easy to generate hundreds or thousands of picoliter droplets in a small footprint chip allowing many parallel reactions. We validate our approach by screening combinations of cellulases with real-world insoluble substrates, and demonstrate that the chip-based screening is in excellent agreement with the conventional screening methods, while offering advantages of throughput, speed and lower reagent consumption. We believe that our approach, while demonstrated for a biofuel application, provides a generic platform for high throughput monitoring of heterogeneous reactions.
异质酶反应在许多工业过程中都有应用,包括纸浆和造纸、食品和生物燃料生产。在这些过程中使用的酶的工业相关优化需要用不溶性底物对其进行测定。然而,不存在用于高通量异质测定的平台,从而严重增加了酶优化的成本和时间,或者导致使用可溶性底物进行方便但不理想的优化。我们提出了一种创新的方法,使用液滴微流控技术以高通量方式进行异质反应。液滴为异质反应提供了一个简单的平台,因为内部再循环允许不溶性底物与可溶性酶快速混合。此外,很容易在小面积芯片上生成数百或数千个皮升液滴,从而允许进行许多平行反应。我们通过用实际的不溶性底物筛选纤维素酶的组合来验证我们的方法,并证明基于芯片的筛选与传统的筛选方法非常吻合,同时具有高通量、快速和试剂消耗低的优点。我们相信,我们的方法虽然是针对生物燃料应用而提出的,但为高通量监测异质反应提供了一个通用平台。