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夹在中间:作为“即插即用”微流控平台中间步骤的流入式酶灭活系统。

Caught in-between: System for in-flow inactivation of enzymes as an intermediary step in "plug-and-play" microfluidic platforms.

机构信息

Process and Systems Engineering Center (PROSYS), Department of Chemical and Biochemical Engineering, Technical University of Denmark, Building 229, 2800 Kgs. Lyngby, Denmark.

Kemiteknik Workshop, Department of Chemical and Biochemical Engineering, Technical University of Denmark, Building 229, 2800 Kgs. Lyngby, Denmark.

出版信息

N Biotechnol. 2018 Dec 25;47:39-49. doi: 10.1016/j.nbt.2018.04.002. Epub 2018 Apr 20.

Abstract

The need for fast and comprehensive characterization of biocatalysts has pushed the development of new screening platforms based on microfluidics, capable of monitoring several parameters simultaneously, with new configurations of liquid handling, sample treatment and sensing. Modular microfluidics allows the integration of these newly developed approaches in a more flexible way towards increasing applicability of the microfluidic chips to different types of biocatalysts and reactions. A highly relevant operation in such a system is biocatalyst inactivation, which can enable the precise control of reaction time by avoiding the continuation of the reaction in another module or connecting tubes. Such control is important when different modules of reactors and/or sensing units are used and changed frequently. Here we describe the development, characterization and application of a module for rapid enzyme inactivation. The thermal inactivation platform developed is compared with a standard benchtop ThermoMixer in terms of inactivation efficiency for glucose oxidase and catalase. A higher activity loss was observed for enzyme inactivation under flow conditions (inactivation achieved at 120 s residence time at 338 K and 20 s residence time at 353 K) which indicated a high heat transfer to the fluid under dynamic conditions. Moreover, partial deactivation of the enzymes was observed for the continuous thermal inactivation module, when activity measurements were performed after 1 and 2 days following inactivation. The thermal inactivation unit presented can be easily integrated into modular microfluidic platforms and can be a useful addition for enzyme characterization and screening.

摘要

快速、全面地表征生物催化剂的需求推动了基于微流控技术的新型筛选平台的发展,这些平台能够同时监测多个参数,并采用新的液体处理、样品处理和传感配置。模块化微流控技术允许以更灵活的方式集成这些新开发的方法,以提高微流控芯片对不同类型的生物催化剂和反应的适用性。在这样的系统中,一个非常相关的操作是生物催化剂失活,它可以通过避免在另一个模块或连接管中继续反应来精确控制反应时间。当使用和频繁更换不同的反应器和/或传感单元模块时,这种控制非常重要。在这里,我们描述了一个用于快速酶失活的模块的开发、表征和应用。所开发的热失活平台在葡萄糖氧化酶和过氧化氢酶的失活效率方面与标准台式 ThermoMixer 进行了比较。在流动条件下观察到酶失活的更高活性损失(在 338 K 下 120 s 停留时间和在 353 K 下 20 s 停留时间达到失活),这表明在动态条件下向流体传递了很高的热量。此外,当在失活后 1 和 2 天进行活性测量时,连续热失活模块观察到酶的部分失活。所提出的热失活单元可以很容易地集成到模块化微流控平台中,并且可以作为酶表征和筛选的有用补充。

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