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用于纸质分析装置的酶与纸纤维的共价连接

Covalent Attachment of Enzymes to Paper Fibers for Paper-Based Analytical Devices.

作者信息

Böhm Alexander, Trosien Simon, Avrutina Olga, Kolmar Harald, Biesalski Markus

机构信息

Laboratory of Macromolecular Chemistry and Paper Chemistry, Department of Chemistry, Ernst-Berl Institute of Chemistry, Technische Universität Darmstadt, Darmstadt, Germany.

Laboratory of Biochemistry, Department of Chemistry, Clemens-Schöpf Institute of Chemistry, Technische Universität Darmstadt, Darmstadt, Germany.

出版信息

Front Chem. 2018 Jun 27;6:214. doi: 10.3389/fchem.2018.00214. eCollection 2018.

Abstract

Due to its unique material properties, paper offers many practical advantages as a viable platform for sensing devices. In view of paper-based microfluidic biosensing applications, the covalent immobilization of enzymes with preserved functional activity is highly desirable and ultimately challenging. In the present manuscript, we report an efficient approach to achieving the covalent attachment of certain enzymes on paper fibers via a surface-bound network of hydrophilic polymers bearing protein-modifiable sites. This tailor-made macromolecular system consisting of polar, highly swellable copolymers is anchored to the paper exterior upon light-induced crosslinking of engineered benzophenone motifs. On the other hand, this framework contains active esters that can be efficiently modified by the nucleophiles of biomolecules. This strategy allowed the covalent immobilization of glucose oxidase and horseradish peroxidase onto cotton linters without sacrificing their bioactivities and performance upon surface binding. As a proof-of-concept application, a microfluidic chromatic paper-based glucose sensor was developed and achieved successful glucose detection in a simple yet efficient cascade reaction.

摘要

由于其独特的材料特性,纸张作为传感设备的可行平台具有许多实际优势。鉴于基于纸张的微流控生物传感应用,具有保留功能活性的酶的共价固定是非常理想的,但最终也具有挑战性。在本手稿中,我们报告了一种通过带有可修饰蛋白质位点的亲水性聚合物表面结合网络,将某些酶共价连接到纸纤维上的有效方法。这种由极性、高膨胀性共聚物组成的定制大分子系统在工程化二苯甲酮基序的光诱导交联后锚定在纸张表面。另一方面,该框架包含可被生物分子亲核试剂有效修饰的活性酯。该策略允许将葡萄糖氧化酶和辣根过氧化物酶共价固定在棉短绒上,而不会在表面结合时牺牲它们的生物活性和性能。作为概念验证应用,开发了一种基于微流控彩色纸张的葡萄糖传感器,并在一个简单而高效的级联反应中成功实现了葡萄糖检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acad/6030327/7282455a886d/fchem-06-00214-g0001.jpg

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