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基于反应性聚合物修饰的磁性纳米粒子构建 D-氨基酸氧化酶反应器及其在酶抑制剂筛选中的应用。

Construction of a D-amino acid oxidase reactor based on magnetic nanoparticles modified by a reactive polymer and its application in screening enzyme inhibitors.

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2014 Aug 13;6(15):12979-87. doi: 10.1021/am502901b. Epub 2014 Jul 10.

DOI:10.1021/am502901b
PMID:24980686
Abstract

Developing facile and high-throughput methods for exploring pharmacological inhibitors of D-amino acid oxidase (DAAO) has triggered increasing interest. In this work, DAAO was immobilized on the magnetic nanoparticles, which were modified by a biocompatible reactive polymer, poly(glycidyl methacrylate) (PGMA) via an atom transfer radical polymerization technique. Interestingly, the enzyme immobilization process was greatly promoted with the assistance of a lithium perchlorate catalyst. Meanwhile, a new amino acid ionic liquid (AAIL) was successfully synthesized and employed as the efficient chiral ligand in a chiral ligand exchange capillary electrophoresis (CLE-CE) system for chiral separation of amino acids (AAs) and quantitation of methionine, which was selected as the substrate of DAAO. Then, the apparent Michaelis-Menten constants in the enzyme system were determined with the proposed CLE-CE method. The prepared DAAO-PGMA-Fe3O4 nanoparticles exhibited excellent reusability and good stability. Moreover, the enzyme reactor was successfully applied in screening DAAO inhibitors. These results demonstrated that the enzyme could be efficiently immobilized on the polymer-grafted magnetic nanoparticles and that the obtained enzyme reactor has great potential in screening enzyme inhibitors, further offering new insight into monitoring the relevant diseases.

摘要

开发简便、高通量的 D-氨基酸氧化酶(DAAO)药理学抑制剂的方法引起了越来越多的兴趣。在这项工作中,DAAO 通过原子转移自由基聚合技术固定在经过生物相容性反应性聚合物聚(甲基丙烯酸缩水甘油酯)(PGMA)修饰的磁性纳米颗粒上。有趣的是,在高氯酸锂催化剂的协助下,极大地促进了酶的固定化过程。同时,成功合成了一种新的氨基酸离子液体(AAIL),并将其用作手性配体交换毛细管电泳(CLE-CE)系统中拆分氨基酸(AA)和定量检测蛋氨酸的有效手性配体,蛋氨酸被选为 DAAO 的底物。然后,用提出的 CLE-CE 方法测定了酶体系中的表观米氏常数。制备的 DAAO-PGMA-Fe3O4 纳米颗粒表现出良好的可重复使用性和稳定性。此外,该酶反应器成功地应用于筛选 DAAO 抑制剂。这些结果表明,酶可以有效地固定在接枝聚合物的磁性纳米颗粒上,并且所得的酶反应器在筛选酶抑制剂方面具有很大的潜力,进一步为监测相关疾病提供了新的思路。

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