Department of Materials Science and Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore.
J Mater Chem B. 2021 Apr 28;9(16):3509-3514. doi: 10.1039/d1tb00191d. Epub 2021 Apr 1.
Early glucose detection is important in both healthy people and diabetic patients. The glucose colorimetric detection techniques usually consist of multiple steps and their preparation processes are time consuming. In this work, we fabricate a GOX-hemin nanogel (GHN) that could be used for one-step colorimetry detection of glucose. The GHN was prepared by carrying out polymerization on the surface of GOX. Each GOX-hemin nanogel consists of a single GOX encapsulated with a thin polymer network containing hemin. The proximity of hemin to GOX facilitates two reactions, i.e. the oxidation of glucose catalysed by GOX to yield HO, and the subsequent 3,3',5,5'-tetramethylbenzidine (TMB) oxidation reaction catalysed by hemin to yield the blue colored product. These processes work in tandem, which greatly enhances the efficacy, sensitivity and stability of the detection system. The limit of detection in our system was determined to be as low as 4 μM. Furthermore, the glucose detection activity still maintained more than 70% even after being incubated at 55 °C for 30 minutes, or in 20% (v/v) aqueous solution of DMF, CHCN or THF for 25 minutes at room temperature. It is anticipated that this work can provide a method for developing diverse functional materials based on proteins.
早期的葡萄糖检测在健康人群和糖尿病患者中都很重要。葡萄糖比色检测技术通常包括多个步骤,其制备过程耗时较长。在这项工作中,我们制备了一种 GOX-血红素纳米凝胶(GHN),可用于一步比色法检测葡萄糖。GHN 通过在 GOX 表面进行聚合来制备。每个 GOX-血红素纳米凝胶由单个 GOX 封装在含有血红素的薄聚合物网络中组成。血红素与 GOX 的接近促进了两个反应,即 GOX 催化的葡萄糖氧化生成 HO ,以及随后血红素催化的 3,3',5,5'-四甲基联苯胺(TMB)氧化反应生成蓝色产物。这些过程协同作用,极大地提高了检测系统的效率、灵敏度和稳定性。我们的系统检测限低至 4 μM。此外,即使在 55°C 孵育 30 分钟,或在 20%(v/v)DMF、CHCN 或 THF 的水溶液中在室温下孵育 25 分钟,葡萄糖检测活性仍保持在 70%以上。预计这项工作可以为基于蛋白质的各种功能材料的开发提供一种方法。