School of Pharmacy, Medical College, and Institute for Chemical Biology & Biosensing, and College of Life Sciences, Qingdao University, 308 Ningxia Road, Qingdao 266071, China.
Qingdao Institute for Food and Drug Control, 7 Longde Road, Qingdao 266073, China.
ACS Appl Mater Interfaces. 2020 Sep 23;12(38):42521-42530. doi: 10.1021/acsami.0c11983. Epub 2020 Sep 9.
Nanozymes are artificial enzymes, which can substitute traditional biological enzymes for multifield applications. However, to date, it remains challenging to search novel mimic enzymes or multienzyme mimics. Herein, a facile and green method for preparing monodisperse, homogeneous copper nanoclusters (Cu NCs) with smaller size was developed, which used cysteamine as a template and hydrazine hydrate as a reductant to reduce Cu. The as-prepared Cu NCs exhibited excellent tetraenzyme-like activities, including peroxidase (POD)-, catalase (CAT)-, superoxide dismutase (SOD)-, and ascorbic acid oxidase (AAO)-mimic activities. The mechanisms, kinetics, and catalytic performances of Cu NCs were systematically studied. Moreover, based on the POD-like activity of Cu NCs, sensitive and simple colorimetric sensing glutathione (GSH) was explored, with the low limit of detection of 0.89 μM GSH (/ = 3). Additionally, a novel fluorimetric ascorbic acid (AA) sensor was developed with the linear range of 0.5-30 μM and limit of detection (LOD) of 0.144 μM, on the basis of the principle that AA is oxidized to dehydroascorbic acid (DHAA) specifically catalyzed by the AAO-like activity of Cu NCs, while DHAA can further react with -phenylenediamine (OPDA) to generate a highly fluorescent quinoxaline (DFQ) derivative. The as-proposed colorimetric GSH sensor and the fluorimetric AA sensor were capable of detecting GSH and AA, respectively, in real samples accurately and reproducibly. Thus, the Cu NCs-based multienzyme mimic is a promising candidate for biocatalysis and biosensing.
纳米酶是人工酶,可以替代传统的生物酶在多领域应用。然而,迄今为止,寻找新型模拟酶或多酶模拟物仍然具有挑战性。在此,开发了一种简便、绿色的方法来制备单分散、均匀的铜纳米簇 (Cu NCs),其使用半胱氨酸作为模板,水合肼作为还原剂还原 Cu。所制备的 Cu NCs 表现出优异的四酶样活性,包括过氧化物酶 (POD)、过氧化氢酶 (CAT)、超氧化物歧化酶 (SOD) 和抗坏血酸氧化酶 (AAO) 模拟活性。系统研究了 Cu NCs 的机制、动力学和催化性能。此外,基于 Cu NCs 的 POD 样活性,探索了灵敏且简单的比色检测谷胱甘肽 (GSH) 的方法,其检测下限为 0.89 μM GSH (/ = 3)。此外,基于 Cu NCs 的 AAO 样活性特异性催化抗坏血酸 (AA) 氧化为脱氢抗坏血酸 (DHAA) 的原理,开发了一种新颖的荧光法测定抗坏血酸 (AA) 的传感器,其线性范围为 0.5-30 μM,检测限 (LOD) 为 0.144 μM。而 DHAA 可以进一步与邻苯二胺 (OPDA) 反应生成高荧光喹喔啉 (DFQ) 衍生物。所提出的比色 GSH 传感器和荧光 AA 传感器能够分别准确且可重现地检测实际样品中的 GSH 和 AA。因此,基于 Cu NCs 的多酶模拟物是生物催化和生物传感的有前途的候选物。