Department of Chemistry, Payame Noor University, Fars, Shiraz, Golestan - Allameh Dehkhoda Blvd, 73111-71893, Shiraz, Islamic Republic of Iran.
Department of Chemistry, Payame Noor University, Khorasan Razavi, Mashhad, 71 teacher Blvd., 433-91735, Mashhad, Islamic Republic of Iran.
Appl Biochem Biotechnol. 2019 Mar;187(3):913-937. doi: 10.1007/s12010-018-2796-1. Epub 2018 Aug 13.
In the current study, we reported a novel label-free and facile colorimetric approach for the sequential detection of copper ion (Cu), L-arginine (Arg), and L-cysteine (Cys) in the HO (10.0 mmol L HEPES buffer solution, pH 7.0) using Reactive Blue 4 (RB4). First, the presence of Cu led to a naked-eye color and spectral changes according to the binding site-signaling subunit approach. Then, the RB4-Cu complex was successfully applied for Cys and Arg through different recognition pathways. The optical signals for Arg were observed due to its association involving the amino group, as well as the participation of the carboxylate group in a bidentate form to the complex, while selective behavior for Cys was explained by a metal displacement mechanism. The limits of detection for Cu, Arg, and Cys were calculated to be 1.96, 1.06, and 1.33 μmol L, respectively. It could also be employed for the determination of three analytes in environmental, biological, and pharmaceutical samples. Importantly, the test strips based on RB4-Cu complex could be used as a solid-state sensor for the detection of Cys and Arg. In addition, NAND and IMPLICATION molecular logic gates were obtained by using chemical inputs and UV-Vis absorbance signal as the output. Graphical Abstract.
在当前的研究中,我们报道了一种新颖的无标记和简便的比色法,用于在 HO(10.0 mmol L HEPES 缓冲溶液,pH 7.0)中顺序检测铜离子(Cu)、L-精氨酸(Arg)和 L-半胱氨酸(Cys),使用活性蓝 4(RB4)。首先,根据结合部位-信号亚基方法,Cu 的存在导致了肉眼可见的颜色和光谱变化。然后,RB4-Cu 配合物通过不同的识别途径成功地应用于 Cys 和 Arg。由于 Arg 的关联涉及氨基,以及羧基以双齿形式参与配合物,因此观察到 Arg 的光学信号,而 Cys 的选择性行为则通过金属置换机制来解释。Cu、Arg 和 Cys 的检测限分别计算为 1.96、1.06 和 1.33 μmol L。它还可以用于环境、生物和药物样品中三种分析物的测定。重要的是,基于 RB4-Cu 配合物的测试条可用作检测 Cys 和 Arg 的固态传感器。此外,通过使用化学输入和 UV-Vis 吸光度信号作为输出,获得了 NAND 和蕴涵分子逻辑门。