Key Laboratory of Magnetic Materials and Devices & Division of Functional Materials and Nano Devices, Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences, Ningbo, Zhejiang 315201, China.
Nanoscale. 2014 Sep 21;6(18):10631-7. doi: 10.1039/c4nr03309d. Epub 2014 Aug 1.
The reported strategies for cysteine (Cys) colorimetric detection based on noble metal nanomaterials include triggering aggregation, etching or fluorescence quenching of nanomaterials by Cys. In this study, we propose a new strategy for Cys colorimetric detection, i.e. anti-etching of silver nanoprisms (AgNPRs). In the absence of Cys, iodide ions (I(-)) could etch the corners and edges of AgNPRs and induce the morphology transition from nanoprism to nanodisk, which results in color change of the AgNPR dispersion from blue to red. In its presence, however, Cys can prevent the AgNPRs from I(-) attack. In that case, the color of the AgNPR dispersion containing I(-) and Cys remains blue. The mechanism is confirmed by using UV-vis spectra, TEM, DLS, Raman spectra and XPS spectra. According to the sensing effect of the Cys detection system, the concentration of I(-) incubated with AgNPRs, incubation time of AgNPRs and I(-), and pH of AgNPR dispersions are optimized to 5.0 μM, 10 min, and pH 6.2, respectively. Under the optimized conditions, the proposed Cys detection system has excellent selectivity and high sensitivity. The limit of detection (LOD) of our Cys detection system is 25 nM by the naked eye, which is much better than the reported lowest LOD by eye-vision (100 nM), and 10 nM by UV-vis spectroscopy. The results of Cys detection in rabbit urine or plasma samples reinforce that our Cys detection system is applicable for rapid colorimetric detection of Cys in real body fluid samples.
基于贵金属纳米材料的半胱氨酸(Cys)比色检测策略包括通过 Cys 触发纳米材料的聚集、蚀刻或荧光猝灭。在本研究中,我们提出了一种新的 Cys 比色检测策略,即银纳米棱柱(AgNPRs)的抗蚀刻。在不存在 Cys 的情况下,碘离子(I(-))可以蚀刻 AgNPRs 的角和边缘,并诱导从纳米棱柱到纳米盘的形态转变,从而导致 AgNPR 分散体的颜色从蓝色变为红色。然而,在其存在的情况下,Cys 可以防止 AgNPRs 受到 I(-)的攻击。在这种情况下,含有 I(-)和 Cys 的 AgNPR 分散体的颜色保持蓝色。该机制通过使用 UV-vis 光谱、TEM、DLS、拉曼光谱和 XPS 光谱得到证实。根据 Cys 检测系统的传感效应,优化了与 AgNPR 孵育的 I(-)浓度、AgNPR 和 I(-)的孵育时间以及 AgNPR 分散体的 pH 值分别为 5.0 μM、10 min 和 pH 6.2。在优化条件下,所提出的 Cys 检测系统具有优异的选择性和高灵敏度。我们的 Cys 检测系统的检测限(LOD)为 25 nM,通过肉眼观察,这比报道的最低 LOD(100 nM)要好得多,比 UV-vis 光谱法的 LOD(10 nM)还要好。兔尿液或血浆样品中 Cys 检测结果表明,我们的 Cys 检测系统适用于快速比色检测真实体液样品中的 Cys。