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Colorimetric recognition and sensing of thiocyanate with a gold nanoparticle probe and its application to the determination of thiocyanate in human urine samples

机译:纳米金探针比色法识别和检测硫氰酸盐及其在人尿样中硫氰酸盐测定中的应用

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摘要

A colorimetric method for the determination of thiocyanate (SCN−) ion with a cystamine-modified gold nanoparticle (Au NP) probe is presented. In this method, recognition is based on electrostatic attraction and directional hydrogen bonding between thiocyanate and cystamine on the surface of an Au NP. In phosphate buffer solution (PBS, pH 5.2, 10 mM), the cystamine-modified Au NPs readily aggregated upon incubation with N,N-dimethyl-1-naphthylamine (denoted “2N”), and a visible change in the color of the solution from red to blue was observed. When present, thiocyanate interacted with the gold nanoparticle probe more prominently than 2N, thereby protecting the gold nanoparticles and attenuating the degree of aggregation. The solution was observed (by the naked eye) to change in color from blue to purple and then back to red as a function of thiocyanate concentration (<10 μM). Iodide was noted to be a significant interferent; however, the optical absorption spectrum in the presence of iodide was fortunately easily distinguished from that for thiocyanate, thereby making it possible to discriminate iodide from thiocyanate. It was possible to determine thiocyanate in human urine samples using this method. This colorimetric method opens up a new avenue for assaying thiocyanate considering its rapid readout and simple implementation, which makes it convenient to determine thiocyanate in biological samples, especially at levels below 100 μM.
机译:提出了一种用半胱胺修饰的金纳米粒子(Au NP)探针测定硫氰酸根(SCN -)离子的比色法。在这种方法中,识别基于Au NP表面上的硫氰酸盐和胱胺之间的静电吸引和定向氢键。在磷酸盐缓冲溶液(PBS,pH 5.2,10 mM)中,经N,N-二甲基-1-萘胺(表示为“ 2N”)孵育后,经半胱胺修饰的Au NP易于聚集,并且其颜色发生明显变化。观察到从红色到蓝色的溶液。当存在时,硫氰酸盐与金纳米颗粒探针的相互作用比2N更突出,从而保护了金纳米颗粒并减弱了聚集度。观察溶液(用肉眼观察),其颜色根据硫氰酸盐浓度(<10μM)从蓝色变为紫色,然后又变为红色。碘化物被认为是重要的干扰物。然而,幸运的是,在存在碘化物的情况下,光吸收光谱很容易与硫氰酸盐区分开,从而可以将碘化物与硫氰酸盐区分开。使用这种方法可以测定人尿液样品中的硫氰酸盐。考虑到它的快速读数和简单的实现方法,这种比色方法为测定硫氰酸盐开辟了一条新途径,这使得测定生物样品中的硫氰酸盐特别是在100μM以下的水平时更为方便。

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