Zhang Yan, Jiang Jingjing, Li Min, Gao Pengfei, Zhou Ying, Zhang Guomei, Shuang Shaomin, Dong Chuan
School of Chemistry and Chemical Engineering, Institute of Environmental Science, Shanxi University, 92 Wucheng Road, Taiyuan, PR China.
School of Chemistry and Chemical Engineering, Institute of Environmental Science, Shanxi University, 92 Wucheng Road, Taiyuan, PR China.
Talanta. 2016 Dec 1;161:520-527. doi: 10.1016/j.talanta.2016.09.009. Epub 2016 Sep 4.
Herein, a novel, high sensitive, and specific colorimetric sensor for cysteine (Cys) based on pectinase protected gold nanoparticles (P@AuNPs) has been demonstrated for the first time. The P@AuNPs were synthesized by "MW-assisted heat method" and were characterized by UV-vis, TEM, FT-IR and zeta potential techniques. Cys could cause the aggregation of P@AuNPs due to formation of the strong covalent Au-S bond and electrostatic binding. As the Cys concentration increased, the color of the solutions gradually changed from wine-red to blue as well as the large absorption band shifted from 523 to 650nm upon P@AuNPs aggregation. In addition, various experimental parameters such as pH, the amount of P@AuNPs and incubation time were investigated for the optimum sensing conditions. The concentration of Cys could be determined by monitoring with the naked eye or a UV-vis spectrometer. The proposed colorimetric sensor showed an extreme selectivity toward the determination of Cys in the presence of 20-fold all other different interferents. Under optimum conditions, this method exhibited two good linear ranges from 4.85×10 to 3.02×10M (R=0.996) and 3.25×10 to 1.03×10M (R=0.999), with a low detection limit of 4.6×10M. Moreover, this colorimetric sensor was successfully applied to the detection of Cys in human urine samples, demonstrating its great value for practical application in biological systems.
在此,首次展示了一种基于果胶酶保护的金纳米颗粒(P@AuNPs)的新型、高灵敏度且特异性的半胱氨酸(Cys)比色传感器。P@AuNPs通过“微波辅助加热法”合成,并通过紫外可见光谱、透射电子显微镜、傅里叶变换红外光谱和zeta电位技术进行表征。由于形成了强共价Au-S键和静电结合,Cys会导致P@AuNPs聚集。随着Cys浓度的增加,溶液颜色逐渐从酒红色变为蓝色,并且在P@AuNPs聚集时,大吸收带从523nm移至650nm。此外,研究了各种实验参数,如pH值、P@AuNPs的量和孵育时间,以确定最佳传感条件。Cys的浓度可以通过肉眼监测或紫外可见光谱仪测定。所提出的比色传感器在存在20倍其他不同干扰物的情况下,对Cys的测定具有极高的选择性。在最佳条件下,该方法呈现出两个良好的线性范围,分别为4.85×10至3.02×10M(R = 0.996)和3.25×10至1.03×10M(R = 0.999),检测限低至4.6×10M。此外,这种比色传感器成功应用于人体尿液样本中Cys的检测,证明了其在生物系统实际应用中的巨大价值。