Hasanzadeh M, Navay Baghban H, Shadjou N
Drug Applied Research Center, Tabriz University of Medical Sciences.
Pharmaceutical Analysis Research Center and Faculty of Pharmacy, Tabriz University of Medical Sciences.
Anal Sci. 2018;34(3):355-362. doi: 10.2116/analsci.34.355.
An innovative electrochemical interface for quantitation of L-proline (L-Pro) based on ternary amplification strategy was fabricated. In this work, gold nanoparticles prepared by soft template methodology were immobilized onto green and biocompatible nanocomposite containing poly as a conductive matrix and graphene quantum dots as the amplification element. Therefore, a novel multilayer film based on poly-L-cysteine, graphene quantum dots (GQDs), and gold nanoparticles (GNPs) was exploited to develop a highly sensitive electrochemical sensor for the detection of L-Pro. Fully electrochemical methodology was used to prepare a new transducer on a glassy carbon electrode, which provided a high surface area towards sensitive detection of L-Pro. The prepared electrode was employed for the detection of L-Pro. Under optimized conditions, the calibration curve for L-Pro concentration was linear in 0.5 nM - 10 mM with a low limit of quantification of 0.1 nM. The practical analytical utility of the modified electrode was illustrated by determination of L-Pro in unprocessed human plasma samples.
基于三元放大策略构建了一种用于定量检测L-脯氨酸(L-Pro)的创新型电化学界面。在本研究中,通过软模板法制备的金纳米粒子被固定在以聚吡咯为导电基质、石墨烯量子点为放大元件的绿色生物相容性纳米复合材料上。因此,利用基于聚L-半胱氨酸、石墨烯量子点(GQDs)和金纳米粒子(GNPs)的新型多层膜开发了一种用于检测L-Pro的高灵敏度电化学传感器。采用全电化学方法在玻碳电极上制备了一种新型换能器,该换能器为L-Pro的灵敏检测提供了高表面积。将制备的电极用于L-Pro的检测。在优化条件下,L-Pro浓度的校准曲线在0.5 nM - 10 mM范围内呈线性,定量下限为0.1 nM。通过测定未处理的人体血浆样品中的L-Pro,说明了修饰电极的实际分析效用。