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基于聚天冬氨酸功能化石墨烯量子点的新型纳米复合材料对未经处理的人血浆样品中天冬氨酸生物标志物的灵敏监测。

Sensitive monitoring of taurine biomarker in unprocessed human plasma samples using a novel nanocomposite based on poly(aspartic acid) functionalized by graphene quantum dots.

机构信息

Department of Nanotechnology, Nanotechnology Research Center, Urmia University, Urmia, Iran.

Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

J Mol Recognit. 2018 Dec;31(12):e2737. doi: 10.1002/jmr.2737. Epub 2018 Jun 25.

DOI:10.1002/jmr.2737
PMID:29938853
Abstract

The rapid and accurate determination of the level of taurine biomarker in various tissues and body fluids can be of great interest in the early diagnosis of several important pathologies and diseases. For the first time, this study reports on the electropolymerization of a low toxic and biocompatible nanocomposite "poly(aspartic acid)-graphene quantum dots (GQDs)" as a novel strategy for surface modification of glassy carbon electrode and preparation a new interface for measurement of taurine. Electrochemical deposition, as a well-controlled synthesis procedure, has been used for subsequently layer-by-layer preparation of GQDs nanostructures on poly(aspartic acid) using cyclic voltammetry techniques in the regime of -1.5 to 2 V. The field emission scanning electron microscopy indicated immobilization of uniformly GQDs onto poly(aspartic acid) film. The modified electrode appeared as an effective electroactivity for detection of taurine biomarker using cyclic voltammetry, chronoamperometry, and differential pulse voltammetry. Enhancement of peak currents is ascribed to the fast heterogeneous electron transfer kinetics that arise from the synergistic coupling between the excellent properties of poly(aspartic acid) as semiconducting polymer, GQDs as high density of edge plane sites, and subtle electronic characteristics to chemical modification. Under the optimized analysis conditions, the prepared sensor for detection of taurine showed a low limit of quantification 0.001mM. Finally, the resulting prepared sensor allow the quantification of these biomarkers directly in biological samples without need of derivatization schemes or sample pretreatment.

摘要

牛磺酸生物标志物水平的快速准确测定对于几种重要病理和疾病的早期诊断具有重要意义。本研究首次报道了一种低毒、生物相容性的纳米复合材料“聚天冬氨酸-石墨烯量子点(GQDs)”的电聚合,作为一种新的策略,用于修饰玻碳电极表面,并制备用于测量牛磺酸的新界面。电化学沉积作为一种可控的合成方法,已被用于使用循环伏安技术在-1.5 至 2 V 的范围内在聚天冬氨酸上逐层制备 GQDs 纳米结构。场发射扫描电子显微镜表明,GQDs 均匀地固定在聚天冬氨酸薄膜上。该修饰电极对牛磺酸生物标志物的检测表现出有效的电活性,可使用循环伏安法、计时安培法和差分脉冲伏安法进行检测。峰电流的增强归因于协同耦合作用产生的快速非均相电子转移动力学,这种协同耦合作用源于聚天冬氨酸作为半导体聚合物、GQDs 作为高密度边缘平面位点以及化学修饰的细微电子特性的优异性能。在优化的分析条件下,制备的牛磺酸传感器的检测限为 0.001mM。最后,该制备的传感器可以直接在生物样品中定量这些生物标志物,而无需衍生化方案或样品预处理。

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