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基于肝素稳定化金纳米粒子的 CUPRAC 比色法传感器用于抗氧化能力的测定。

Heparin-stabilized gold nanoparticles-based CUPRAC colorimetric sensor for antioxidant capacity measurement.

机构信息

Division of Analytical Chemistry, Department of Chemistry, Faculty of Engineering, Istanbul University, Avcilar, 34320 Istanbul, Turkey.

Division of Analytical Chemistry, Department of Chemistry, Faculty of Engineering, Istanbul University, Avcilar, 34320 Istanbul, Turkey; Turkish Academy of Sciences (TUBA), Piyade St. No: 27, Çankaya, Ankara, Turkey.

出版信息

Talanta. 2018 Sep 1;187:148-155. doi: 10.1016/j.talanta.2018.05.021. Epub 2018 May 5.

Abstract

Sensing of total antioxidant capacity (TAC) as an integrated parameter showing the collective action of various antioxidants is an important challenge in food, biochemical and drug analysis. A novel heparin-stabilized gold nanoparticles (AuNPs)-based 'cupric reducing antioxidant capacity' (CUPRAC) colorimetric sensor was designed for TAC measurement. Heparin, a sulfated polysaccharide, was both the reducing and stabilizing agent for distinct negatively-charged AuNPs synthesis. The stabilized AuNPs were added to the copper(I)-neocuproine (Cu(I)-Nc) solution formed from the reaction of Cu(II)-Nc with antioxidants, and the absorbance of the resulting Cu(I)-Nc-AuNPs (Cu(I)-Nc cationic chelate electrostatically adsorbed on gold nanoparticles) was measured at 455 nm. As opposed to other similar AuNPs-based sensors, the proposed nano-sensor exhibited excellent (1000-fold) tolerance toward inert electrolytes without aggregation. The linear range was wider than that of conventional CUPRAC, with lower LOD (0.2 µM for trolox) and higher molar absorptivity (8.36 × 10 M cm for quercetin). The 'trolox equivalent antioxidant capacity' (TEAC) values and activity order for a number of antioxidants were in accordance with those of the reference CUPRAC assay. Antioxidant additions to black tea extract gave recoveries of 93-97% and RSD 2-6%. This green sensor significantly reduced reagent consumption, and operated in complex food samples with a simple, reliable and robust methodology.

摘要

总抗氧化能力(TAC)作为一个综合参数,显示了各种抗氧化剂的集体作用,是食品、生化和药物分析中的一个重要挑战。本研究设计了一种基于肝素稳定金纳米粒子(AuNPs)的新型“铜还原抗氧化能力”(CUPRAC)比色传感器,用于 TAC 测量。肝素是一种带负电荷的硫酸多糖,同时也是还原和稳定AuNPs 的试剂。将稳定的 AuNPs 加入到铜(I)-邻菲咯啉(Cu(I)-Nc)溶液中,该溶液是由 Cu(II)-Nc 与抗氧化剂反应形成的,然后测量所得 Cu(I)-Nc-AuNPs(Cu(I)-Nc 阳离子螯合物静电吸附在金纳米粒子上)在 455nm 处的吸光度。与其他类似的基于 AuNPs 的传感器相比,所提出的纳米传感器对惰性电解质具有出色的(1000 倍)耐受性,而不会发生聚集。线性范围比传统的 CUPRAC 更宽,具有更低的检测限(trolox 的 0.2µM)和更高的摩尔吸光率(槲皮素的 8.36×10Mcm)。一些抗氧化剂的“trolox 等效抗氧化能力”(TEAC)值和活性顺序与参考 CUPRAC 测定法一致。向红茶提取物中添加抗氧化剂,回收率为 93-97%,RSD 为 2-6%。这种绿色传感器显著减少了试剂的消耗,并在复杂的食品样品中采用简单、可靠和稳健的方法进行操作。

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