Department of Animal Biology, Faculty of Natural Science, University of Tabriz, 51666-16471, Tabriz, Iran.
Department of Animal Biology, Faculty of Natural Science, University of Tabriz, 51666-16471, Tabriz, Iran.
Chemosphere. 2022 May;295:133747. doi: 10.1016/j.chemosphere.2022.133747. Epub 2022 Feb 2.
Herein, MoO nanoparticles were synthesized and modified using Argon cold plasma treatment (Ar-MoONPs) for the first time. Various characterization studies were performed using various methods, including SEM, XRD, and FTIR techniques. The catalytic activity of MoONPs before and after modification was investigated using fluorometric and colorimetric experiments. The results indicated that the enzyme-mimic activity of MoONPs increased after plasma-surface modification (1.5 fold). Also, a fluorometric method based on the oxidation of a non-fluorescent terephthalic acid by Ar-MoONPs in the presence of HO and the production of a compound with a high emission was designed for polyphenols detection. Quercetin was used as a polyphenol standard for the optimization of the proposed system. Under the optimum conditions, the dynamic ranges of the calibration graphs and the detection limits were calculated for different polyphenols (μmol/L): quercetin (2-232, 12.22), resveratrol (2-270, 61.89), curcumin (39-400, 38.89), gallic acid (2-309, 21.5) and ellagic acid (39-309, 16.25). Also, the precision of the method, which was expressed as RSD%, was in the range of 0.286-1.19%. The proposed system could detect individual polyphenols and total polyphenols in three different fruit extracts (apple, orange, and grapes) with high sensitivity. The obtained total concentrations of polyphenols in real samples were comparable to those calculated by the spectrophotometric method. So, a novel and sensitive optical nanosensor for the detection of polyphenols was reported as an alternative to the routine Folin-Ciocalteu spectrophotometric technique.
本文首次采用氩气冷等离子体处理(Ar-MoONPs)合成并修饰了 MoO 纳米粒子。采用 SEM、XRD 和 FTIR 等多种方法进行了各种特性研究。使用荧光和比色实验研究了修饰前后 MoONPs 的催化活性。结果表明,等离子体表面修饰后 MoONPs 的酶模拟活性增加了(1.5 倍)。此外,还设计了一种基于 Ar-MoONPs 在 HO 存在下氧化非荧光对苯二甲酸并产生具有高发射的化合物的荧光方法,用于多酚检测。槲皮素被用作多酚标准,以优化所提出的系统。在最佳条件下,计算了不同多酚(μmol/L)校准曲线的动态范围和检测限:槲皮素(2-232,12.22)、白藜芦醇(2-270,61.89)、姜黄素(39-400,38.89)、没食子酸(2-309,21.5)和鞣花酸(39-309,16.25)。此外,方法的精密度,以 RSD% 表示,在 0.286-1.19% 范围内。该系统能够以高灵敏度检测三种不同水果提取物(苹果、橙子和葡萄)中的单个多酚和总多酚。实际样品中总多酚浓度与分光光度法计算的浓度相当。因此,报道了一种用于检测多酚的新型灵敏光学纳米传感器,可替代常规福林-希夫比色法。