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新型光谱电化学传感器和纳米探针在食品与生物抗氧化剂特性分析中的应用

Novel Spectroscopic and Electrochemical Sensors and Nanoprobes for the Characterization of Food and Biological Antioxidants.

机构信息

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

Turkish Academy of Sciences (TUBA), Piyade Sok., No. 27, Cankaya, 06550 Ankara, Turkey.

出版信息

Sensors (Basel). 2018 Jan 11;18(1):186. doi: 10.3390/s18010186.

Abstract

Since an unbalanced excess of reactive oxygen/nitrogen species (ROS/RNS) causes various diseases, determination of antioxidants that can counter oxidative stress is important in food and biological analyses. Optical/electrochemical nanosensors have attracted attention in antioxidant activity (AOA) assessment because of their increased sensitivity and selectivity. Optical sensors offer advantages such as low cost, flexibility, remote control, speed, miniaturization and on-site/in situ analysis. Electrochemical sensors using noble metal nanoparticles on modified electrodes better catalyze bioelectrochemical reactions. We summarize the design principles of colorimetric sensors and nanoprobes for food antioxidants (including electron-transfer based and ROS/RNS scavenging assays) and important milestones contributed by our laboratory. We present novel sensors and nanoprobes together with their mechanisms and analytical performances. Our colorimetric sensors for AOA measurement made use of cupric-neocuproine and ferric-phenanthroline complexes immobilized on a Nafion membrane. We recently designed an optical oxidant/antioxidant sensor using ,-dimethyl--phenylene diamine (DMPD) as probe, from which ROS produced colored DMPD-quinone cationic radicals electrostatically retained on a Nafion membrane. The attenuation of initial color by antioxidants enabled indirect AOA estimation. The surface plasmon resonance absorption of silver nanoparticles as a result of enlargement of citrate-reduced seed particles by antioxidant addition enabled a linear response of AOA. We determined biothiols with Ellman reagent-derivatized gold nanoparticles.

摘要

由于活性氧/氮物种(ROS/RNS)的不平衡过剩会导致各种疾病,因此确定能够对抗氧化应激的抗氧化剂在食品和生物分析中非常重要。由于其灵敏度和选择性的提高,光学/电化学纳米传感器在抗氧化活性(AOA)评估中引起了关注。光学传感器具有成本低、灵活性、远程控制、速度快、小型化和现场/原位分析等优点。使用修饰电极上的贵金属纳米粒子的电化学传感器可以更好地催化生物电化学反应。我们总结了用于食品抗氧化剂的比色传感器和纳米探针的设计原理(包括基于电子转移和 ROS/RNS 清除测定的原理),以及我们实验室做出的重要里程碑贡献。我们提出了新的传感器和纳米探针,以及它们的机制和分析性能。我们用于 AOA 测量的比色传感器利用铜-新铜试剂和铁-菲咯啉配合物固定在 Nafion 膜上。我们最近设计了一种光学氧化剂/抗氧化剂传感器,使用 - 二甲基--苯二胺(DMPD)作为探针,其中由抗氧化剂产生的有色 DMPD-醌阳离子自由基通过静电保留在 Nafion 膜上。抗氧化剂的初始颜色衰减使得能够间接估计 AOA。由于抗氧化剂的添加使柠檬酸还原的种子颗粒膨胀,导致银纳米颗粒的表面等离子体共振吸收,从而实现了 AOA 的线性响应。我们使用 Ellman 试剂衍生化的金纳米粒子测定生物硫醇。

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