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用于含硫抗氧化剂的电化学传感器的最新进展

Recent Advances in Electrochemical Sensors for Sulfur-Containing Antioxidants.

作者信息

Ziyatdinova Guzel, Gimadutdinova Liliya

机构信息

Analytical Chemistry Department, Kazan Federal University, Kremleyevskaya, 18, Kazan 420008, Russia.

出版信息

Micromachines (Basel). 2023 Jul 18;14(7):1440. doi: 10.3390/mi14071440.

Abstract

Sulfur-containing antioxidants are an important part of the antioxidant defense systems in living organisms under the frame of a thiol-disulfide equilibrium. Among them, l-cysteine, l-homocysteine, l-methionine, glutathione, and α-lipoic acid are the most typical representatives. Their actions in living systems are briefly discussed. Being electroactive, sulfur-containing antioxidants are interesting analytes to be determined using various types of electrochemical sensors. Attention is paid to the chemically modified electrodes with various nanostructured coverages. The analytical capabilities of electrochemical sensors for sulfur-containing antioxidant quantification are summarized and discussed. The data are summarized and presented on the basis of the electrode surface modifier applied, i.e., carbon nanomaterials, metal and metal oxide nanoparticles (NPs) and nanostructures, organic mediators, polymeric coverage, and mixed modifiers. The combination of various types of nanomaterials provides a wider linear dynamic range, lower limits of detection, and higher selectivity in comparison to bare electrodes and sensors based on the one type of surface modifier. The perspective of the combination of chromatography with electrochemical detection providing the possibility for simultaneous determination of sulfur-containing antioxidants in a complex matrix has also been discussed.

摘要

在硫醇 - 二硫键平衡框架下,含硫抗氧化剂是生物体内抗氧化防御系统的重要组成部分。其中,L - 半胱氨酸、L - 高半胱氨酸、L - 甲硫氨酸、谷胱甘肽和α - 硫辛酸是最典型的代表。简要讨论了它们在生物系统中的作用。由于具有电活性,含硫抗氧化剂是使用各种类型电化学传感器进行测定的有趣分析物。重点关注具有各种纳米结构覆盖层的化学修饰电极。总结并讨论了电化学传感器对含硫抗氧化剂定量的分析能力。数据是根据所应用的电极表面改性剂进行总结和呈现的,即碳纳米材料、金属和金属氧化物纳米颗粒(NPs)及纳米结构、有机介质、聚合物覆盖层和混合改性剂。与裸电极和基于单一类型表面改性剂的传感器相比,各种类型纳米材料的组合提供了更宽的线性动态范围、更低的检测限和更高的选择性。还讨论了色谱与电化学检测相结合的前景,其为在复杂基质中同时测定含硫抗氧化剂提供了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17b9/10384414/cc5206be04a5/micromachines-14-01440-sch001.jpg

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