测定抗氧化能力的便携式电位仪

Q4 Materials Science Chimica Techno Acta Pub Date : 2022-12-21 DOI:10.15826/chimtech.2023.10.1.04
Elena Salimgareeva, D. Igdisanova, D. Gordeeva, E. Yarkova, A. Matern, E. Gerasimova, A. Ivanova
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引用次数: 0

摘要

目前,便携式抗氧化剂等生物活性物质含量快速测定装置的研制是现代化学、医学和工程领域的相关技术问题之一。这种设备的主要优点是分析简单快速,分析物体积小,设备小型化,使现场分析成为可能,从而向个性化医疗迈出了一步。使用K3[Fe(CN)6]/K4[Fe(CN)6]体系的电位法在实验室规模版本中被证明是最准确、可重复性和快速的,是开发便携式设备原型的基础。本研究提出了两种便携式装置的原型,即体积为0.2 ml的开放式微池和流量控制的微流控装置。通过将“引入发现”法测定抗氧化剂模型溶液及其混合物的结果与标准实验室电化学电池的AOC结果进行比较,证实了两种体系测定抗氧化能力(AOC)的正确性。相对标准偏差不超过10%。用微流控装置测定了某饮料工业的AOC。微流控装置与实验细胞的相关系数为0.90,表明数据收敛性好,可以利用微流控装置实现的电位法评估多组分物体的AOC。
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Portable potentiometric device for determining the antioxidant capacity
At present, the development of portable devices for the express assessment of the content of biologically active objects, such as antioxidants, is one of the relevant technological problems of modern chemistry, medicine, and engineering. The main advantages of such devices are the simplicity and rapidity of analysis, small volumes of analyte, as well as miniaturization of equipment, making it possible to carry out the on-site analysis and, thus, to take a step towards the personalized medicine. The potentiometric method using the K3[Fe(CN)6]/K4[Fe(CN)6] system, which in the laboratory-scale version proved to be the most accurate, reproducible, and express, was the basis for the developed prototypes of portable devices. In this study, two versions of prototypes of the portable device are proposed, namely, the open microcell with the 0.2 ml volume and the microfluidic device with flow control. The correctness of the antioxidant capacity (AOC) determination in both systems was confirmed by comparing the results of the "introduced-found" method on model solutions of antioxidants and their mixtures with the AOC results obtained in a standard laboratory electrochemical cell. The relative standard deviation did not exceed 10%. The AOC of some beverage industry was determined using the microfluidic device. The correlation coefficient of the results, obtained in the microfluidic device and the laboratory cell, was 0.90, which indicates good data convergence and the possibility of using the potentiometric method implemented in the microfluidic device to assess the AOC of multicomponent objects.
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
期刊最新文献
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