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基于电化学传感器的抗氧化剂评价:文献计量分析。

Evaluation of Antioxidants Using Electrochemical Sensors: A Bibliometric Analysis.

机构信息

Institute of Botany, Jiangsu Province and Chinese Academy of Sciences (Nanjing Botanical Garden Memorial Sun Yat-Sen), Nanjing 210014, China.

School of Resources and Environment, University of Electronic Science and Technology of China, Xiyuan Ave, Chengdu 610056, China.

出版信息

Sensors (Basel). 2022 Apr 22;22(9):3238. doi: 10.3390/s22093238.

Abstract

The imbalance of oxidation and antioxidant systems in the biological system can lead to oxidative stress, which is closely related to the pathogenesis of many diseases. Substances with antioxidant capacity can effectively resist the harmful damage of oxidative stress. How to measure the antioxidant capacity of antioxidants has essential application value in medicine and food. Techniques such as DPPH radical scavenging have been developed to measure antioxidant capacity. However, these traditional analytical techniques take time and require large instruments. It is a more convenient method to evaluate the antioxidant capacity of antioxidants based on their electrochemical oxidation and reduction behaviors. This review summarizes the evaluation of antioxidants using electrochemical sensors by bibliometrics. The development of this topic was described, and the research priorities at different stages were discussed. The topic was investigated in 1999 and became popular after 2010 and has remained popular ever since. A total of 758 papers were published during this period. In the early stages, electrochemical techniques were used only as quantitative techniques and other analytical techniques. Subsequently, cyclic voltammetry was used to directly study the electrochemical behavior of different antioxidants and evaluate antioxidant capacity. With methodological innovations and assistance from materials science, advanced electrochemical sensors have been fabricated to serve this purpose. In this review, we also cluster the keywords to analyze different investigation directions under the topic. Through co-citation of papers, important papers were analyzed as were how they have influenced the topic. In addition, the author's country distribution and category distribution were also interpreted in detail. In the end, we also proposed perspectives for the future development of this topic.

摘要

生物体系中氧化与抗氧化体系的失衡会导致氧化应激,氧化应激与许多疾病的发病机制密切相关。具有抗氧化能力的物质可以有效抵抗氧化应激的有害损伤。如何衡量抗氧化剂的抗氧化能力在医学和食品领域具有重要的应用价值。已经开发出 DPPH 自由基清除等技术来衡量抗氧化能力。然而,这些传统的分析技术需要时间且需要大型仪器。基于抗氧化剂的电化学氧化还原行为来评估其抗氧化能力是一种更方便的方法。本文通过文献计量学综述了使用电化学传感器评估抗氧化剂的方法。描述了该主题的发展,并讨论了不同阶段的研究重点。该主题于 1999 年进行了研究,2010 年后变得流行,此后一直很热门。在此期间共发表了 758 篇论文。在早期,电化学技术仅被用作定量技术和其他分析技术。随后,循环伏安法被用于直接研究不同抗氧化剂的电化学行为并评估抗氧化能力。随着方法学的创新和材料科学的帮助,已经制造出了先进的电化学传感器来实现这一目的。在本综述中,我们还通过聚类关键词来分析该主题下的不同研究方向。通过对论文的共引分析,分析了重要论文以及它们如何影响该主题。此外,还详细解释了作者的国家分布和类别分布。最后,我们还提出了该主题未来发展的展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14b4/9103690/0772b1d14bd0/sensors-22-03238-g001.jpg

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