Meng Zhang, Yimeng Wang, Jie Jiang, Yanxiao Jiang, Daqian Song
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Chemically modified electrodes have been widely used to solve the problems of poor sensitivity and selectivity faced by bare electrodes. There are a few articles that provide an overview of electrochemical detection and efficient enrichment of CAs, but there is a dearth of updates on the role of CAs in the pathogenesis of diseases. Additionally, there is still a lack of systematic synthesis with a focus on modified electrodes for electrochemical detection. Thus, this review provides a summary of the recent clinical pathogenesis of CAs and the modified electrodes for electrochemical detection of CAs published between 2017 and 2022. Moreover, challenges and future perspectives are also highlighted. 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引用次数: 0
摘要
儿茶酚胺(CA)包括肾上腺素、去甲肾上腺素和多巴胺,是一种神经递质和激素,对人体的心血管系统、新陈代谢和应激反应具有重要调节作用。这些分子水平的异常会导致各种疾病的发生,包括嗜铬细胞瘤和副神经节瘤、阿尔茨海默病和塔克次氏心肌病。电化学技术具有成本低、灵敏度高、检测策略灵活、易于集成和微型化等优点,已被广泛应用于 CAs 的检测,并超越了传统的分析方法。由于电极容易中毒,在实际样品中对 CAs 进行电化学检测具有挑战性。为了解决裸电极灵敏度和选择性差的问题,化学修饰电极得到了广泛应用。有几篇文章概述了电化学检测和高效富集 CAs 的方法,但有关 CAs 在疾病发病机制中的作用的最新研究成果却很少。此外,目前仍缺乏以电化学检测用改性电极为重点的系统综述。因此,本综述对 2017 年至 2022 年间发表的最新 CAs 临床发病机制和用于电化学检测的改性电极进行了总结。此外,还强调了面临的挑战和未来展望。这项工作有望为进入这一交叉学科领域的研究人员提供有益的指导,促进CAs发病机制的进一步发展,并开发出更多用于检测CAs的新型化学修饰电极。
The Role of Catecholamines in the Pathogenesis of Diseases and the Modified Electrodes for Electrochemical Detection of Catecholamines: A Review.
Catecholamines (CAs), which include adrenaline, noradrenaline, and dopamine, are neurotransmitters and hormones that critically regulate the cardiovascular system, metabolism, and stress response in the human body. The abnormal levels of these molecules can lead to the development of various diseases, including pheochromocytoma and paragangliomas, Alzheimer's disease, and Takotsubo cardiomyopathy. Due to their low cost, high sensitivity, flexible detection strategies, ease of integration, and miniaturization, electrochemical techniques have been extensively employed in the detection of CAs, surpassing traditional analytical methods. Electrochemical detection of CAs in real samples is challenging due to the tendency of poisoning electrode. Chemically modified electrodes have been widely used to solve the problems of poor sensitivity and selectivity faced by bare electrodes. There are a few articles that provide an overview of electrochemical detection and efficient enrichment of CAs, but there is a dearth of updates on the role of CAs in the pathogenesis of diseases. Additionally, there is still a lack of systematic synthesis with a focus on modified electrodes for electrochemical detection. Thus, this review provides a summary of the recent clinical pathogenesis of CAs and the modified electrodes for electrochemical detection of CAs published between 2017 and 2022. Moreover, challenges and future perspectives are also highlighted. This work is expected to provide useful guidance to researchers entering this interdisciplinary field, promoting further development of CAs pathogenesis, and developing more novel chemically modified electrodes for the detection of CAs.
期刊介绍:
Critical Reviews in Analytical Chemistry continues to be a dependable resource for both the expert and the student by providing in-depth, scholarly, insightful reviews of important topics within the discipline of analytical chemistry and related measurement sciences. The journal exclusively publishes review articles that illuminate the underlying science, that evaluate the field''s status by putting recent developments into proper perspective and context, and that speculate on possible future developments. A limited number of articles are of a "tutorial" format written by experts for scientists seeking introduction or clarification in a new area.
This journal serves as a forum for linking various underlying components in broad and interdisciplinary means, while maintaining balance between applied and fundamental research. Topics we are interested in receiving reviews on are the following:
· chemical analysis;
· instrumentation;
· chemometrics;
· analytical biochemistry;
· medicinal analysis;
· forensics;
· environmental sciences;
· applied physics;
· and material science.