A Critical Overview of Enzyme-Based Electrochemical Biosensors for L-Dopa Detection in Biological Samples

IF 3.7 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL Chemosensors Pub Date : 2023-10-05 DOI:10.3390/chemosensors11100523
Carmen Tesoro, Giuseppa Cembalo, Antonio Guerrieri, Giuliana Bianco, Maria Assunta Acquavia, Angela Di Di Capua, Filomena Lelario, Rosanna Ciriello
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Abstract

L-Dopa is an intermediate amino acid in the biosynthesis of endogenous catecholamines, such as dopamine. It is currently considered to be the optimal dopaminergic treatment for Parkinson’s disease, a neurodegenerative disorder affecting around 1% of the population. In an advanced stage of the disease, complications such as dyskinesia and psychosis are caused by fluctuations in plasma drug levels. Real-time monitoring of L-Dopa levels would be advantageous for properly adjusting drug dosing, thus improving therapeutic efficacy. Electrochemical methods have advantages such as easy-to-use instrumentation, fast response time, and high sensitivity, and are suitable for miniaturization, enabling the fabrication of implantable or wearable devices. This review reports on research papers of the past 20 years (2003–2023) dealing with enzyme-based biosensors for the electrochemical detection of L-Dopa in biological samples. Specifically, amperometric and voltammetric biosensors, whose output signal is a measurable current, are discussed. The approach adopted includes an initial study of the steps required to assemble the devices, i.e., electrode modification and enzyme immobilization. Then, all issues related to their analytical performance in terms of sensitivity, selectivity, and capability to analyze real samples are critically discussed. The paper aims to provide an assessment of recent developments while highlighting limitations such as poor selectivity and long-term stability, and the laborious and time-consuming fabrication protocol that needs to be addressed from the perspective of the integrated clinical management of Parkinson’s disease.
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酶基电化学生物传感器在生物样品中检测左旋多巴的关键概述
左旋多巴是生物合成内源性儿茶酚胺(如多巴胺)的中间氨基酸。它目前被认为是帕金森病的最佳多巴胺能治疗方法,帕金森病是一种影响约1%人口的神经退行性疾病。在疾病的晚期,运动障碍和精神病等并发症是由血浆药物水平波动引起的。实时监测左旋多巴水平有利于合理调整给药剂量,从而提高治疗效果。电化学方法具有仪器易于使用,响应时间快,灵敏度高等优点,并且适合小型化,可以制造可植入或可穿戴设备。本文综述了近20年来(2003-2023)关于酶基生物传感器电化学检测生物样品中左旋多巴的研究论文。具体地说,我们讨论了输出信号为可测量电流的安培和伏安生物传感器。所采用的方法包括组装设备所需步骤的初步研究,即电极修饰和酶固定化。然后,在灵敏度、选择性和分析真实样品的能力方面,所有与分析性能相关的问题都进行了批判性讨论。本文旨在对最近的发展进行评估,同时强调从帕金森病综合临床管理的角度需要解决的局限性,如选择性差和长期稳定性差,以及繁琐和耗时的制作方案。
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来源期刊
Chemosensors
Chemosensors Chemistry-Analytical Chemistry
CiteScore
5.00
自引率
9.50%
发文量
450
审稿时长
11 weeks
期刊介绍: Chemosensors (ISSN 2227-9040; CODEN: CHEMO9) is an international, scientific, open access journal on the science and technology of chemical sensors published quarterly online by MDPI.The journal is indexed in Scopus, SCIE (Web of Science), CAPlus / SciFinder, Inspec, Engineering Village and other databases.
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