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利福霉素类抗生素检测用(生物)传感器和分析方法的最新进展。

State of the Art on Developments of (Bio)Sensors and Analytical Methods for Rifamycin Antibiotics Determination.

机构信息

Department of Surgery, Faculty of Medicine, "Lucian Blaga" University Sibiu, Lucian Blaga Street 25, 550169 Sibiu, Romania.

Department of Analytical Chemistry and Physical Chemistry, Faculty of Chemistry, University of Bucharest, Panduri Av. 90-92, District 5, 050663 Bucharest, Romania.

出版信息

Sensors (Basel). 2023 Jan 14;23(2):976. doi: 10.3390/s23020976.

Abstract

This review summarizes the literature data reported from 2000 up to the present on the development of various electrochemical (voltammetric, amperometric, potentiometric and photoelectrochemical), optical (UV-Vis and IR) and luminescence (chemiluminescence and fluorescence) methods and the corresponding sensors for rifamycin antibiotics analysis. The discussion is focused mainly on the foremost compound of this class of macrocyclic drugs, namely rifampicin (RIF), which is a first-line antituberculosis agent derived from rifampicin SV (RSV). RIF and RSV also have excellent therapeutic action in the treatment of other bacterial infectious diseases. Due to the side-effects (e.g., prevalence of drug-resistant bacteria, hepatotoxicity) of long-term RIF intake, drug monitoring in patients is of real importance in establishing the optimum RIF dose, and therefore, reliable, rapid and simple methods of analysis are required. Based on the studies published on this topic in the last two decades, the sensing principles, some examples of sensors preparation procedures, as well as the performance characteristics (linear range, limits of detection and quantification) of analytical methods for RIF determination, are compared and correlated, critically emphasizing their benefits and limitations. Examples of spectrometric and electrochemical investigations of RIF interaction with biologically important molecules are also presented.

摘要

本文综述了 2000 年至今报道的各种电化学(伏安法、电流法、电位法和光电化学)、光学(紫外可见和红外)和发光(化学发光和荧光)方法以及相应的利福霉素类抗生素分析传感器的文献数据。讨论主要集中在该类大环药物的主要化合物利福平(RIF)上,它是一种源自利福霉素 SV(RSV)的一线抗结核药物。RIF 和 RSV 在治疗其他细菌性传染病方面也具有极好的治疗作用。由于长期服用 RIF 的副作用(例如,耐药菌的流行、肝毒性),对患者进行药物监测对于确定最佳 RIF 剂量非常重要,因此需要可靠、快速和简单的分析方法。基于过去二十年关于该主题的研究,比较和关联了用于 RIF 测定的传感器制备方法以及分析方法的性能特征(线性范围、检测限和定量限)的传感原理、一些传感器制备程序的示例,批判性地强调了它们的优点和局限性。还介绍了利福霉素与生物重要分子相互作用的光谱和电化学研究的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deee/9863535/8bf33ff2c7f5/sensors-23-00976-g001.jpg

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