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电化学传感器和用于分析抗肿瘤药物的生物传感器。

Electrochemical sensors and biosensors for the analysis of antineoplastic drugs.

机构信息

Núcleo de Tecnologia Farmacêutica, Universidade Federal do Piauí, Teresina, PI 64049-550, Brazil.

Núcleo de Tecnologia Farmacêutica, Universidade Federal do Piauí, Teresina, PI 64049-550, Brazil.

出版信息

Biosens Bioelectron. 2018 Jun 15;108:27-37. doi: 10.1016/j.bios.2018.02.034. Epub 2018 Feb 13.

Abstract

Cancer is a leading cause of death worldwide, often being treated with antineoplastic drugs that have high potential for toxicity to humans and the environment, even at very low concentrations. Therefore, monitoring these drugs is of utmost importance. Among the techniques used to detect substances at low concentrations, electrochemical sensors and biosensors have been noted for their practicality and low cost. This review brings, for the first time, a simplified outline of the main electrochemical sensors and biosensors developed for the analysis of antineoplastic drugs. The drugs analyzed and the methodology used for electrochemical sensing are described, as are the techniques used for drug quantification and the analytical performance of each sensor, highlighting the limit of detection (LOD), as well as the linear range of quantification (LR) for each system. Finally, we present a technological prospection on the development and use of electrochemical sensors and biosensors in the quantification of antineoplastic drugs. A search of international patent databases revealed no patents currently submitted under this topic, suggesting this is an area to be further explored. We also show that the use of these systems has been gaining prominence in recent years, and that the quantification of antineoplastic drugs using electrochemical techniques could bring great financial and health benefits.

摘要

癌症是全球主要的死亡原因之一,通常采用抗肿瘤药物进行治疗,这些药物即使在非常低的浓度下,对人类和环境也具有很高的毒性。因此,监测这些药物至关重要。在用于检测低浓度物质的技术中,电化学传感器和生物传感器因其实用性和低成本而受到关注。本综述首次简要介绍了为分析抗肿瘤药物而开发的主要电化学传感器和生物传感器。描述了所分析的药物以及用于电化学传感的方法,以及用于药物定量的技术和每个传感器的分析性能,突出了每个系统的检测限 (LOD) 和定量线性范围 (LR)。最后,我们对电化学传感器和生物传感器在抗肿瘤药物定量中的开发和使用提出了技术展望。对国际专利数据库的检索显示,目前没有针对该主题提交的专利,这表明该领域有待进一步探索。我们还表明,这些系统的使用近年来越来越受到关注,并且使用电化学技术定量抗肿瘤药物可能会带来巨大的经济和健康效益。

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