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用于窄治疗指数药物检测的碳基纳米材料

Carbon based nanomaterials for the detection of narrow therapeutic index pharmaceuticals.

作者信息

Hassanpour Soodabeh, Behnam Behzad, Baradaran Behzad, Hashemzaei Mahmoud, Oroojalian Fatemeh, Mokhtarzadeh Ahad, de la Guardia Miguel

机构信息

Department of Analytical Chemistry, Faculty of Science, Palacky University Olomouc, 17. Listopadu 12, 77146, Olomouc, Czech Republic.

Pharmaceutics Research Center, Institute of Neuropharmacology, Kerman University of Medical Sciences, Kerman, Iran.

出版信息

Talanta. 2021 Jan 1;221:121610. doi: 10.1016/j.talanta.2020.121610. Epub 2020 Sep 2.

Abstract

Precise detection of important pharmaceuticals with narrow therapeutic index (NTI) is very critical as there is a small window between their effective dose and the doses at which the adverse reactions are very likely to appear. Regarding the fact that various pharmacokinetics will be plausible while considering pharmacogenetic factors and also differences between generic and brand name drugs, accurate detection of NTI will be more important. Current routine analytical techniques suffer from many drawbacks while using novel biosensors can bring up many advantages including fast detection, accuracy, low cost with simple and repeatable measurements. Recently the well-known carbon Nano-allotropes including carbon nanotubes and graphenes have been widely used for development of different Nano-biosensors for a diverse list of analytes because of their great physiochemical features such as high tensile strength, ultra-light weight, unique electronic construction, high thermo-chemical stability, and an appropriate capacity for electron transfer. Because of these exceptional properties, scientists have developed an immense interest in these nanomaterials. In this case, there are important reports to show the effective Nano-carbon based biosensors in the detection of NTI drugs and the present review will critically summarize the available data in this field.

摘要

精确检测治疗指数狭窄(NTI)的重要药物至关重要,因为其有效剂量与很可能出现不良反应的剂量之间的窗口很窄。考虑到在考虑药物遗传学因素以及仿制药和品牌药之间的差异时各种药代动力学都是合理的,准确检测NTI将更为重要。当前的常规分析技术存在许多缺点,而使用新型生物传感器可以带来许多优点,包括快速检测、准确性、低成本以及简单且可重复的测量。最近,包括碳纳米管和石墨烯在内的著名碳纳米同素异形体因其出色的物理化学特性,如高拉伸强度、超轻重量、独特的电子结构、高热化学稳定性以及适当的电子转移能力,已被广泛用于开发针对各种分析物的不同纳米生物传感器。由于这些优异的特性,科学家们对这些纳米材料产生了浓厚的兴趣。在这种情况下,有重要报告显示基于纳米碳的生物传感器在检测NTI药物方面的有效性,本综述将批判性地总结该领域的现有数据。

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