首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Optical, electrochemical and catalytic methods for in-vitro diagnosis using carbonaceous nanoparticles: a review
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Optical, electrochemical and catalytic methods for in-vitro diagnosis using carbonaceous nanoparticles: a review

机译:光学,电化学和催化方法用于使用碳质纳米粒子的体外诊断:综述

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摘要

This review (with 261 refs.) summarizes the progress that has been made in the field of in-vitro diagnosis using carbonaceous nanoparticles (CNPs). Signal readout is mostly based on fluorometry, electrochemistry and colorimetry. Following an introduction, the next two sections cover methods for the fabrication and separation of CNPs. This is followed by sections on (a) fluorometric methods, (b) electrochemical methods, and (c) colorimetric methods for detecting various analytes. Several subsections discuss detection schemes for analytes such as metal ions, pH value, reactive oxygen species, small biogenic molecules (for example glucose, ascorbic acid, amino acids, dopamine), and biomacromolecules (such as enzymes, cancer markers, DNA). A further section discusses methods based on the peroxidase-like activity of CNPs, and how they can be employed for the determination of species such as glucose, cholesterol, glutathione, anduric acid via H2O2-based chromogenic methods. Finally, the challenges and future perspectives in this research area are discussed.A review is presented on the progress that has been made in recent years in sensing platforms for in-vitro diagnosis usingcarbonaceous nanoparticles (CNPs). Signal readout is mostly based on fluorometry, electrochemistry and colorimetry, respectively. Besides, the fabrication and separation strategies of CNPs are also demonstrated.
机译:审查(具有261 refs。)总结了使用碳质纳米颗粒(CNP)在体外诊断领域所取得的进展。信号读数主要基于荧光测定,电化学和比色度。介绍后,接下来的两个部分涵盖了CNP的制造和分离的方法。接下来是(a)荧光法,(b)电化学方法,(c)用于检测各种分析物的比色方法的部分。几个小节讨论了分析物的检测方案,例如金属离子,pH值,反应性氧物质,小生物分子(例如葡萄糖,抗坏血酸,氨基酸,多巴胺)和生物致摩洛(例如酶,癌症标志物,DNA)。另一种部分讨论了基于CNPS的过氧化物酶样活性的方法,以及它们如何用于测定葡萄糖,胆固醇,谷胱甘肽,Anduric酸,通过H 2 O 2的发色法测定葡萄糖。最后,讨论了这一研究领域的挑战和未来观点。近年来在体外诊断使用碳纳米粒子(CNPS)的体外诊断平台上取得了综述。信号读数分别基于荧光测定,电化学和比色度。此外,还证明了CNP的制造和分离策略。

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