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三金属纳米材料在非酶葡萄糖传感器中的应用。

Applications of trimetallic nanomaterials as Non-Enzymatic glucose sensors.

机构信息

College of Engineering, Dhofar University, Salalah, Oman.

Department of Mathematics and Sciences, College of Arts and Applied Sciences, Dhofar University, Salalah, Oman.

出版信息

Drug Dev Ind Pharm. 2023 Jun;49(6):393-404. doi: 10.1080/03639045.2023.2221737. Epub 2023 Jun 22.

Abstract

OBJECTIVE

This article critically reviews recent research on the use of trimetallic nanomaterials for the fabrication of non-enzymatic glucose sensors (NEGS), also known as fourth-generation glucose sensors (FGGS).

SIGNIFICANCE

Diabetes is a prevalent chronic disease worldwide, and glucose monitoring is crucial for its management. However, conventional enzymatic glucose sensors suffer from several technological drawbacks, and there is a need to develop new-generation glucose sensors that can overcome these limitations. NEGS, particularly those composed of trimetallic nanocomposites, have demonstrated promising results in terms of improved shelf life, higher sensitivity, and simplicity of operation during glucose measurement.

METHODS

In this review, we discuss the different trimetallic nanomaterials developed and used by researchers in recent years for glucose detection, including their mechanisms of action. We also provide a brief discussion of the advantages and disadvantages of FGGS-based trimetallic nanomaterials, as well as the industrial challenges in this area of research.

RESULTS

Trimetallic nanomaterials for FGGS have shown excellent reproducibility and high stability, making them suitable for continuous glucose monitoring. The different types of trimetallic nanomaterials have varying sensing properties, and their performance can be tuned by controlling their synthesis parameters.

CONCLUSION

Trimetallic nanomaterials are a promising avenue for the development of FGGS, recent research has demonstrated their potential for glucose monitoring. However, there are still some challenges that need to be addressed before their widespread adoption, such as their long-term stability and cost-effectiveness. Further research in this area is needed to overcome these challenges and to develop commercially viable FGGS for diabetes management.

摘要

目的

本文批判性地回顾了近期关于使用三元金属纳米材料制造非酶葡萄糖传感器(NEGS)的研究,也称为第四代葡萄糖传感器(FGGS)。

意义

糖尿病是一种全球流行的慢性疾病,血糖监测对于其管理至关重要。然而,传统的酶葡萄糖传感器存在一些技术缺陷,需要开发新一代的葡萄糖传感器来克服这些局限性。NEGS,特别是由三元纳米复合材料组成的 NEGS,在改善保质期、提高灵敏度以及在葡萄糖测量期间操作简单性方面表现出了有前景的结果。

方法

在这篇综述中,我们讨论了近年来研究人员为葡萄糖检测开发和使用的不同三元金属纳米材料,包括它们的作用机制。我们还简要讨论了基于 FGGS 的三元金属纳米材料的优缺点,以及该研究领域的工业挑战。

结果

FGGS 的三元金属纳米材料表现出了优异的重现性和高稳定性,使其适合连续血糖监测。不同类型的三元金属纳米材料具有不同的传感特性,通过控制其合成参数可以调整其性能。

结论

三元金属纳米材料是开发 FGGS 的有前途的途径,近期的研究已经证明了它们在葡萄糖监测方面的潜力。然而,在广泛采用之前,仍需要解决一些挑战,例如它们的长期稳定性和成本效益。需要在该领域进行进一步的研究,以克服这些挑战,并开发出用于糖尿病管理的具有商业可行性的 FGGS。

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