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用于传感器应用的大分子分子印迹。

Molecular Imprinting of Macromolecules for Sensor Applications.

机构信息

Department of Chemistry, Division of Biochemistry, Hacettepe University, 06800 Ankara, Turkey.

Department of Chemistry Technology, Abant Izzet Baysal University, 14900 Bolu, Turkey.

出版信息

Sensors (Basel). 2017 Apr 19;17(4):898. doi: 10.3390/s17040898.

Abstract

Molecular recognition has an important role in numerous living systems. One of the most important molecular recognition methods is molecular imprinting, which allows host compounds to recognize and detect several molecules rapidly, sensitively and selectively. Compared to natural systems, molecular imprinting methods have some important features such as low cost, robustness, high recognition ability and long term durability which allows molecularly imprinted polymers to be used in various biotechnological applications, such as chromatography, drug delivery, nanotechnology, and sensor technology. Sensors are important tools because of their ability to figure out a potentially large number of analytical difficulties in various areas with different macromolecular targets. Proteins, enzymes, nucleic acids, antibodies, viruses and cells are defined as macromolecules that have wide range of functions are very important. Thus, macromolecules detection has gained great attention in concerning the improvement in most of the studies. The applications of macromolecule imprinted sensors will have a spacious exploration according to the low cost, high specificity and stability. In this review, macromolecules for molecularly imprinted sensor applications are structured according to the definition of molecular imprinting methods, developments in macromolecular imprinting methods, macromolecular imprinted sensors, and conclusions and future perspectives. This chapter follows the latter strategies and focuses on the applications of macromolecular imprinted sensors. This allows discussion on how sensor strategy is brought to solve the macromolecules imprinting.

摘要

分子识别在许多生命系统中都具有重要作用。其中最重要的分子识别方法之一是分子印迹,它可以使主体化合物快速、灵敏和选择性地识别和检测多种分子。与天然系统相比,分子印迹方法具有一些重要的特点,如低成本、稳健性、高识别能力和长期耐久性,这使得分子印迹聚合物能够应用于各种生物技术领域,如色谱、药物输送、纳米技术和传感器技术。传感器是重要的工具,因为它们能够解决各种领域中潜在的大量分析难题,这些领域的分析对象具有不同的大分子。蛋白质、酶、核酸、抗体、病毒和细胞被定义为具有广泛功能的大分子,非常重要。因此,大分子检测在大多数研究中都受到了极大的关注。根据低成本、高特异性和稳定性,大分子印迹传感器的应用将有广阔的探索空间。在这篇综述中,根据分子印迹方法的定义、大分子印迹方法的发展、大分子印迹传感器以及结论和未来展望,对用于分子印迹传感器应用的大分子进行了结构分析。本章遵循后一种策略,重点讨论了大分子印迹传感器的应用。这使得我们可以讨论传感器策略如何被用来解决大分子印迹问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bce5/5426548/090eb75597b1/sensors-17-00898-g001.jpg

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