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Protein Biosensors Based on Polymer Nanowires, Carbon Nanotubes and Zinc Oxide Nanorods

机译:基于聚合物纳米线,碳纳米管和氧化锌纳米棒的蛋白质生物传感器

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摘要

The development of biosensors using electrochemical methods is a promising application in the field of biotechnology. High sensitivity sensors for the bio-detection of proteins have been developed using several kinds of nanomaterials. The performance of the sensors depends on the type of nanostructures with which the biomaterials interact. One dimensional (1-D) structures such as nanowires, nanotubes and nanorods are proven to have high potential for bio-applications. In this paper we review these three different kinds of nanostructures that have attracted much attention at recent times with their great performance as biosensors. Materials such as polymers, carbon and zinc oxide have been widely used for the fabrication of nanostructures because of their enhanced performance in terms of sensitivity, biocompatibility, and ease of preparation. Thus we consider polymer nanowires, carbon nanotubes and zinc oxide nanorods for discussion in this paper. We consider three stages in the development of biosensors: (a) fabrication of biomaterials into nanostructures, (b) alignment of the nanostructures and (c) immobilization of proteins. Two different methods by which the biosensors can be developed at each stage for all the three nanostructures are examined. Finally, we conclude by mentioning some of the major challenges faced by many researchers who seek to fabricate biosensors for real time applications.
机译:使用电化学方法的生物传感器的开发在生物技术领域中是有希望的应用。使用多种纳米材料已经开发出用于蛋白质生物检测的高灵敏度传感器。传感器的性能取决于生物材料相互作用的纳米结构的类型。一维(1-D)结构(例如纳米线,纳米管和纳米棒)被证明具有很高的生物应用潜力。在本文中,我们将对这三种不同类型的纳米结构进行综述,它们最近以其作为生物传感器的出色性能而备受关注。由于诸如聚合物,碳和氧化锌之类的材料在灵敏度,生物相容性和易于制备方面的增强性能,它们已被广泛用于纳米结构的制造。因此,我们考虑在本文中讨论聚合物纳米线,碳纳米管和氧化锌纳米棒。我们考虑了生物传感器开发的三个阶段:(a)将生物材料制造成纳米结构,(b)对准纳米结构和(c)固定蛋白质。研究了两种不同的方法,可以在每个阶段针对所有三个纳米结构开发生物传感器。最后,我们以提及为实时应用制造生物传感器的许多研究人员面临的一些主要挑战作为结论。

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