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A Review on Biosensors and Recent Development of Nanostructured Materials-Enabled Biosensors

机译:生物传感器的综述和最近的纳米结构材料的生物传感器

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摘要

A biosensor is an integrated receptor-transducer device, which can convert a biological response into an electrical signal. The design and development of biosensors have taken a center stage for researchers or scientists in the recent decade owing to the wide range of biosensor applications, such as health care and disease diagnosis, environmental monitoring, water and food quality monitoring, and drug delivery. The main challenges involved in the biosensor progress are (i) the efficient capturing of biorecognition signals and the transformation of these signals into electrochemical, electrical, optical, gravimetric, or acoustic signals (transduction process), (ii) enhancing transducer performance i.e., increasing sensitivity, shorter response time, reproducibility, and low detection limits even to detect individual molecules, and (iii) miniaturization of the biosensing devices using micro-and nano-fabrication technologies. Those challenges can be met through the integration of sensing technology with nanomaterials, which range from zero- to three-dimensional, possessing a high surface-to-volume ratio, good conductivities, shock-bearing abilities, and color tunability. Nanomaterials (NMs) employed in the fabrication and nanobiosensors include nanoparticles (NPs) (high stability and high carrier capacity), nanowires (NWs) and nanorods (NRs) (capable of high detection sensitivity), carbon nanotubes (CNTs) (large surface area, high electrical and thermal conductivity), and quantum dots (QDs) (color tunability). Furthermore, these nanomaterials can themselves act as transduction elements. This review summarizes the evolution of biosensors, the types of biosensors based on their receptors, transducers, and modern approaches employed in biosensors using nanomaterials such as NPs (e.g., noble metal NPs and metal oxide NPs), NWs, NRs, CNTs, QDs, and dendrimers and their recent advancement in biosensing technology with the expansion of nanotechnology.
机译:生物传感器是一种集成的受体传感器装置,可以将生物响应转换为电信号。由于各种生物传感器应用,如医疗保健和疾病诊断,环境监测,水和食品质量监测和药物递送,生物传感器的设计和开发是近年来的研究人员或科学家的中心阶段。生物传感器进展中涉及的主要挑战是(i)有效地捕获生物释认信号和这些信号的转换成电化学,电气,光学,重量测量或声学信号(转导过程),(ii)增强换能器性能,即增加甚至使用微型和纳米制造技术检测单个分子的敏感性,较短的响应时间,再现性和低检测限制甚至是检测单个分子,以及(iii)生物传感器件的小型化。这些挑战可以通过与纳米材料的传感技术集成,从零至三维的范围内,具有高度的表面到体积比,良好的导电性,冲击能力和颜色可调性。制造和纳米血管传感器中使用的纳米材料(NMS)包括纳米颗粒(NPS)(高稳定性和高载体能力),纳米线(NWS)和纳米棒(NRS)(能够高检测灵敏度),碳纳米管(CNT)(大表面积)高电和导热性),和量子点(QDS)(颜色可调性)。此外,这些纳米材料本身可以充当转导元件。本综述总结了生物传感器的演变,基于其受体,传感器和使用纳米材料(例如,贵金属NP和金属氧化物NPS),NWS,NRS,CNT,QDS的生物传感器中使用的生物传感器和现代方法的生物传感器和现代方法的进化,和树枝状大分子及其最近在纳米技术扩张中的生物传感技术进步。

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