Mathew Minu, Radhakrishnan Sithara, Vaidyanathan Antara, Chakraborty Brahmananda, Rout Chandra Sekhar
Centre for Nano and Material Science, Jain University, Jain global campus, Jakkasandra, Ramanagara, Bangalore, 562112, India.
Department of Chemistry, Ramnarain Ruia Autonomous College, Matunga, Mumbai, 40085, India.
Anal Bioanal Chem. 2021 Jan;413(3):727-762. doi: 10.1007/s00216-020-03002-y. Epub 2020 Oct 23.
The research interest in wearable sensors has tremendously increased in recent years. Amid the different biosensors, electrochemical biosensors are unparalleled and ideal for the design and manufacture of such flexible and wearable sensors because of their various benefits, including convenient operation, quick response, portability, and inherent miniaturization. A number of studies on flexible and wearable electrochemical biosensors have been reported in recent years for invasive/non-invasive and real-time monitoring of biologically relevant molecules such as glucose, lactate, dopamine, cortisol, and antigens. To attain this, novel two-dimensional nanomaterials and their hybrids, various substrates, and detection methods have been explored to fabricate flexible conductive platforms that can be used to develop flexible electrochemical biosensors. In particular, there are many advantages associated with the advent of two-dimensional materials, such as light weight, high stretchability, high performance, and excellent biocompatibility, which offer new opportunities to improve the performance of wearable electrochemical sensors. Therefore, it is urgently required to study wearable/flexible electrochemical biosensors based on two-dimensional nanomaterials for health care monitoring and clinical analysis. In this review, we described recently reported flexible electrochemical biosensors based on two-dimensional nanomaterials. We classified them into specific groups, including enzymatic/non-enzymatic biosensors and affinity biosensors (immunosensors), recent developments in flexible electrochemical immunosensors based on polymer and plastic substrates to monitor biologically relevant molecules. This review will discuss perspectives on flexible electrochemical biosensors based on two-dimensional materials for the clinical analysis and wearable biosensing devices, as well as the limitations and prospects of the these electrochemical flexible/wearable biosensors.Graphical abstract.
近年来,对可穿戴传感器的研究兴趣急剧增加。在不同的生物传感器中,电化学生物传感器具有诸多优势,包括操作方便、响应迅速、便于携带以及固有的小型化特点,因此在设计和制造此类柔性可穿戴传感器方面无与伦比且堪称理想之选。近年来,已有多项关于柔性可穿戴电化学生物传感器的研究报道,用于对葡萄糖、乳酸、多巴胺、皮质醇和抗原等生物相关分子进行侵入性/非侵入性实时监测。为实现这一目标,人们探索了新型二维纳米材料及其复合材料、各种基底和检测方法,以制造可用于开发柔性电化学生物传感器的柔性导电平台。特别是,二维材料的出现带来了许多优势,如重量轻、高拉伸性、高性能和出色的生物相容性,这为提高可穿戴电化学传感器的性能提供了新机遇。因此,迫切需要研究基于二维纳米材料的可穿戴/柔性电化学生物传感器,用于医疗保健监测和临床分析。在本综述中,我们描述了最近报道的基于二维纳米材料的柔性电化学生物传感器。我们将它们分为特定类别,包括酶促/非酶促生物传感器和亲和生物传感器(免疫传感器),以及基于聚合物和塑料基底的柔性电化学免疫传感器在监测生物相关分子方面的最新进展。本综述将讨论基于二维材料的柔性电化学生物传感器在临床分析和可穿戴生物传感设备方面的前景,以及这些电化学柔性/可穿戴生物传感器的局限性和展望。图形摘要。