Yan Tingyi, Zhang Guangyao, Chai Huining, Qu Lijun, Zhang Xueji
State Key Laboratory of Bio-Fibers and Eco-Textiles, Intelligent Wearable Engineering Research Center of Qingdao, Research Center for Intelligent and Wearable Technology, College of Textiles and Clothing, Qingdao University, Qingdao, China.
School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao, China.
Front Bioeng Biotechnol. 2021 Sep 28;9:753692. doi: 10.3389/fbioe.2021.753692. eCollection 2021.
With the outbreak and pandemic of COVID-19, point-of-care testing (POCT) systems have been attracted much attention due to their significant advantages of small batches of samples, user-friendliness, easy-to-use and simple detection. Among them, flexible biosensors show practical significance as their outstanding properties in terms of flexibility, portability, and high efficiency, which provide great convenience for users. To construct highly functional flexible biosensors, abundant kinds of polymers substrates have been modified with sufficient properties to address certain needs. Paper-based biosensors gain considerable attention as well, owing to their foldability, lightweight and adaptability. The other important flexible biosensor employs textiles as substrate materials, which has a promising prospect in the area of intelligent wearable devices. In this feature article, we performed a comprehensive review about the applications of flexible biosensors based on the classification of substrate materials (polymers, paper and textiles), and illustrated the strategies to design effective and artificial sensing platforms, including colorimetry, fluorescence, and electrochemistry. It is demonstrated that flexible biosensors play a prominent role in medical diagnosis, prognosis, and healthcare.
随着新冠疫情的爆发和大流行,即时检测(POCT)系统因其对少量样本检测、用户友好、易于使用和检测简单等显著优势而备受关注。其中,柔性生物传感器因其在柔韧性、便携性和高效性方面的突出特性而具有实际意义,为用户提供了极大便利。为构建功能强大的柔性生物传感器,大量具有各种特性的聚合物基底被用于满足特定需求。基于纸张的生物传感器也备受关注,因其具有可折叠、重量轻和适应性强的特点。另一种重要的柔性生物传感器以纺织品为基底材料,在智能可穿戴设备领域具有广阔前景。在这篇专题文章中,我们基于基底材料(聚合物、纸张和纺织品)的分类对柔性生物传感器的应用进行了全面综述,并阐述了设计有效人工传感平台的策略,包括比色法、荧光法和电化学方法。结果表明,柔性生物传感器在医学诊断、预后和医疗保健中发挥着重要作用。