Key Laboratory of Micro-systems and Micro-structures Manufacturing of Ministry of Education, Harbin Institute of Technology, Harbin 150001, China; State Key Lab of Advanced Welding and Joining, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China.
Ministry of Education Key Lab of RF Circuits and Systems, Hangzhou Dianzi University, Hangzhou 310018, China.
Biosens Bioelectron. 2018 Jul 1;110:78-88. doi: 10.1016/j.bios.2018.03.018. Epub 2018 Mar 21.
Point-of-care testing technique is increasingly important for healthcare management in human being's daily life. However, traditional biosensor systems for health care are relatively expensive, bulky and hard-to-handle, which largely limits their use in point of care testing. The problems mentioned above are successfully addressed with the popularization of smartphone and the development of microfluidic technology for their applications of biosensor, which integrates smartphones, microfluidic components and sensory elements together, paving the way for wide application of smartphone-based microfluidic biomedical sensory system. According to the varieties of analytes, the most common sensing modalities of biosensor systems are divided into imaging analysis to detect cells and bacteria, biochemical analysis to detect blood sugar and blood fat, immunoassay to detect protein specifically bound to antibody, as well as molecular diagnosis to detect DNA and other biomolecules. Based on the most common analytical methods, this review article covers five types of smartphone-based microfluidic biosensor systems at the point-of-care detection, i.e., smartphone-based imaging biosensor, smartphone-based biochemical sensor, smartphone-based immune biosensor, smartphone-based hybrid biosensor with more than one sensing modality, and smartphone-based molecular sensor. We lay emphasis on reviewing the structures, analytical methods and sensing modalities about the four kinds of biosensor systems with detailed discussions on their application potentials, aiming at giving the audience an overview of the recent developments of automatic smartphone-based microfluidic biosensor systems, as well as their future prospective.
即时检测技术在人类日常生活的医疗保健管理中变得越来越重要。然而,传统的用于医疗保健的生物传感器系统相对昂贵、庞大且难以操作,这在很大程度上限制了它们在即时检测中的应用。随着智能手机的普及和微流控技术在生物传感器中的应用的发展,上述问题得到了成功解决,它们将智能手机、微流控组件和感应元件集成在一起,为基于智能手机的微流控生物医学感应系统的广泛应用铺平了道路。根据分析物的种类,生物传感器系统最常见的感应方式分为用于检测细胞和细菌的成像分析、用于检测血糖和血脂的生化分析、用于特异性结合抗体的蛋白质检测的免疫分析,以及用于检测 DNA 和其他生物分子的分子诊断。基于最常见的分析方法,本文综述了五种基于智能手机的即时检测用微流控生物传感器系统,即基于智能手机的成像生物传感器、基于智能手机的生化传感器、基于智能手机的免疫生物传感器、具有一种以上感应方式的基于智能手机的混合生物传感器,以及基于智能手机的分子传感器。我们重点介绍了前四种生物传感器系统的结构、分析方法和感应方式,并详细讨论了它们的应用潜力,旨在使读者全面了解自动基于智能手机的微流控生物传感器系统的最新发展以及它们的未来前景。