Department of Nanoengineering, University of California, San Diego, La Jolla, CA, USA.
Department of Electrical & Computer Engineering, University of California, San Diego, La Jolla, CA, USA.
Biosens Bioelectron. 2018 Mar 15;101:181-187. doi: 10.1016/j.bios.2017.10.019. Epub 2017 Oct 13.
This article demonstrates a new smartphone-based reusable glucose meter. The glucose meter includes a custom-built smartphone case that houses a permanent bare sensor strip, a stylus that is loaded with enzyme-carbon composite pellets, and sensor instrumentation circuits. A custom-designed Android-based software application was developed to enable easy and clear display of measured glucose concentration. A typical test involves the user loading the software, using the stylus to dispense an enzymatic pellet on top of the bare sensor strip affixed to the case, and then introducing the sample. The electronic module then acquires and wirelessly transmits the data to the application software to be displayed on the screen. The deployed pellet is then discarded to regain the fresh bare sensor surface. Such a unique working principle allows the system to overcome challenges faced by previously reported reusable sensors, such as enzyme degradation, leaching, and hysteresis effects. Studies reveal that the enzyme loaded in the pellets are stable for up to 8 months at ambient conditions, and generate reproducible sensor signals. The work illustrates the significance of the pellet-based sensing system towards realizing a reusable, point-of-care sensor that snugly fits around a smartphone and which does not face issues usually common to reusable sensors. The versatility of this system allows it to be easily modified to detect other analytes for application in a wide range of healthcare, environmental and defense domains.
本文展示了一种基于智能手机的新型可重复使用血糖仪。该血糖仪包括一个定制的智能手机外壳,外壳内装有一个永久性的裸传感器条、一个装有酶-碳复合材料颗粒的触笔,以及传感器仪器电路。开发了一个定制的基于 Android 的软件应用程序,以实现方便、清晰地显示测量的葡萄糖浓度。典型的测试过程包括用户加载软件,使用触笔将酶颗粒分配到固定在外壳上的裸传感器条上,然后引入样本。电子模块随后采集并无线传输数据到应用软件在屏幕上显示。然后丢弃已使用的颗粒,以恢复新鲜的裸传感器表面。这种独特的工作原理使该系统能够克服以前报道的可重复使用传感器所面临的挑战,如酶降解、浸出和滞后效应。研究表明,颗粒中加载的酶在环境条件下稳定长达 8 个月,并产生可重复的传感器信号。这项工作说明了基于颗粒的传感系统在实现可重复使用、即时检测传感器方面的重要意义,这种传感器紧贴智能手机,不会面临可重复使用传感器通常存在的问题。该系统的多功能性允许它轻松修改以检测其他分析物,应用于广泛的医疗保健、环境和国防领域。