Chair of Micro- and Nanosystems and Institute of Materials in Electrical Engineering 1, RWTH Aachen University, Aachen, Germany.
PLoS One. 2020 Sep 3;15(9):e0238581. doi: 10.1371/journal.pone.0238581. eCollection 2020.
Electrowetting-on-dielectric is a decent technique to manipulate discrete volumes of liquid in form of droplets. In the last decade, electrowetting-on-dielectric systems, also called digital microfluidic systems, became more frequently used for a variety of applications because of their high flexibility and reconfigurability. Thus, one design can be adapted to different assays by only reprogramming. However, this flexibility can only be useful if the entire system is portable and easy to use. This paper presents the development of a portable, stand-alone digital microfluidic system based on a Linux-based operating system running on a Raspberry Pi, which is unique. We present "PortaDrop" exhibiting the following key features: (1) an "all-in-one box" approach, (2) a user-friendly, self-explaining graphical user interface and easy handling, (3) the ability of integrated electrochemical measurements, (4) the ease to implement additional lab equipment via Universal Serial Bus and the General Purpose Interface Bus as well as (5) a standardized experiment documentation. We propose that PortaDrop can be used to carry out experiments in different applications, where small sample volumes in the nanoliter to picoliter range need to be handled an analyzed automatically. As a first application, we present a protocol, where a droplet is consequently exchanged by droplets of another medium using passive dispensing. The exchange is monitored by electrical impedance spectroscopy. It is the first time, the media exchange caused by passive dispensing is characterized by electrochemical impedance spectroscopy. Summarizing, PortaDrop allows easy combination of fluid handling by means of electrowetting and additional sensing.
介电上电润湿是一种操纵离散液滴体积的有效技术。在过去的十年中,介电上电润湿系统,也称为数字微流控系统,由于其高灵活性和可重构性,越来越多地用于各种应用。因此,只需重新编程即可通过一种设计适配不同的检测。然而,只有当整个系统是便携式且易于使用时,这种灵活性才有用。本文介绍了一种基于基于 Linux 操作系统的 Raspberry Pi 运行的便携式、独立式数字微流控系统的开发,这是独特的。我们展示了“PortaDrop”,具有以下关键特点:(1) 一种“一体化盒”方法,(2) 用户友好、自解释的图形用户界面和易于操作,(3) 集成电化学测量的能力,(4) 通过通用串行总线和通用接口总线轻松实现额外的实验室设备的能力,以及(5) 标准化的实验文档。我们提出 PortaDrop 可用于执行需要自动处理和分析纳升到皮升范围内小体积样本的不同应用中的实验。作为第一个应用,我们提出了一个协议,其中使用被动分配连续地用另一种介质的液滴交换液滴。通过电化学阻抗谱监测交换。这是第一次通过电化学阻抗谱来表征由被动分配引起的介质交换。总之,PortaDrop 允许通过介电泳和附加感测来轻松组合流体处理。