Department of Bioengineering, University of Washington, Box 355061, Seattle, WA, USA.
Lab Chip. 2011 Dec 21;11(24):4274-8. doi: 10.1039/c1lc20758j. Epub 2011 Oct 28.
Most laboratory assays take advantage of multi-step protocols to achieve high performance, but conventional paper-based tests (e.g., lateral flow tests) are generally limited to assays that can be carried out in a single fluidic step. We have developed two-dimensional paper networks (2DPNs) that use materials from lateral flow tests but reconfigure them to enable programming of multi-step reagent delivery sequences. The 2DPN uses multiple converging fluid inlets to control the arrival time of each fluid to a detection zone or reaction zone, and it requires a method to disconnect each fluid source in a corresponding timed sequence. Here, we present a method that allows programmed disconnection of fluid sources required for multi-step delivery. A 2DPN with legs of different lengths is inserted into a shared buffer well, and the dropping fluid surface disconnects each leg at in a programmable sequence. This approach could enable multi-step laboratory assays to be converted into simple point-of-care devices that have high performance yet remain easy to use.
大多数实验室检测方法都利用多步方案来实现高性能,但传统的基于纸张的检测(例如,侧向流动检测)通常仅限于能够在单个流体步骤中进行的检测。我们已经开发了二维纸张网络(2DPN),它使用侧向流动检测中的材料,但对其进行重新配置,以实现多步试剂输送序列的编程。2DPN 使用多个汇聚的流体入口来控制每种流体到达检测区或反应区的时间,并需要一种方法按相应的定时顺序断开每个流体源的连接。在这里,我们提出了一种允许对多步输送所需的流体源进行编程断开的方法。将具有不同长度的腿的 2DPN 插入共享缓冲槽中,并且下落的流体表面以可编程的顺序断开每个腿。这种方法可以将多步实验室检测转换为简单的即时检测设备,这些设备具有高性能且易于使用。