Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Anal Chem. 2010 Oct 1;82(19):8071-8. doi: 10.1021/ac1005537.
This article describes an integrated approach to tracking the end point of a time-based assay that is conducted on an analytical device made out of paper. The timing mechanism is built directly into a paper-based analytical device and does not require starting, stopping, reset buttons, batteries, or maintenance; the timer simply starts once the sample is added to the device. These "fluidic timers" are composed of paraffin wax and a signaling feature (e.g., a dye). The timing function is made possible by the specific time required for a liquid sample to wick through predefined regions in the device. This time period can be anywhere between 1 min and 2 h and is controlled by the quantity of wax present in the timer. Because both the fluidic timers and paper-based assays depend on the wicking rate of the sample, the fluidic timers automatically calibrate themselves (relative to the assay) to account for differences in wicking rates that are caused by variations in humidity. Fluidic timers are 97% accurate (with respect to the time required for the assay) and provide slightly better accuracy than an external timer when used to track an assay that measured the level of glucose in a sample.
本文描述了一种集成方法,用于跟踪基于时间的分析在纸质分析仪器上进行的分析的终点。定时机制直接构建在基于纸张的分析仪器中,不需要启动、停止、重置按钮、电池或维护;计时器在向设备中添加样品后自动开始。这些“流体计时装置”由石蜡和信号特征(例如染料)组成。定时功能是通过液体样品在设备中预定义区域的渗透所需的特定时间来实现的。这段时间可以在 1 分钟到 2 小时之间,并且由计时器中存在的石蜡量来控制。由于流体计时装置和基于纸张的分析都取决于样品的渗透速率,因此流体计时装置会自动校准(相对于分析),以补偿由于湿度变化引起的渗透速率差异。流体计时装置的准确率为 97%(相对于分析所需的时间),在用于跟踪测量样品中葡萄糖水平的分析时,与外部计时器相比,它提供了略高的准确性。