Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian, China.
Lab Chip. 2019 May 14;19(10):1797-1807. doi: 10.1039/c9lc00259f.
Cardiovascular disease is one of the most common causes of mortality in the world. Most of the diagnostic processes usually require bulky instruments and trained professionals, which cannot meet the demand for fast, early and regular bedside diagnosis. In this paper, a bespoke app on a smartphone and an autonomous capillary microfluidic chip (ACMC) are combined to realize the point-of-care testing of cardiac troponin I (cTnI). The smartphone-app-ACMC platform was based on the sandwich immunofluorescence principle and featured self-aligned on-chip focusing (SOF) lenses which can avoid the complex optical coupling process. The operator only needs to introduce 100 μl sample into the ACMC, where the priming, time-delaying, mixing and washing steps for the assay can be accomplished automatically. With the help of the bespoke app and a palm-sized optical attachment, the smartphone can capture fluorescence images, process fluorescence intensity information, output detection results and save the results for long-term monitoring. Our results showed that within 12 min, the detection limit of 78 pg ml-1 and 94 pg ml-1 for cTnI was attained in buffer and spiked human serum, respectively. Our proposed platform has the potential to be applied in the POCT field especially for some resource-limited settings.
心血管疾病是世界上最常见的死亡原因之一。大多数诊断过程通常需要大型仪器和经过培训的专业人员,这无法满足快速、早期和常规床边诊断的需求。本文结合智能手机上的定制应用程序和自主毛细管微流控芯片(ACMC),实现了心脏肌钙蛋白 I(cTnI)的即时检测。智能手机应用程序-ACMC 平台基于夹心免疫荧光原理,并具有自对准芯片内聚焦(SOF)透镜,可避免复杂的光学耦合过程。操作人员只需将 100μl 样本引入 ACMC,即可自动完成检测的预充注、延时、混合和洗涤步骤。在定制应用程序和手掌大小的光学附件的帮助下,智能手机可以捕获荧光图像、处理荧光强度信息、输出检测结果并保存结果以供长期监测。我们的结果表明,在 12 分钟内,在缓冲液和加标人血清中,cTnI 的检测限分别达到了 78pg/ml 和 94pg/ml。我们提出的平台有可能应用于 POCT 领域,特别是在一些资源有限的环境中。