Key Laboratory of Optoelectronic Technology and Systems, Ministry of Education, Defense Key Disciplines Lab of Novel Micro-Nano Devices and System Technology, Chongqing University, Chongqing, 400044, China.
Shanghai Turtle Technology Company Limited, Shanghai, 200439, China.
Anal Chim Acta. 2019 May 9;1055:65-73. doi: 10.1016/j.aca.2018.12.029. Epub 2018 Dec 21.
We present a self-discretization and zero-water-loss microfluidic digital PCR (dPCR) device to enable low-cost and robust quantitative nucleic acid assays. In this device, a thin void is integrated beneath the reaction chamber array. By utilizing the permeability of polydimethylsiloxane (PDMS) film, the integrated void serves a dual function: vacuum "accumulator" and hydration "reservoir". The combination of pre-stored pumping energy and water compensation for evaporation loss enables simple, robust and reliable single-DNA-molecule amplification and detection in 10,000 reactors of picoliter volume. Compared to the conventional degassing PDMS pumps, the vacuum accumulator exhibits superior performance due to more vacuum storage and shorter diffusion distance. We also evaluated the performance of the embedded hydration layer in suppressing evaporation loss at elevated temperatures, and verified that zero-water-loss could be achieved for all reaction chambers in our dPCR chip during thermal cycling. By performing quantitative detection of T790M DNA from 10 to 10 copies/μL, the proposed dPCR chip demonstrated high accuracy and excellent performance for the absolute quantification of the target gene with a dynamic range of 10. The simplicity and robustness of our dPCR chip make it well suited for low-cost molecular diagnostic assays under resource-limited settings.
我们提出了一种自分割和零水损失的微流控数字 PCR(dPCR)设备,以实现低成本和稳健的定量核酸分析。在这个设备中,在反应室阵列下方集成了一个薄空隙。通过利用聚二甲基硅氧烷(PDMS)薄膜的渗透性,集成的空隙具有双重功能:真空“蓄能器”和水合“储液器”。预存储的泵送能量与蒸发损失的水补偿相结合,使 10000 个皮升级反应室中的单个 DNA 分子的简单、稳健和可靠的扩增和检测成为可能。与传统的脱气 PDMS 泵相比,真空蓄能器由于具有更多的真空存储和更短的扩散距离,因此具有更好的性能。我们还评估了嵌入式水合层在抑制高温下蒸发损失方面的性能,并验证了在热循环过程中,我们的 dPCR 芯片中的所有反应室都可以实现零水损失。通过对 10 到 10 拷贝/μL 的 T790M DNA 进行定量检测,所提出的 dPCR 芯片在目标基因的绝对定量方面表现出了高准确性和优异的性能,动态范围为 10。我们的 dPCR 芯片的简单性和稳健性使其非常适合在资源有限的环境下进行低成本的分子诊断分析。