Department of Biomedical Engineering, University of California-Irvine, Irvine, CA 92697, USA.
Lab Chip. 2011 Nov 21;11(22):3838-45. doi: 10.1039/c1lc20561g. Epub 2011 Sep 29.
Digital droplet reactors are useful as chemical and biological containers to discretize reagents into picolitre or nanolitre volumes for analysis of single cells, organisms, or molecules. However, most DNA based assays require processing of samples on the order of tens of microlitres and contain as few as one to as many as millions of fragments to be detected. Presented in this work is a droplet microfluidic platform and fluorescence imaging setup designed to better meet the needs of the high-throughput and high-dynamic-range by integrating multiple high-throughput droplet processing schemes on the chip. The design is capable of generating over 1-million, monodisperse, 50 picolitre droplets in 2-7 minutes that then self-assemble into high density 3-dimensional sphere packing configurations in a large viewing chamber for visualization and analysis. This device then undergoes on-chip polymerase chain reaction (PCR) amplification and fluorescence detection to digitally quantify the sample's nucleic acid contents. Wide-field fluorescence images are captured using a low cost 21-megapixel digital camera and macro-lens with an 8-12 cm(2) field-of-view at 1× to 0.85× magnification, respectively. We demonstrate both end-point and real-time imaging ability to perform on-chip quantitative digital PCR analysis of the entire droplet array. Compared to previous work, this highly integrated design yields a 100-fold increase in the number of on-chip digitized reactors with simultaneous fluorescence imaging for digital PCR based assays.
数字液滴反应器是一种有用的化学和生物容器,可将试剂离散化为皮升至纳升体积,用于单细胞、生物或分子的分析。然而,大多数基于 DNA 的检测需要处理数十微升量级的样品,并且包含多达一个到数百万个要检测的片段。本工作中提出了一种液滴微流控平台和荧光成像装置,旨在通过在芯片上集成多个高通量液滴处理方案,更好地满足高通量和高动态范围的需求。该设计能够在 2-7 分钟内生成超过 100 万个、单分散的 50 皮升液滴,然后在大观察室中自组装成高密度三维球包络结构,用于可视化和分析。然后,该装置在芯片上进行聚合酶链反应(PCR)扩增和荧光检测,以数字方式定量样品的核酸含量。使用低成本的 2100 万像素数码相机和 8-12cm^2 的微距镜头,分别在 1×到 0.85×的放大倍数下捕获宽场荧光图像。我们展示了基于芯片的数字 PCR 分析整个液滴阵列的终点和实时成像能力。与以前的工作相比,这种高度集成的设计使得基于数字 PCR 的检测中,芯片上数字化反应器的数量增加了 100 倍,同时还具有荧光成像功能。