Babahosseini Hesam, Padmanabhan Supriya, Misteli Tom, DeVoe Don L
Department of Chemical and Biomolecular Engineering, University of Maryland, College Park, Maryland 20742, USA.
National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Biomicrofluidics. 2020 Feb 5;14(1):014112. doi: 10.1063/1.5143434. eCollection 2020 Jan.
A programmable microfluidic platform enabling on-demand sampling, compartmentalization, and manipulation of multiple aqueous volumes is presented. The system provides random-access actuation of a microtrap array supporting selective discretization of picoliter volumes from multiple sample inputs. The platform comprises two interconnected chips, with parallel T-junctions and multiplexed microvalves within one chip enabling programmable injection of aqueous sample plugs, and nanoliter volumes transferred to a second microtrap array chip in which the plugs are actively discretized into picoliter droplets within a static array of membrane displacement actuators. The system employs two different multiplexer designs that reduce the number of input signals required for both sample injection and discretization. This versatile droplet-based technology offers flexible sample workflows and functionalities for the formation and manipulation of heterogeneous picoliter droplets, with particular utility for applications in biochemical synthesis and cell-based assays requiring flexible and programmable operation of parallel and multistep droplet processes. The platform is used here for the selective encapsulation of differentially labeled cells within a discrete droplet array.
本文介绍了一种可编程微流控平台,该平台能够按需对多个水相体积进行采样、分隔和操控。该系统提供对微阱阵列的随机访问驱动,支持从多个样品输入中选择性离散皮升体积。该平台由两个互连的芯片组成,其中一个芯片内有平行的T型结和多路复用微阀,可实现水相样品塞的可编程注入,纳升体积被转移到第二个微阱阵列芯片,在该芯片中,样品塞在膜位移致动器的静态阵列内被主动离散为皮升液滴。该系统采用了两种不同的多路复用器设计,减少了样品注入和离散所需的输入信号数量。这种基于液滴的通用技术为异质皮升液滴的形成和操控提供了灵活的样品工作流程和功能,特别适用于生化合成和基于细胞的分析等应用,这些应用需要灵活且可编程地操作并行和多步液滴过程。本文将该平台用于在离散液滴阵列中选择性封装差异标记的细胞。