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Microfluidic on-demand droplet generation storage retrieval and merging for single-cell pairing

机译:微流按需液滴的生成存储检索和合并以实现单细胞配对

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摘要

A multifunctional microfluidic platform combining on-demand aqueous-phase droplet generation, multi-droplet storage, and controlled merging of droplets selected from a storage library in a single integrated microfluidic device is described. A unique aspect of the technology is a microfluidic trap design comprising a droplet trap chamber and lateral bypass channels integrated with a microvalve that supports the capture and merger of multiple droplets over a wide range of individual droplet sizes. A storage unit comprising an array of microfluidic traps operates in a first-in first-out manner, allowing droplets stored within the library to be analyzed before sequentially delivering selected droplets to a downstream merging zone, while shunting other droplets to waste. Performance of the microfluidic trap is investigated for variations in bypass/chamber hydrodynamic resistance ratio, micro-chamber geometry, trapped droplet volume, and overall flow rate. The integrated microfluidic platform is then utilized to demonstrate the operational steps necessary for cell-based assays requiring the isolation of defined cell populations with single cell resolution, including encapsulation of individual cells within an aqueous-phase droplet carrier, screening or incubation of the immobilized cell-encapsulated droplets, and generation of controlled combinations of individual cells through the sequential droplet merging process. Beyond its utility for cell analysis, the presented platform represents a versatile approach to robust droplet generation, storage, and merging for use in a wide range of droplet-based microfluidics applications.
机译:描述了一种多功能微流体平台,该平台将按需水相液滴生成,多液滴存储以及从单个集成微流体设备中的存储库中选择的液滴的受控合并相结合。该技术的独特方面是一种微流体捕集器设计,该设计包括一个微滴捕集室和与微阀集成的横向旁路通道,该微阀支持在各种单个微滴尺寸范围内捕获和合并多个微滴。包含微流阱阵列的存储单元以先进先出的方式运行,允许在将选定的液滴顺序输送到下游合并区之前分析存储在库中的液滴,同时将其他液滴分流以浪费。研究了微流阱的性能,以了解旁路/腔室流体阻力比,微腔室几何形状,捕获的液滴体积和总流速的变化。然后,利用集成的微流体平台来演示基于细胞的测定所必需的操作步骤,这些测定要求以单细胞分辨率分离确定的细胞群,包括将单个细胞包封在水相液滴载体中,筛选或孵育固定化的细胞-包囊的液滴,并通过连续的液滴合并过程生成单个细胞的受控组合。除了其在细胞分析中的用途外,该平台还代表了一种通用的方法,可用于各种液滴基于微流控的可靠的液滴生成,存储和合并。

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