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Microfluidic platform for selective microparticle parking and paired particle isolation in droplet arrays

机译:微流体平台用于液滴阵列中的选择性微粒停放和配对颗粒分离

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摘要

Immobilizing microscale objects (e.g., cells, spheroids, and microparticles) in arrays for direct observation and analysis is a critical step of many biological and chemical assays; however, existing techniques are often limited in their ability to precisely capture, arrange, isolate, and recollect objects of interest. In this work, we present a microfluidic platform that selectively parks microparticles in hydrodynamic traps based on particle physical characteristics (size, stiffness, and internal structure). We present an accompanying scaling analysis for the particle parking process to enable rational design of microfluidic traps and selection of operating conditions for successful parking of desired particles with specific size and elastic modulus. Our platform also enables parking of encoded particle pairs in defined spatial arrangements and subsequent isolation of these pairs in aqueous droplets, creating distinct microenvironments with no cross-contamination. In addition, we demonstrate the ability to recollect objects of interest (i.e., one particle from each pair) after observation within the channel. This integrated device is ideal for multiplexed assays or microenvironment fabrication for controlled biological studies.
机译:将微尺度物体(例如细胞,球体和微粒)固定在阵列中以便直接观察和分析是许多生物学和化学分析的关键步骤;但是,现有技术通常在精确捕获,排列,隔离和重新收集感兴趣对象的能力方面受到限制。在这项工作中,我们提出了一种微流体平台,该平台根据粒子的物理特征(大小,刚度和内部结构)选择性地将其停在水力捕集器中。我们提出了一个针对颗粒物停泊过程的伴随缩放分析,以实现微流体阱的合理设计和操作条件的选择,以成功地停泊具有特定尺寸和弹性模量的所需颗粒。我们的平台还可以按定义的空间排列放置编码的粒子对,并随后将这些对隔离在水滴中,从而创建无交叉污染的独特微环境。此外,我们展示了在通道内观察后能够重新收集感兴趣的对象(即,每对中的一个粒子)的能力。该集成设备非常适合用于受控生物学研究的多重测定或微环境制备。

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