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Microfluidic assay for the on-chip electrochemical measurement of cell monolayer permeability

机译:用于片上电化学测量的细胞单层渗透性的微流体测定

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摘要

Cell monolayers, including endothelial cells lining the vasculature and blood-brain barrier, and epithelial cells lining the lung airways and gut, form a semipermeable barrier across which transport of biomolecules is tightly regulated. The assessment of barrier function is therefore critical in in vitro models of barrier-forming tissues, including microfluidic organ-on-a-chip models. Cell monolayer barrier function is commonly assessed using a fluorescent tracer-based permeability assay in both conventional Transwell and organ-on-a-chip models, but this method requires laborious manual sampling, bulky instrumentation and offline sample processing. In this work, we introduce a novel on-chip microfluidic permeability assay that replaces the traditional fluorescent tracer with an electroactive tracer. Similar to methods such as TEER, the electrochemical permeability assay eliminates the need for manual sampling and complex optical instrumentation. We validated the method by demonstrating close agreement between experimental and numerically-simulated diffusive and convective transport in the microfluidic device. Different electroactive tracers were screened for efficient electron transfer, stability and inertness relative to the cell monolayer. The assay was then used to measure the permeability of endothelial cells cultured under both static and flow culture conditions, and after exposure to a permeability mediator. In summary, the electrochemical permeability assay combines the simplicity of tracer-based permeability methods with the benefits of on-chip integration, which will ultimately facilitate the robust multiparametric characterization of barrier function in microfluidic organs-on-chips.
机译:细胞单层,包括内皮细胞,内皮细胞衬里脉管系统和血脑屏障,以及衬里肺气道和肠道的上皮细胞,形成了一种半分子的转运被严格调节的半纤维。因此,屏障函数的评估在障碍形成组织的体外模型中是至关重要的,包括微流体器官芯片模型。通常使用常规的Transwell和器官芯片型号使用荧光示踪剂的渗透测定来评估细胞单层屏障功能,但这种方法需要费力的手动采样,庞大的仪器和离线样品处理。在这项工作中,我们介绍了一种新的片上微流体渗透性测定,其用电活性示踪剂取代传统的荧光示踪剂。类似于诸如人口的方法,电化学渗透性测定消除了对手动采样和复杂光学仪器的需求。通过在微流体装置中展示实验性和数值模拟的扩散和对流传输之间的密切一致来验证该方法。筛选不同的电活性示踪剂,用于相对于细胞单层的有效电子转移,稳定性和惰性。然后使用该测定法测量在静态和流动培养条件下培养的内皮细胞的渗透性,以及暴露于渗透介质后。总之,电化学渗透性测定与片上整合的益处的基于示踪剂的渗透方法的简单性结合起来,这最终将促进在微流体器官芯片中的屏障功能的稳健多级表征。

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