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Chemotaxis of Cell Populations through Confined Spaces at Single-Cell Resolution

机译:在单细胞分辨率下通过受限空间的细胞群体趋化性

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摘要

Cell migration is crucial for both physiological and pathological processes. Current in vitro cell motility assays suffer from various drawbacks, including insufficient temporal and/or optical resolution, or the failure to include a controlled chemotactic stimulus. Here, we address these limitations with a migration chamber that utilizes a self-sustaining chemotactic gradient to induce locomotion through confined environments that emulate physiological settings. Dynamic real-time analysis of both population-scale and single-cell movement are achieved at high resolution. Interior surfaces can be functionalized through adsorption of extracellular matrix components, and pharmacological agents can be administered to cells directly, or indirectly through the chemotactic reservoir. Direct comparison of multiple cell types can be achieved in a single enclosed system to compare inherent migratory potentials. Our novel microfluidic design is therefore a powerful tool for the study of cellular chemotaxis, and is suitable for a wide range of biological and biomedical applications.
机译:细胞迁移对于生理和病理过程都至关重要。当前的体外细胞运动性测定法具有各种缺点,包括时间和/或光学分辨率不足,或不能包括受控的趋化性刺激。在这里,我们通过一个迁移室解决了这些局限性,该迁移室利用一种自我维持的趋化梯度来通过模拟生理环境的密闭环境诱导运动。高分辨率实现了人口规模和单细胞运动的动态实时分析。内表面可通过细胞外基质成分的吸附而功能化,药理剂可直接或通过趋化储库间接施用于细胞。可以在一个封闭的系统中直接比较多种细胞类型,以比较内在的迁移潜力。因此,我们新颖的微流控设计是研究细胞趋化性的有力工具,适用于广泛的生物学和生物医学应用。

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