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Cell types can be distinguished by measuring their viscoelastic recovery times using a micro-fluidic device

机译:可以通过使用微流体装置测量细胞的粘弹性恢复时间来区分细胞类型

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摘要

We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows the viscoelastic characterization of cells in small volumes of suspension by loading them in compression and observing the cell deformation in time. From this experiment, we can determine the characteristic time constant of recovery of the cell. To validate the device, two cell types known to have different cytoskeletal structures, 3T3 fibroblasts and HL60 cells, are tested. They show a substantially different response in the device and can be clearly distinguished on the basis of the measured characteristic recovery time constant. Also, the effect of breaking down the actin network, a main mechanical component of the cytoskeleton, by a treatment with Cytochalasin D, results in a substantial increase of the measured characteristic recovery time constant. Experimental variations in loading force, loading time, and surface treatment of the device also influence the measured characteristic recovery time constant significantly. The device can therefore be used to distinguish between cells with different mechanical structure in a quantitative way, and makes it possible to study changes in the mechanical response due to cell treatments, changes in the cell’s micro-environment, and mechanical loading conditions.
机译:我们介绍了一种包含致动柔性膜的简单微流体装置,该装置可通过加载压缩并及时观察细胞变形,从而在小体积悬浮液中实现细胞的粘弹性表征。从这个实验中,我们可以确定细胞恢复的特征时间常数。为了验证该设备,测试了两种具有不同细胞骨架结构的细胞类型,即3T3成纤维细胞和HL60细胞。它们在设备中显示出明显不同的响应,并且可以根据测得的特性恢复时间常数来明确区分。同样,通过用细胞松弛素D处理破坏肌动蛋白网络,肌动蛋白网络是细胞骨架的主要机械成分,这种作用导致所测得的特征恢复时间常数的显着增加。加载力,加载时间和设备表面处理的实验变化也显着影响所测得的特性恢复时间常数。因此,该设备可用于以定量方式区分具有不同机械结构的细胞,并有可能研究由于细胞处理,细胞微环境的变化和机械负载条件引起的机械响应变化。

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