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Method for measuring Young's modulus of cells using a cell compression microdevice

机译:使用细胞压缩微器件测量细胞杨氏模量的方法

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The importance of cell mechanical properties is apparent in many physiological processes; measuring these properties can therefore provide insight into the behavior of cells and tissues in human disease. Here, we describe a method of evaluating cellular deformation of cells by using a cell compression microdevice. The method comprises two steps: 1) observation and evaluation of cell deformation behavior during compression using the microdevice and 2) theoretical calculation of cellular deformation. We constructed the microdevice by stacking two layers of self-adhesive polydimethylsiloxane on a glass plate. The first layer consisted of microchannels, a cell culture chamber, and a diaphragm on the chamber for applying pressure to cells; the second layer consisted of cell inlet ports and a pressure inlet port. The microdevice was made of transparent materials, which permitted in situ monitoring of cellular behavior by optical microscopy. The microdevice Was designed to control the magnitude of the pressure applied to cells. We measured the cell compressive strain to evaluate the Young's modulus; the measured values ranged from 3.5 to 4.2 kPa. These results demonstrate that our microdevice is useful for measuring and calculating the mechanical properties of cells under strain. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在许多生理过程中,细胞机械性能的重要性显而易见。因此,测量这些特性可以洞悉人类疾病中细胞和组织的行为。在这里,我们描述了一种通过使用细胞压缩微型设备评估细胞的细胞变形的方法。该方法包括两个步骤:1)使用微设备观察和评估压缩过程中的细胞变形行为,以及2)细胞变形的理论计算。我们通过在玻璃板上堆叠两层自粘性聚二甲基硅氧烷来构建微型设备。第一层由微通道,细胞培养室和在该室上用于向细胞施加压力的隔膜组成。第二层由电池入口和压力入口组成。微型设备由透明材料制成,可以通过光学显微镜原位监测细胞行为。微型设备旨在控制施加到细胞的压力大小。我们测量了细胞的压缩应变,以评估杨氏模量。测量值范围为3.5至4.2 kPa。这些结果表明,我们的微型设备可用于测量和计算应变下细胞的机械性能。 (C)2017 Elsevier Ltd.保留所有权利。

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