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The cell-matrix interplay: stiffness and strain homogeneity characterization of substrates for adherent cells

机译:细胞-基质相互作用:粘附细胞基质的刚度和应变同质性表征

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Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mechanotransduction. In particular, the interplay between attached cells and the underlying substrate plays a main role in cellular mechano-signalling: cell and matrix stiffness are important factors defining cell functionality and morphologic modifications. Recently, changes in cell elasticity have been discovered as a biomarker for several human diseases, including cancer. Nowadays, many measurement techniques of cell elasticity exist, but only few systems focus on cell-matrix interaction. In view of this, we proposed a preliminary study that aims at investigating the response of two cancer cell lines with different features when cultured on two silicone substrates with different rigidity, and under an external applied stretch. We first fabricated a silicone base and two elastic substrates with specific stiffness (5 kPa and 30 kPa), incorporating them into stretch-chambers. The substrates have been characterized for their stiffness and homogeneity of the strain field on the bottom area. After that, once covered the substrates with collagen-I coating to provide a suitable cell adhesion, we employed a uniaxial stretch device to induce deformation on substrate surface and evaluated cell adhesion through cell morphological analysis. Our results indicate that cancer cells with different features behave differently, changing their morphology on different substrates and following the application of an external force.
机译:细胞微环境的物理和机械提示会通过机械转导影响细胞行为和命运。特别是,附着的细胞和下面的底物之间的相互作用在细胞机械信号传递中起主要作用:细胞和基质的硬度是定义细胞功能和形态修饰的重要因素。最近,已经发现细胞弹性的变化是几种人类疾病(包括癌症)的生物标记。如今,存在许多细胞弹性的测量技术,但只有少数系统专注于细胞-基质相互作用。有鉴于此,我们提出了一项初步研究,旨在研究两种具有不同特征的癌细胞系在两种具有不同刚度的硅树脂基材上并在外部施加拉伸下培养时的反应。我们首先制造了一个有机硅基底和两个具有特定刚度(5 kPa和30 kPa)的弹性基底,并将它们合并到拉伸室中。衬底的底部区域的刚度和应变场的均匀性已经得到了表征。此后,一旦用胶原蛋白I涂层覆盖基底以提供合适的细胞粘附力,我们就采用单轴拉伸装置在基底表面诱导变形,并通过细胞形态分析评估细胞粘附力。我们的结果表明,具有不同特征的癌细胞的行为不同,在不同的底物上改变了形态,并受到了外力的作用。

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