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Dielectric elastomer actuator for the measurement of cell traction forces with sub-cellular resolution

机译:介电弹性体致动器,用于以亚细胞分辨率测量细胞牵引力

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We report on the use of dielectric elastomer actuators (DEAs) to measure the traction force field of cells with sub-cellular resolution. The study of cellular electrochemical and mechanical response to deformation is an important area of research, as mechanotransduction has been shown to be linked with fundamental cell functions, or the progression of diseases such as cancer or atherosclerosis. Experimental cell mechanics is based on two fundamental concepts: the ability to measure cell stiffness, and to apply controlled strains to small clusters of cells. However, there is a lack of tools capable of applying precise deformation to a small cell population while being compatible with an inverted microscope (stable focal plane, transparency, compactness, etc.). Here, we use an anisotropically prestretched silicone-based DEA to deform a soft (7.6kPa) polyacrylamide gel on which the cells are cultured. An array of micro-dots of fluorescent fibronectin is transferred on the gel by micro-contact printing and serves as attachment points for the cells. In addition, the fluorescent dots (which have a diameter of 2 μm with a spacing of 6 μm) are used during the experiment to monitor the traction forces of a single cell (or small cluster of cells). The cell locally exerts traction on the gel, thus deforming the matrix of dots. The position of dots versus time is monitored live when the cells are submitted to a uniaxial strain step. Our deformable bioreactor enables the measurement of the local stiffness of cells submitted to mechanical strain, and is fully compatible with an inverted microscope set-up.
机译:我们报告使用介电弹性体致动器(DEA)来测量具有亚细胞分辨率的细胞的牵引力场。细胞电化学和机械对变形的响应的研究是重要的研究领域,因为机械转导已被证明与细胞的基本功能或诸如癌症或动脉粥样硬化等疾病的进展有关。实验性细胞力学基于两个基本概念:测量细胞刚度的能力,以及将受控应变应用于小的细胞簇的能力。但是,缺少能够与倒置显微镜兼容的工具(能够稳定地聚焦平面,透明,紧凑等),能够对小细胞群进行精确的变形。在这里,我们使用各向异性预拉伸的有机硅基DEA来变形在其上培养细胞的柔软(7.6kPa)聚丙烯酰胺凝胶。荧光纤连蛋白的微点阵列通过微接触印刷转移到凝胶上,并作为细胞的附着点。此外,在实验过程中使用了荧光点(直径为2μm,间距为6μm)来监视单个细胞(或小细胞簇)的牵引力。细胞在凝胶上局部施加牵引力,从而使点阵变形。当细胞进行单轴应变步骤时,将实时监测点的位置与时间的关系。我们的可变形生物反应器能够测量承受机械应变的细胞的局部硬度,并且与倒置显微镜设置完全兼容。

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