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使用钝头金字塔形悬臂尖端原子力显微镜探测活细胞的力学性能。

Probing mechanical properties of living cells by atomic force microscopy with blunted pyramidal cantilever tips.

作者信息

Rico Félix, Roca-Cusachs Pere, Gavara Núria, Farré Ramon, Rotger Mar, Navajas Daniel

机构信息

Unitat de Biofísica i Bioenginyeria, Facultat de Medicina, Universitat de Barcelona--IDIBAPS, Casanova 143, 08036 Barcelona, Spain.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Aug;72(2 Pt 1):021914. doi: 10.1103/PhysRevE.72.021914. Epub 2005 Aug 29.

Abstract

Atomic force microscopy (AFM) allows the acquisition of high-resolution images and the measurement of mechanical properties of living cells under physiological conditions. AFM cantilevers with blunted pyramidal tips are commonly used to obtain images of living cells. Measurement of mechanical properties with these tips requires a contact model that takes into account their blunted geometry. The aim of this work was to develop a contact model of a blunted pyramidal tip and to assess the suitability of pyramidal tips for probing mechanical properties of soft gels and living cells. We developed a contact model of a blunted pyramidal tip indenting an elastic half-space. We measured Young's modulus (E) and the complex shear modulus (G*= G' +i G" ) of agarose gels and A549 alveolar epithelial cells with pyramidal tips and compared them with those obtained with spherical tips. The gels exhibited an elastic behavior with almost coincident loading and unloading force curves and negligible values of G". E fell sharply with indentation up to approximately 300 nm , showing a linear regime for deeper indentations. A similar indentation dependence of E with twofold lower values at the linear regime was obtained with the spherical tip fitted with Hertz's model. The dependence of E on indentation in cells paralleled that found in gels. Cells exhibited viscoelastic behavior with G"/G' approximately 1/4 . Pyramidal tips commonly used for AFM imaging are suitable for probing mechanical properties of soft gels and living cells.

摘要

原子力显微镜(AFM)能够在生理条件下获取高分辨率图像并测量活细胞的力学性能。带有钝锥形尖端的AFM悬臂通常用于获取活细胞的图像。使用这些尖端测量力学性能需要一个考虑其钝几何形状的接触模型。这项工作的目的是开发一个钝锥形尖端的接触模型,并评估锥形尖端用于探测软凝胶和活细胞力学性能的适用性。我们开发了一个钝锥形尖端压入弹性半空间的接触模型。我们用锥形尖端测量了琼脂糖凝胶和A549肺泡上皮细胞的杨氏模量(E)和复剪切模量(G* = G' + iG"),并将它们与用球形尖端获得的值进行了比较。凝胶表现出弹性行为,加载和卸载力曲线几乎重合,G"值可忽略不计。E随着压痕深度增加到约300 nm时急剧下降,在更深的压痕时呈现线性关系。对于拟合赫兹模型的球形尖端,在直线段得到了E对压痕的类似依赖性,但值低两倍。细胞中E对压痕的依赖性与凝胶中的相似。细胞表现出粘弹性行为,G"/G'约为1/4。常用于AFM成像的锥形尖端适用于探测软凝胶和活细胞的力学性能。

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