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Single cell wall nonlinear mechanics revealed by a multiscale analysis of AFM force-indentation curves

机译:AFM力-压痕曲线的多尺度分析揭示了单细胞壁非线性力学

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摘要

Individual plant cells are rather complex mechanical objects. Despite the fact that their wall mechanical strength may be weakened by comparison with their original tissue template, they nevertheless retain some generic properties of the mother tissue, namely the viscoelasticity and the shape of their walls, which are driven by their internal hydrostatic turgor pressure. This viscoelastic behavior, which affects the power- law response of these cells when indented by an atomic force cantilever with a pyramidal tip, is also very sensitive to the culture media. To our knowledge, we develop here an original analyzing method, based on a multiscale decomposition of force-indentation curves, that reveals and quantifies for the first time the nonlinearity of the mechanical response of living single plant cells upon mechanical deformation. Further comparing the nonlinear strain responses of these isolated cells in three different media, we reveal an alteration of their linear bending elastic regime in both hyper- and hypotonic conditions.
机译:单个植物细胞是相当复杂的机械对象。尽管与原始组织模板相比,它们的壁机械强度可能会减弱,但它们仍保留了母组织的某些通用属性,即粘弹性和壁的形状,这是由其内部静水膨胀压力驱动的。这种粘弹性行为,当被具有锥形尖端的原子力悬臂压入时,会影响这些细胞的幂律响应,对培养基也非常敏感。据我们所知,我们在此基础上开发了一种基于力-压痕曲线多尺度分解的原始分析方法,该方法首次揭示并量化了单个植物细胞在机械变形后的机械响应的非线性。进一步比较这些分离的细胞在三种不同介质中的非线性应变响应,我们揭示了它们在高渗和低渗条件下线性弯曲弹性的变化。

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