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The nanomorphology of cell surfaces of adhered osteoblasts

机译:粘附成骨细胞细胞表面的纳米形态

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摘要

The functionality of living cells is inherently linked to subunits with dimensions ranging from several micrometers down to the nanometer scale. The cell surface plays a particularly important role. Electric signaling, including information processing, takes place at the membrane, as well as adhesion and contact. For osteoblasts, adhesion and spreading are crucial processes with regard to bone implants. Here we present a comprehensive characterization of the 3D nanomorphology of living, as well as fixed, osteoblastic cells using scanning ion conductance microscopy (SICM), which is a nanoprobing method that largely avoids mechanical perturbations. Dynamic ruffles are observed, manifesting themselves in characteristic membrane protrusions. They contribute to the overall surface corrugation, which we systematically study by introducing the relative 3D excess area as a function of the projected adhesion area. A clear anticorrelation between the two parameters is found upon analysis of ca. 40 different cells on glass and on amine-covered surfaces. At the rim of lamellipodia, characteristic edge heights between 100 and 300 nm are observed. Power spectral densities of membrane fluctuations show frequency-dependent decay exponents with absolute values greater than 2 on living osteoblasts. We discuss the capability of apical membrane features and fluctuation dynamics in aiding the assessment of adhesion and migration properties on a single-cell basis.
机译:活细胞的功能本质上与具有尺寸的亚基与纳米级的尺寸的亚基相连。细胞表面起着特别重要的作用。电信带,包括信息处理,在膜上发生,以及粘附和接触。对于成骨细胞,粘附和扩散是关于骨植入物的重要过程。在这里,我们展示了使用扫描离子电导显微镜(SICM)的3D纳米纳米形式的综合表征,以及固定的骨细胞细胞,这是一种基本上避免机械扰动的纳米侵入方法。观察到动态褶皱,在特征膜突起中表现出来。它们有助于整体表面波纹,我们通过作为投影粘附区域的函数引入相对3D超出面积来系统地研究。在分析CA时发现了两种参数之间的明确反对吻合。玻璃和胺覆盖表面上的40个不同的细胞。在层叠的边缘处,观察到100至300nm之间的特征边缘高度。膜波动的功率谱密度显示频率依赖性衰减指数,其绝对值大于2°活性卵细胞。我们讨论了顶端膜特征和波动动态的能力,以便在单细胞上进行粘附性和迁移性能的评估。

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