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Mechanical properties of human amniotic fluid stem cells using nanoindentation

机译:纳米压痕技术用于人羊水干细胞的力学性能

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摘要

The aim of this study was to obtain nanomechanical properties of living cells focusing on human amniotic fluid stem (hAFS) cell using nanoindentation techniques. We modified the conventional method of atomic force microscopy (AFM) in aqueous environment for cell imaging and indentation to avoid inherent difficulties. Moreover, we determined the elastic modulus of murine osteoblast (OB6) cells and hAFS cells at the nucleus and cytoskeleton using force–displacement curves and Hertz theory. Since OB6 cell line has been widely used, it was selected to validate and compare the obtained results with the previous research studies. As a result, we were able to capture high resolution images through utilization of the tapping mode without adding protein or using flxation methods. The maximum depth of indentation was kept below 15% of the cell thickness to minimize the effect of substrate hardness. Nanostructural details on the surface of cells were visualized by AFM and fluorescence microscopy. The cytoskeletal fibers presented remarkable increase in elastic modulus as compared with the nucleus. Furthermore, our results showed that the elastic modulus of hAFS cell edge (31.6 kPa) was lower than that of OB6 cell edge (42.2 kPa). In addition, the elastic modulus of nucleus was 13.9 kPa for hAFS cell and 26.9 kPa for OB6 cells. Differences in cell elastic modulus possibly resulted from the type and number of actin cytoskeleton organization in these two cell types.
机译:这项研究的目的是使用纳米压痕技术获得专注于人羊水干(hAFS)细胞的活细胞的纳米力学性能。我们修改了水性环境中用于细胞成像和压痕的原子力显微镜(AFM)的常规方法,以避免固有困难。此外,我们使用力-位移曲线和赫兹理论确定了鼠成骨细胞(OB6)和hAFS细胞在细胞核和细胞骨架的弹性模量。由于OB6细胞系已被广泛使用,因此选择它来验证并将获得的结果与以前的研究进行比较。结果,我们能够通过利用敲击模式来捕获高分辨率图像,而无需添加蛋白质或使用固定化方法。压痕的最大深度保持在孔格厚度的15%以下,以最大程度地减小基材硬度的影响。通过AFM和荧光显微镜观察细胞表面的纳米结构细节。与细胞核相比,细胞骨架纤维的弹性模量显着增加。此外,我们的结果表明,hAFS细胞边缘的弹性模量(31.6 kPa)低于OB6细胞边缘的弹性模量(42.2 kPa)。此外,hAFS细胞的细胞核弹性模量为13.9 kPa,OB6细胞的细胞核的弹性模量为26.9 kPa。细胞弹性模量的差异可能是由这两种细胞类型中肌动蛋白细胞骨架组织的类型和数量引起的。

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