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Cell elasticity change as a biomarker for cancer detection: an AFM metrological approach

机译:细胞弹性变化作为检测癌症的生物标志物:一种原子力显微镜计量方法

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The cancer diagnosis relies on morphological examination of human cells or tissue samples: this is considered the `gold standard' for the diagnosis of malignancy in any organ system. However, diagnosis based on morphological examination can be difficult, recent studies recognized the cell elasticity changes as a marker for cancer detection. A metrological characterized AFM can be used to make reproducible elasticity measurements on biological samples. In this paper a method to accurately measure a cell elasticity change based on measurement of a stable and homogeneous material is proposed. Nanoindenter characteristics (nanoindenter with pyramidal tip and triangular shape) and indentation parameters (0.1 V as approaching point, 5 um/s as indentation speed and indentation load of 0.4 V) were found feasible for all tested samples. A modal cell elastic modulus of 0.5 kPa for lung tumor cell and a limit AFM measurement reproducibility of 4% was obtained.
机译:癌症诊断取决于人体细胞或组织样本的形态学检查:这被认为是诊断任何器官系统中恶性肿瘤的“金标准”。然而,基于形态学检查的诊断可能很困难,最近的研究认为细胞弹性的变化是检测癌症的标志。可以用计量学表征的AFM对生物样品进行可重复的弹性测量。在本文中,提出了一种基于稳定且均质材料的测量来精确测量单元弹性变化的方法。对于所有测试样品,发现纳米压痕特征(具有锥形尖端和三角形的纳米压痕)和压痕参数(接近点为0.1 V,压痕速度为5 um / s,压痕负载为0.4 V)是可行的。获得的肺肿瘤细胞的模态细胞弹性模量为0.5 kPa,极限AFM测量重现性为4%。

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