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Single-Cell Elastography: Probing for Disease with the Atomic Force Microscope

机译:单细胞弹性成像:用原子力显微镜探测疾病

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摘要

The atomic force microscope (AFM) is emerging as a powerful tool in cell biology. Originally developed for high-resolution imaging purposes, the AFM also has unique capabilities as a nano-indenter to probe the dynamic viscoelastic material properties of living cells in culture. In particular, AFM elastography combines imaging and indentation modalities to map the spatial distribution of cell mechanical properties, which in turn reflect the structure and function of the underlying cytoskeleton. Such measurements have contributed to our understanding of cell mechanics and cell biology and appear to be sensitive to the presence of disease in individual cells. This chapter provides a background on the principles and practice of AFM elastography and reviews the literature comparing cell mechanics in normal and diseased states, making a case for the use of such measurements as disease markers. Emphasis is placed on the need for more comprehensive and detailed quantification of cell biomechanical properties beyond the current standard methods of analysis. A number of technical and practical hurdles have yet to be overcome before the method can be of clinical use. However, the future holds great promise for AFM elastography of living cells to provide novel biomechanical markers that will enhance the detection, diagnosis, and treatment of disease.
机译:原子力显微镜(AFM)逐渐成为细胞生物学中的强大工具。 AFM最初是为高分辨率成像目的而开发的,它还具有作为纳米压头的独特功能,可以探测培养物中活细胞的动态粘弹性材料特性。特别是,原子力显微镜弹性成像结合了成像和压痕模态,以绘制细胞力学特性的空间分布图,进而反映了基础细胞骨架的结构和功能。这样的测量有助于我们对细胞力学和细胞生物学的理解,并且似乎对单个细胞中疾病的存在敏感。本章提供了有关AFM弹性成像原理和实践的背景知识,并回顾了比较正常和患病状态下细胞力学的文献,为使用此类测量作为疾病标志物提供了依据。除了当前的标准分析方法外,重点是需要对细胞生物力学特性进行更全面和详细的量化。在该方法可用于临床之前,尚需克服许多技术和实践障碍。但是,对于活细胞的AFM弹性成像技术,提供新颖的生物力学标记物将增强疾病的检测,诊断和治疗,具有广阔的前景。

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