用于研究细胞性质的超柔性热AFM探针

K. Lai, A. Gaitas, Ruiguo Yang, C. Fung, N. Xi
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引用次数: 2

摘要

原子力显微镜(AFM)可以用于许多纳米尺度的生物学研究。它开启了在生理条件下监测细胞过程的可能性,具有执行高分辨率成像和力测量的能力。然而,分析活细胞的力学特性是困难的,而且灵敏度低。传统的AFM探针采用了高刚度的材料,因此对软质样品的力测量变得更加困难。在这项工作中,使用一种由聚酰亚胺制成的超柔性AFM探针来提供改进的癌细胞成像和力测量。探头包括用于热导特性表征的嵌入式传感元件。该探针用于生物细胞的热导和地形测绘。这种探针可以对液体中的细胞进行高速成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra-compliant thermal AFM probes for studying of cellular properties
Atomic force microscopy (AFM) can be used for a number of nanoscale biological studies. It opens the possibility to monitor cellular processes in physiological conditions with the ability to perform high resolution imaging and force measurements. However, analysis of the mechanical property of the living cells is difficult and the sensitivity is low. Conventional AFM probes use high-stiffness materials and therefore, it makes the force measurement on soft samples becoming more difficult. In this work an ultra-compliant AFM probe made of polyimide was used to provide an improved imaging and force measurement of cancer cells. The probe includes an embedded sensing element for thermal conductance characterization. The probe was used for thermal conductance and topographical mapping of biological cells. The probe allows for high speed imaging of cells in liquids.
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