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使用原子力显微镜通过纳米压痕对秋水仙碱诱导的细胞效应进行生物力学测量与分析。

Biomechanical measurement and analysis of colchicine-induced effects on cells by nanoindentation using an atomic force microscope.

作者信息

Liu Lanjiao, Zhang Wenxiao, Li Li, Zhu Xinyao, Liu Jinyun, Wang Xinyue, Song Zhengxun, Xu Hongmei, Wang Zuobin

机构信息

International Research Centre for Nano Handling and Manufacturing of China, Changchun University of Science and Technology, Changchun 130022, China.

School of Engineering, University of Warwick, Coventry CV4 7AL, UK.

出版信息

J Biomech. 2018 Jan 23;67:84-90. doi: 10.1016/j.jbiomech.2017.11.018. Epub 2017 Dec 7.

DOI:10.1016/j.jbiomech.2017.11.018
PMID:29249455
Abstract

Colchicine is a drug commonly used for the treatment of gout, however, patients may sometimes encounter side-effects induced by taking colchicine, such as nausea, vomiting, diarrhea and kidney failure. In this regard, it is imperative to investigate the mechanism effects of colchicine on biological cells. In this paper, we present a method for the detection of mechanical properties of nephrocytes (VERO cells), hepatocytes (HL-7702 cells) and hepatoma cells (SMCC-7721 cells) in culture by atomic force microscope (AFM) to analyze the 0.1 μg/mL colchicine-induced effects on the nanoscale for two, four and six hours. Compared to the corresponding control cells, the biomechanical properties of the VERO and SMCC-7721 cells changed significantly and the HL-7702 cells did not considerably change after the treatment when considering the same time period. Based on biomechanical property analyses, the colchicine solution made the VERO and SMCC-7721 cells harder. We conclude that it is possible to reduce the division rate of the VERO cells and inhibit the metastasis of the SMCC-7721 cells. The method described here can be applied to study biomechanics of many other types of cells with different drugs. Therefore, this work provides an accurate and rapid method for drug screening and mechanical analysis of cells in medical research.

摘要

秋水仙碱是一种常用于治疗痛风的药物,然而,患者有时可能会遇到服用秋水仙碱引起的副作用,如恶心、呕吐、腹泻和肾衰竭。在这方面,研究秋水仙碱对生物细胞的作用机制势在必行。在本文中,我们提出了一种通过原子力显微镜(AFM)检测培养中的肾细胞(VERO细胞)、肝细胞(HL-7702细胞)和肝癌细胞(SMCC-7721细胞)力学性能的方法,以分析0.1μg/mL秋水仙碱在两小时、四小时和六小时内对纳米尺度的影响。与相应的对照细胞相比,在相同时间段处理后,VERO细胞和SMCC-7721细胞的生物力学性能发生了显著变化,而HL-7702细胞没有明显变化。基于生物力学性能分析,秋水仙碱溶液使VERO细胞和SMCC-7721细胞变硬。我们得出结论,有可能降低VERO细胞的分裂率并抑制SMCC-7721细胞的转移。这里描述的方法可以应用于研究许多其他类型细胞与不同药物的生物力学。因此,这项工作为医学研究中的药物筛选和细胞力学分析提供了一种准确、快速的方法。

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