Li Mi, Liu Lianqing, Xiao Xiubin, Xi Ning, Wang Yuechao
State Key Laboratory of Robotics, Shenyang Institute of Automation, Chinese Academy of Sciences, Shenyang, 110016, China.
Department of Lymphoma, Affiliated Hospital of Military Medical Academy of Sciences, Beijing, 100071, China.
J Biol Phys. 2016 Oct;42(4):551-569. doi: 10.1007/s10867-016-9423-6. Epub 2016 Jul 20.
Methotrexate is a commonly used anti-cancer chemotherapy drug. Cellular mechanical properties are fundamental parameters that reflect the physiological state of a cell. However, so far the role of cellular mechanical properties in the actions of methotrexate is still unclear. In recent years, probing the behaviors of single cells with the use of atomic force microscopy (AFM) has contributed much to the field of cell biomechanics. In this work, with the use of AFM, the effects of methotrexate on the viscoelastic properties of four types of cells were quantitatively investigated. The inhibitory and cytotoxic effects of methotrexate on the proliferation of cells were observed by optical and fluorescence microscopy. AFM indenting was used to measure the changes of cellular viscoelastic properties (Young's modulus and relaxation time) by using both conical tip and spherical tip, quantitatively showing that the stimulation of methotrexate resulted in a significant decrease of both cellular Young's modulus and relaxation times. The morphological changes of cells induced by methotrexate were visualized by AFM imaging. The study improves our understanding of methotrexate action and offers a novel way to quantify drug actions at the single-cell level by measuring cellular viscoelastic properties, which may have potential impacts on developing label-free methods for drug evaluation.
甲氨蝶呤是一种常用的抗癌化疗药物。细胞力学性质是反映细胞生理状态的基本参数。然而,到目前为止,细胞力学性质在甲氨蝶呤作用中的作用仍不清楚。近年来,利用原子力显微镜(AFM)探测单细胞行为对细胞生物力学领域有很大贡献。在这项工作中,利用AFM定量研究了甲氨蝶呤对四种细胞粘弹性性质的影响。通过光学显微镜和荧光显微镜观察了甲氨蝶呤对细胞增殖的抑制和细胞毒性作用。采用AFM压痕法,利用锥形探针和球形探针测量细胞粘弹性性质(杨氏模量和弛豫时间)的变化,定量显示甲氨蝶呤刺激导致细胞杨氏模量和弛豫时间均显著降低。通过AFM成像观察了甲氨蝶呤诱导的细胞形态变化。该研究增进了我们对甲氨蝶呤作用的理解,并提供了一种通过测量细胞粘弹性性质在单细胞水平上量化药物作用的新方法,这可能对开发无标记药物评估方法有潜在影响。