Khakshour Samaneh, Beischlag Timothy V, Sparrey Carolyn, Park Edward J
School of Mechatronic Systems Engineering, Faculty of Applied Sciences, Simon Fraser University, Surrey, BC, Canada.
Faculty of Health Sciences, Simon Fraser University, Burnaby, BC, Canada.
PLoS One. 2015 Apr 30;10(4):e0126548. doi: 10.1371/journal.pone.0126548. eCollection 2015.
Acute lymphoid leukemia is a common type of blood cancer and chemotherapy is the initial treatment of choice. Quantifying the effect of a chemotherapeutic drug at the cellular level plays an important role in the process of the treatment. In this study, an oscillating optical tweezer was employed to characterize the frequency-dependent mechanical properties of Jurkat cells exposed to the chemotherapeutic agent, artesunate (ART). A motion equation for a bead bound to a cell was applied to describe the mechanical characteristics of the cell cytoskeleton. By comparing between the modeling results and experimental results from the optical tweezer, the stiffness and viscosity of the Jurkat cells before and after the ART treatment were obtained. The results demonstrate a weak power-law dependency of cell stiffness with frequency. Furthermore, the stiffness and viscosity were increased after the treatment. Therefore, the cytoskeleton cell stiffness as the well as power-law coefficient can provide a useful insight into the chemo-mechanical relationship of drug treated cancer cells and may serve as another tool for evaluating therapeutic performance quantitatively.
急性淋巴细胞白血病是一种常见的血癌,化疗是首选的初始治疗方法。在细胞水平上量化化疗药物的效果在治疗过程中起着重要作用。在本研究中,使用振荡光镊来表征暴露于化疗药物青蒿琥酯(ART)的Jurkat细胞的频率依赖性力学特性。应用与细胞结合的珠子的运动方程来描述细胞骨架的力学特性。通过比较光镊的建模结果和实验结果,获得了ART处理前后Jurkat细胞的刚度和粘度。结果表明细胞刚度与频率呈弱幂律依赖性。此外,处理后刚度和粘度增加。因此,细胞骨架细胞刚度以及幂律系数可以为药物处理的癌细胞的化学-力学关系提供有用的见解,并可作为定量评估治疗效果的另一种工具。