Maan Renu, Rani Garima, Menon Gautam I, Pullarkat Pramod A
Soft Condensed Matter, Raman Research Institute, Sadashivnagar, Bangalore 560 080, India. Present address: Department of Bionanoscience, Kavli Institute of NanoScience, Faculty of Applied Sciences, Delft University of Technology, Postbus 5046, 2600 GA, Delft, Netherlands.
Phys Biol. 2018 May 9;15(4):046006. doi: 10.1088/1478-3975/aabc66.
Changes in cell-substrate adhesion are believed to signal the onset of cancer metastasis, but such changes must be quantified against background levels of intrinsic heterogeneity between cells. Variations in cell-substrate adhesion strengths can be probed through biophysical measurements of cell detachment from substrates upon the application of an external force. Here, we investigate, theoretically and experimentally, the detachment of cells adhered to substrates when these cells are subjected to fluid shear. We present a theoretical framework within which we calculate the fraction of detached cells as a function of shear stress for fast ramps as well as the decay in this fraction at fixed shear stress as a function of time. Using HEK and 3T3 fibroblast cells as experimental model systems, we extract characteristic force scales for cell adhesion as well as characteristic detachment times. We estimate force-scales of ∼500 pN associated to a single focal contact, and characteristic time-scales of [Formula: see text] s representing cell-spread-area dependent mean first passage times to the detached state at intermediate values of the shear stress. Variations in adhesion across cell types are especially prominent when cell detachment is probed by applying a time-varying shear stress. These methods can be applied to characterizing changes in cell adhesion in a variety of contexts, including metastasis.
细胞与底物的粘附变化被认为是癌症转移开始的信号,但这种变化必须相对于细胞间固有异质性的背景水平进行量化。细胞与底物粘附强度的变化可以通过在施加外力时对细胞从底物上脱离的生物物理测量来探究。在这里,我们从理论和实验两方面研究了粘附在底物上的细胞在受到流体剪切时的脱离情况。我们提出了一个理论框架,在这个框架内,我们计算了快速斜坡情况下脱离细胞的比例与剪切应力的函数关系,以及在固定剪切应力下该比例随时间的衰减情况。使用HEK和3T3成纤维细胞作为实验模型系统,我们提取了细胞粘附的特征力尺度以及特征脱离时间。我们估计与单个粘着斑相关的力尺度约为500 pN,以及在剪切应力的中间值下,代表细胞铺展面积依赖的平均首次通过时间到脱离状态的特征时间尺度为[公式:见原文]秒。当通过施加随时间变化的剪切应力来探测细胞脱离时,不同细胞类型之间的粘附变化尤为显著。这些方法可应用于表征包括转移在内的各种情况下细胞粘附的变化。