Huang Qiaoling, Antensteiner Martin, Liu Xiang Yang, Lin Changjian, Vogler Erwin A
Research Institute for Biomimetics and Soft Matter, Fujian Provincial Key Laboratory for Soft Functional Materials Research, Department of Physics, Xiamen University, Xiamen 361005, China.
Departments of Materials Science and Engineering and Bioengineering, The Pennsylvania State University, University Park, PA 16802, USA.
Colloids Surf B Biointerfaces. 2016 Dec 1;148:211-219. doi: 10.1016/j.colsurfb.2016.07.022. Epub 2016 Jul 11.
Short-term (<2h) cell adhesion kinetics of 3 different mammalian cell types: MDCK (epithelioid), MC3T3-E1 (osteoblastic), and MDA-MB-231 (cancerous) on 7 different substratum surface chemistries spanning the experimentally-observable range of water wettability (surface energy) are graphically analyzed to qualitatively elucidate commonalities and differences among cell/surface/suspending media combinations. We find that short-term mammalian cell attachment/adhesion in vitro correlates with substratum surface energy as measured by water adhesion tension, τ≡γcosθ, where γ is water liquid-vapor interfacial energy (72.8 mJ/m) and cosθ is the cosine of the advancing contact angle subtended by a water droplet on the substratum surface. No definitive functional relationships among cell-adhesion kinetic parameters and τ were observed as in previous work, but previously-observed general trends were reproduced, especially including a sharp transition in the magnitude of kinetic parameters from relatively low-to-high near τ=0mJ/m, although the exact adhesion tension at which this transition occurs is difficult to accurately estimate from the current data set. We note, however, that the transition is within the hydrophobic range based on the τ=30mJ/m surface-energetic dividing line that has been proposed to differentiate "hydrophobic" surfaces from "hydrophilic". Thus, a rather sharp hydrophobic/hydrophilic contrast is observed for cell adhesion for disparate cell/surface combinations.
对3种不同哺乳动物细胞类型(上皮样的MDCK细胞、成骨细胞MC3T3-E1和癌细胞MDA-MB-231)在7种不同基质表面化学性质上的短期(<2小时)细胞黏附动力学进行了图形分析,这些基质表面化学性质涵盖了实验可观察到的水润湿性(表面能)范围,以定性地阐明细胞/表面/悬浮介质组合之间的共性和差异。我们发现,体外短期哺乳动物细胞附着/黏附与通过水黏附张力τ≡γcosθ测量的基质表面能相关,其中γ是水的液-气界面能(72.8 mJ/m²),cosθ是基质表面上水滴所张的前进接触角的余弦值。与之前的工作不同,未观察到细胞黏附动力学参数与τ之间明确的函数关系,但之前观察到的一般趋势得以重现,特别是包括在τ = 0 mJ/m²附近,动力学参数的大小从相对较低到较高的急剧转变,尽管从当前数据集难以准确估计发生这种转变的确切黏附张力。然而,我们注意到,基于已提出的用于区分“疏水”表面和“亲水”表面的τ = 30 mJ/m²表面能分界线,该转变处于疏水范围内。因此,对于不同的细胞/表面组合,在细胞黏附方面观察到了相当明显的疏水/亲水对比。