论文标题

弹性表面的刚度影响内皮细胞的机械性能

The stiffness of elastomeric surfaces influences the mechanical properties of endothelial cells

论文作者

Iturri, Jagoba, Miholich, Julia, Zemljic, Spela, Andorfer-Sarr, Amsatou, Benitez, Rafael, Toca-Herrera, Jose L.

论文摘要

对两个细胞及其周围环境的机械性能的最佳表征是一个重大兴趣的问题。实际上,细胞功能和发育受到外部刺激的强烈影响。此外,在某些情况下,细胞力学的变化可能与疾病或功能故障相关。在这项工作中,应用原子力显微镜(AFM)检查了硅酮弹性体聚二甲基硅氧烷(PDMS)在细胞培养中的常见底物。力光谱分析是在该弹性材料的不同样本上进行的,该弹性体材料包含树脂与交联的结构(5:1,10:1,20:1,30:1,30:1和50:1)的不同比例,这会影响最终的材料特性(例如刚度,弹性,弹性)。为了量化PDM的机械性能,作为年轻的模量,最大粘合力以及弛豫幅度以及尖端恒定接触时的时间(零段时间不同)的时间,从构成力曲线的不同段来计算。已经证明,与亲水性开关所需的先前的氧血浆处理相同,与观察到的粘附性相反,材料刚度通过先前的氧血浆处理而增加。与在玻璃参考上获得的血浆治疗的PDMS系统之外,随后在这些血浆处理的PDMS系统上孵育内皮HUVEC细胞在细胞力学上的差异很小,该细胞在其上显示出更高的扩散趋势,并且通过扩展,膜的膜变化很大。因此,表面润湿性的相关性比底物刚度诱导细胞力学的变化更高。

Optimal characterization of the mechanical properties of both cells and their surrounding is an issue of major interest. Indeed, cell function and development are strongly influenced by external stimuli. Furthermore, a change in cell mechanics might, in some cases, associate with diseases or malfunctioning. In this work, atomic force microscopy (AFM) was applied to examine the mechanical properties of the silicone elastomer polydimethylsiloxane (PDMS) a common substrate in cell culture. Force spectroscopy analysis was done over different specimens of this elastomeric material containing varying ratios of resin to cross-linker in its structure (5:1, 10:1, 20:1, 30:1 and 50:1), which impacts the final material properties (e.g., stiffness, elasticity). To quantify the mechanical properties of the PDMS, factors as the modulus of Young, the maximum adhesive forces as well as both relaxation amplitudes and times upon constant height contact of the tip (dwell time different of zero) were calculated from the different segments forming the force curves. It is demonstrated that the material stiffness is increased by prior oxygen plasma treatment of the sample, required for hydrophilic switching, contrarily to what observed for its adhesiveness. Subsequent incubation of endothelial HUVEC cells on top of these plasma treated PDMS systems yields minor variation in cell mechanics in comparison to those obtained on a glass reference, on which cells show much higher spreading tendency and, by extension, a remarkable membrane hardening. Thus, surface wettability turns a factor of higher relevance than substrate stiffness inducing variations in the cell mechanics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源