PDMS表面处理对细胞力学应用的影响

ty10086 提交于 周四, 08/26/2021 - 13:08
文章英文标题
Impact of PDMS surface treatment in cell-mechanics applications
正文
摘要( # br ) PDMS作为一种广泛应用于细胞力学研究的弹性体,在细胞培养制备过程中受到多种表面处理。特别是考虑到其粘弹性性质,上述处理对PDMS力学行为的影响,尤其是在相关长度尺度为100 μ m时,受到的关注有限。尽管由于PDMS力学性能的微小变化,在定量细胞牵引力方面报告了重大误差。因此,本文通过拉伸和应力松弛实验,研究了等离子体氧化、灭菌和孵育对PDMS弹性模量、松弛模量和泊松比的影响,并通过线性黏弹性方程解释了后者的结果。观察到,虽然通过这一循环的表面处理测量了与未处理PDMS性能的显著偏差,但未经处理的PDMS在细胞培养基中孵育后性能几乎恢复。例如,处理后的PDMS的弹性模量比未处理的PDMS小6 %,对应的松弛模量和时均泊松比偏差分别\u003c 3 %和\u003c 1 %。在细胞培养基中培养过程结束时,泊松比随时间的变化率也被发现降低。因此,未处理PDMS的黏弹性性能可以在本工作提供的误差范围内安全使用。
文章内容(英文)
Abstract(#br)As a widely used elastomer in cell mechanics studies, PDMS is exposed to a variety of surface treatments during cell culture preparation. Considering its viscoelastic nature in particular, effects of the aforementioned treatments on PDMS mechanical behaviour, especially at the relevant length scale of 100 μm, received limited attention. This is despite the fact that significant errors were reported in the quantification of cellular traction forces as a result of minute changes in PDMS mechanical properties. Hence, the effects of plasma oxidation, sterilization and incubation on PDMS modulus of elasticity, relaxation modulus and Poisson's ratio are studied here through tension and stress relaxation tests, with the results of the latter interpreted via the linear viscoelastic formulation. It is observed that although significant deviations from the properties of untreated PDMS are measured through this cycle of surface treatment, properties of untreated PDMS are almost recovered following incubation in cell medium. For example, the modulus of elasticity of treated PDMS was found to be 6% smaller than that of the untreated PDMS. The corresponding deviation was \u003c3% and \u003c1% for the relaxation modulus and time-averaged Poisson's ratio, respectively. The rate of change of the Poisson's ratio with time was also found to be reduced at the end of incubation process in cell medium. As a result, viscoelastic properties of untreated PDMS can safely be used within the error margins provided by this work.
来源出处
Journal|[J]Journal of the Mechanical Behavior of Biomedical MaterialsVolume 103, 2020.
DOI
https://doi.org/10.1016/j.jmbbm.2019.103538

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