Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustr. 3, 14195 Berlin, Germany; Institute of Physical Chemistry and Electrochemistry, Leibniz Universität Hannover, Callinstr. 3A, 30167 Hannover, Germany.
Biomater Adv. 2022 Oct;141:213101. doi: 10.1016/j.bioadv.2022.213101. Epub 2022 Sep 6.
Thermoresponsive poly(glycidyl ether) (PGE) brushes have shown to be viable substrates for the culture and temperature-triggered detachment of confluent cell sheets. Surface-tethered PGEs with a cloud point temperature (T) around ~30 °C exhibit phase transitions well-centered within the physiological range (20-37 °C), which makes them ideal candidates for cell sheet fabrication. However, PGEs with Ts at ~20 °C also afford the detachment of various types of cell sheets, even at room temperature (20-23 °C), i.e., above the polymers' Ts. In this study, we investigate the phase transition of PGE brushes tethered to polystyrene (PS) culture substrates with varying grafting density and T to arrive at a mechanistic understanding of their functionality in cell sheet fabrication. Using quartz crystal microbalance with dissipation (QCM-D) monitoring, we demonstrate that brushes fabricated from PGEs with Ts at ~20 °C display volume phase transition temperatures (VPTTs) well below room temperature. Although the investigated coatings obviously do not exhibit marked thermal switching in terms of brush hydration and layer thickness, their physical properties at the brush-water interface, as ascertained by QCM-D and AFM measurements, undergo subtle changes upon cooling from 37 °C to room temperature which is sufficient to promote cell sheet detachment. Thus, it appears that discreet rehydration of the outmost brush layer, resembling "fuzzy hair" at the brush-water interface, renders the surfaces less protein- and cell-adhesive at room temperature. This minor structural change of the interface allows for the reliable detachment of human dermal fibroblast sheets already at 20 °C well above the VPTT of the brushes.
温敏聚(缩水甘油醚)(PGE)刷在培养和温度触发的细胞片层的脱离方面显示出作为可行的基底。具有约 30°C 浊点温度(T)的表面固定的 PGE 具有很好地位于生理范围内(20-37°C)的相转变,这使它们成为细胞片制造的理想候选物。然而,T 值约为 20°C 的 PGE 也可用于各种类型的细胞片的脱离,甚至在室温(20-23°C)下,即在聚合物的 T 值之上。在这项研究中,我们研究了与具有不同接枝密度和 T 值的聚苯乙烯(PS)培养基底连接的 PGE 刷的相转变,以了解其在细胞片制造中的功能的机理。使用石英晶体微天平与耗散(QCM-D)监测,我们证明了 T 值约为 20°C 的 PGE 刷显示出远低于室温的体积相转变温度(VPTT)。尽管所研究的涂层在刷水合和层厚度方面显然没有明显的热切换,但它们在刷-水界面处的物理性质,如通过 QCM-D 和 AFM 测量所确定的,在从 37°C 冷却到室温时会发生微妙的变化,足以促进细胞片的脱离。因此,似乎是最外层刷层的离散再水合,类似于刷-水界面处的“绒毛状毛发”,使得表面在室温下的蛋白质和细胞附着性降低。界面的这种微小结构变化允许已经在 20°C 下可靠地脱离人真皮成纤维细胞片,这远高于刷的 VPTT。