Stöbener Daniel David, Uckert Melanie, Cuellar-Camacho José Luis, Hoppensack Anke, Weinhart Marie
Institute of Chemistry and Biochemistry, Freie Universitaet Berlin, Takustr. 3, 14195 Berlin, Germany.
ACS Biomater Sci Eng. 2017 Sep 11;3(9):2155-2165. doi: 10.1021/acsbiomaterials.7b00270. Epub 2017 Aug 1.
The fabrication of cell sheets is a major requirement for bottom-up tissue engineering purposes (e.g., cell sheet engineering) and regenerative medicine. Employing thermoresponsive polymer coatings as tissue culture substrates allows for the mild, temperature-triggered detachment of intact cell sheets along with their extracellular matrix (ECM). It has been shown before that biocompatible, thermoresponsive poly(glycidyl ether) monolayers on gold substrates can be utilized to harvest confluent cell sheets by simply reducing the temperature to 20 °C. Herein, we report on the first poly(glycidyl ether)-based coating on an application-relevant tissue culture plastic substrate. We devised a simple, substrate-geometry-independent method to functionalize polystyrene (PS) surfaces from dilute ethanolic solution via the physical adsorption process of a thermoresponsive poly(glycidyl ether) block copolymer (PGE) bearing a short, hydrophobic, and photoreactive benzophenone (BP) anchor block. Subsequently, the PGE-coated PS is UV-irradiated for covalent photoimmobilization of the polymer on the PS substrate. Online monitoring of the adsorption process via QCM-D measurements and detailed characterization of the resulting coatings via AFM, ellipsometry, and water contact angle (CA) measurements revealed the formation of an ultrathin PGE layer with an average dry thickness of 0.7 ± 0.1 nm. Adhesion and proliferation of human dermal fibroblasts on PGE-coated PS and tissue culture PS (TCPS) were comparable. For temperature-triggered detachment, fibroblasts were cultured in PGE-coated PS culture dishes at 37 °C for 24 h until they reached confluency. Intact cell sheets could be harvested from the thermoresponsive substrates within 51 ± 17 min upon cooling to 20 °C, whereas sheets could not be harvested from uncoated PS and TCPS control dishes. Live/dead staining and flow cytometry affirmed a high viability of the fibroblasts within the cell sheets. Hence, ultrathin layers of thermoresponsive poly(glycidyl ether)s on hydrophobic PS substrates are functional coatings for cell sheet fabrication.
细胞片的制备是自下而上的组织工程目的(如细胞片工程)和再生医学的主要要求。使用热响应性聚合物涂层作为组织培养底物,能够使完整的细胞片及其细胞外基质(ECM)在温和的温度触发下分离。之前已经表明,金基底上的生物相容性热响应性聚缩水甘油醚单层可通过简单地将温度降至20°C来用于收获汇合的细胞片。在此,我们报道了在与应用相关的组织培养塑料底物上的首个基于聚缩水甘油醚的涂层。我们设计了一种简单的、与底物几何形状无关的方法,通过带有短的、疏水且光反应性二苯甲酮(BP)锚定嵌段的热响应性聚缩水甘油醚嵌段共聚物(PGE)从稀乙醇溶液中对聚苯乙烯(PS)表面进行功能化,该过程通过物理吸附实现。随后,对涂有PGE的PS进行紫外线照射,以使聚合物共价光固定在PS底物上。通过石英晶体微天平 - 耗散监测(QCM - D)测量对吸附过程进行在线监测,并通过原子力显微镜(AFM)、椭偏仪和水接触角(CA)测量对所得涂层进行详细表征,结果表明形成了平均干厚度为0.7±0.1 nm的超薄PGE层。人真皮成纤维细胞在涂有PGE的PS和组织培养PS(TCPS)上的粘附和增殖情况相当。对于温度触发的分离,将成纤维细胞在涂有PGE的PS培养皿中于37°C培养24小时直至汇合。冷却至20°C后,可在51±17分钟内从热响应性底物上收获完整的细胞片,而从未涂覆的PS和TCPS对照培养皿中则无法收获细胞片。活/死染色和流式细胞术证实了细胞片中的成纤维细胞具有高活力。因此,疏水PS底物上的热响应性聚缩水甘油醚超薄层是用于细胞片制备的功能涂层。