Uysal Karya, Firat Ipek Seda, Creutz Till, Aydin Inci Cansu, Artmann Gerhard M, Teusch Nicole, Temiz Artmann Aysegül
Institute for Bioengineering, University of Applied Sciences Aachen/Campus Juelich, Heinrich-Mussmannstr. 1, 52428 Jülich, Germany.
Institute for Pharmaceutical Biology and Biotechnology, Heinrich-Heine-University Düsseldorf, Universitätsstr. 1/Geb. 26.23, 40225 Düsseldorf, Germany.
Membranes (Basel). 2022 Dec 24;13(1):22. doi: 10.3390/membranes13010022.
Advances in polymer science have significantly increased polymer applications in life sciences. We report the use of free-standing, ultra-thin polydimethylsiloxane (PDMS) membranes, called CellDrum, as cell culture substrates for an in vitro wound model. Dermal fibroblast monolayers from 28- and 88-year-old donors were cultured on CellDrums. By using stainless steel balls, circular cell-free areas were created in the cell layer (wounding). Sinusoidal strain of 1 Hz, 5% strain, was applied to membranes for 30 min in 4 sessions. The gap circumference and closure rate of un-stretched samples (controls) and stretched samples were monitored over 4 days to investigate the effects of donor age and mechanical strain on wound closure. A significant decrease in gap circumference and an increase in gap closure rate were observed in trained samples from younger donors and control samples from older donors. In contrast, a significant decrease in gap closure rate and an increase in wound circumference were observed in the trained samples from older donors. Through these results, we propose the model of a cell monolayer on stretchable CellDrums as a practical tool for wound healing research. The combination of biomechanical cell loading in conjunction with analyses such as gene/protein expression seems promising beyond the scope published here.
高分子科学的进展显著增加了聚合物在生命科学中的应用。我们报告了一种名为CellDrum的独立式超薄聚二甲基硅氧烷(PDMS)膜作为体外伤口模型的细胞培养底物的应用。来自28岁和88岁供体的真皮成纤维细胞单层在CellDrum上培养。通过使用不锈钢球,在细胞层中创建圆形无细胞区域(创伤)。以1 Hz、5%应变的正弦应变对膜施加4次,每次30分钟。在4天内监测未拉伸样品(对照)和拉伸样品的间隙周长和闭合率,以研究供体年龄和机械应变对伤口闭合的影响。在年轻供体的训练样品和老年供体的对照样品中观察到间隙周长显著减小,间隙闭合率增加。相反,在老年供体的训练样品中观察到间隙闭合率显著降低,伤口周长增加。通过这些结果,我们提出了在可拉伸的CellDrum上的细胞单层模型,作为伤口愈合研究的实用工具。生物力学细胞加载与基因/蛋白质表达等分析相结合,似乎在此处发表的范围之外具有广阔前景。