Dipartimento di Fisiopatologia Medico-Chirurgica e dei Trapianti, Sezione di Fisiologia Umana, Università degli Studi di Milano, 20100 Milan, Italy.
Int J Mol Sci. 2022 Apr 29;23(9):4980. doi: 10.3390/ijms23094980.
To study the friction of cell monolayers avoiding damage due to stress concentration, cells can be cultured on fibrin gels, which have a structure and viscoelasticity similar to that of the extracellular matrix. In the present research, we studied different gel compositions and surface coatings in order to identify the best conditions to measure friction in vitro. We examined the adhesion and growth behavior of mesothelial cell line MET-5A on fibrin gels with different fibrinogen concentrations (15, 20, and 25 mg/mL) and with different adhesion coatings (5 μg/mL fibronectin, 10 μg/mL fibronectin, or 10 μg/mL fibronectin + 10 μg/mL collagen). We also investigated whether different substrates influenced the coefficient of friction and the ability of cells to stick to the gel during sliding. Finally, we studied the degradation rates of gels with and without cells. All substrates tested provided a suitable environment for the adherence and proliferation of mesothelial cells, and friction measurements did not cause significant cell damage or detachment. However, in gels with a lower fibrinogen concentration, cell viability was higher and cell detachment after friction measurement was lower. Fibrinolysis was negligible in all the substrates tested.
为了研究细胞单层的摩擦,避免由于应力集中造成的损伤,可以将细胞培养在纤维蛋白凝胶上,纤维蛋白凝胶的结构和粘弹性与细胞外基质相似。在本研究中,我们研究了不同的凝胶组成和表面涂层,以确定体外测量摩擦力的最佳条件。我们研究了间皮细胞系 MET-5A 在不同纤维蛋白浓度(15、20 和 25 mg/mL)和不同黏附涂层(5 μg/mL 纤维连接蛋白、10 μg/mL 纤维连接蛋白或 10 μg/mL 纤维连接蛋白+10 μg/mL 胶原蛋白)的纤维蛋白凝胶上的黏附和生长行为。我们还研究了不同的底物是否会影响摩擦系数以及细胞在滑动过程中黏附在凝胶上的能力。最后,我们研究了有细胞和无细胞的凝胶的降解速率。所有测试的底物都为间皮细胞的黏附和增殖提供了合适的环境,并且摩擦力测量不会导致明显的细胞损伤或脱落。然而,在纤维蛋白浓度较低的凝胶中,细胞活力更高,摩擦力测量后的细胞脱落率更低。在所有测试的底物中,纤维蛋白溶解都可以忽略不计。