Gauthier Rémy, Attik Nina, Chevalier Charlène, Salles Vincent, Grosgogeat Brigitte, Gritsch Kerstin, Trunfio-Sfarghiu Ana-Maria
UCBL, MATEIS UMR CNRS 5510, Bât. Saint Exupéry, Univ Lyon, CNRS, INSA de Lyon, 23 Av. Jean Capelle, 69621 Villeurbanne, France.
UMR CNRS 5615, Laboratoire des Multimatériaux et Interfaces, Univ Lyon, Université Claude Bernard Lyon 1, 69622 Villeurbanne, France.
Biomimetics (Basel). 2023 Mar 7;8(1):108. doi: 10.3390/biomimetics8010108.
While periodontal ligament cells are sensitive to their 3D biomechanical environment, only a few 3D in vitro models have been used to investigate the periodontal cells mechanobiological behavior. The objective of the current study was to assess the capability of a 3D fibrous scaffold to transmit a mechanical loading to the periodontal ligament cells. Three-dimensional fibrous polycaprolactone (PCL) scaffolds were synthetized through electrospinning. Scaffolds seeded with human periodontal cells (10 mL) were subjected to static ( = 9) or to a sinusoidal axial compressive loading in an in-house bioreactor ( = 9). At the end of the culture, the dynamic loading seemed to have an influence on the cells' morphology, with a lower number of visible cells on the scaffolds surface and a lower expression of actin filament. Furthermore, the dynamic loading presented a tendency to decrease the Alkaline Phosphatase activity and the production of Interleukin-6 while these two biomolecular markers were increased after 21 days of static culture. Together, these results showed that load transmission is occurring in the 3D electrospun PCL fibrous scaffolds, suggesting that it can be used to better understand the periodontal ligament cells mechanobiology. The current study shows a relevant way to investigate periodontal mechanobiology using 3D fibrous scaffolds.
虽然牙周膜细胞对其三维生物力学环境敏感,但仅有少数三维体外模型用于研究牙周细胞的力学生物学行为。本研究的目的是评估三维纤维支架将机械负荷传递给牙周膜细胞的能力。通过静电纺丝合成了三维纤维聚己内酯(PCL)支架。接种有人牙周细胞(10 mL)的支架在自制生物反应器中承受静态负荷(n = 9)或正弦轴向压缩负荷(n = 9)。培养结束时,动态负荷似乎对细胞形态有影响,支架表面可见细胞数量减少,肌动蛋白丝表达降低。此外,动态负荷有降低碱性磷酸酶活性和白细胞介素-6产生的趋势,而这两种生物分子标志物在静态培养21天后增加。总之,这些结果表明负荷传递发生在三维静电纺PCL纤维支架中,表明其可用于更好地理解牙周膜细胞力学生物学。本研究展示了一种使用三维纤维支架研究牙周力学生物学的相关方法。