Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:4147-4151. doi: 10.1109/EMBC46164.2021.9630711.
In tissue engineering, cell culture scaffolds have been widely used in combination with electrical stimulation to promote multiple cellular outcomes, like differentiation and proliferation. Nevertheless, the influence of scaffolds on the electric field delivered inside a bioreactor is often ignored and requires a deeper study. By performing numerical analysis in a capacitively coupled setup, this work aimed to predict the effects of the scaffold presence on the electric field, considering multiple combinations of scaffold and culture medium electrical properties. We concluded that the effect of the scaffold on the electric field in the surrounding culture medium was determined by the difference in electrical conductivity of these two materials. The numerical simulations pointed to significant variations in local electric field patterns, which could lead to different cellular outcomes and confound the interpretation of the experimental results.
在组织工程中,细胞培养支架已广泛应用于与电刺激相结合,以促进多种细胞结果,如分化和增殖。然而,支架对生物反应器内传递的电场的影响通常被忽略,需要更深入的研究。本工作通过在电容耦合设置中进行数值分析,旨在预测支架存在对电场的影响,同时考虑支架和培养基电特性的多种组合。我们得出结论,支架对周围培养基中电场的影响取决于这两种材料电导率的差异。数值模拟表明,局部电场模式会发生显著变化,这可能导致不同的细胞结果,并混淆实验结果的解释。