Cellbiocontrol Laboratory, Department of Medical Engineering, Yonsei University College of Medicine, Seoul 03722, Korea.
Department of Medical Device Engineering and Management, Yonsei University College of Medicine, Seoul 03722, Korea.
Cells. 2021 Oct 22;10(11):2846. doi: 10.3390/cells10112846.
Electrical stimulation is a well-known strategy for regulating cell behavior, both in pathological and physiological processes such as wound healing, tissue regeneration, and embryonic development. Electrotaxis is the directional migration of cells toward the cathode or anode when subjected to electrical stimulation. In this study, we investigated the conditions for enhanced directional migration of electrically stimulated adipose-derived stem cells (ADSCs) during prolonged culture, using a customized agar-salt electrotaxis chamber. Exposure of ADSCs to a 1200 μA electric current for 3 h, followed by cessation of stimulation for 6 h and resumed stimulation for a further 3 h, increased directional cell migration toward the anode without inducing cell death. Moreover, Golgi polarization maintained the direction of polarity parallel to the direction of cell movement. Herein, we demonstrated that a pulsed electric current is sufficient to trigger directional migration of ADSCs in long-term culture while maintaining cell viability.
电刺激是一种调节细胞行为的众所周知的策略,无论是在病理还是生理过程中,如伤口愈合、组织再生和胚胎发育。电趋化性是指细胞在受到电刺激时向阴极或阳极的定向迁移。在这项研究中,我们使用定制的琼脂-盐电趋化室研究了在长时间培养过程中增强电刺激脂肪来源干细胞(ADSCs)的定向迁移的条件。将 ADSCs 暴露于 1200μA 的电流 3 小时,然后停止刺激 6 小时,再恢复刺激 3 小时,可增加细胞向阳极的定向迁移,而不会诱导细胞死亡。此外,高尔基极化保持极性与细胞运动方向平行。在此,我们证明了脉冲电流足以在保持细胞活力的同时触发 ADSC 在长期培养中的定向迁移。