Chen Cen, Bai Xue, Ding Yahui, Lee In-Seop
1College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, 310018 People's Republic of China.
Zhejiang Provincial Key Laboratory of Silkworm Bioreactor and Biomedicine, Hangzhou, 310018 People's Republic of China.
Biomater Res. 2019 Dec 5;23:25. doi: 10.1186/s40824-019-0176-8. eCollection 2019.
Recently, electrical stimulation as a physical stimulus draws lots of attention. It shows great potential in disease treatment, wound healing, and mechanism study because of significant experimental performance. Electrical stimulation can activate many intracellular signaling pathways, and influence intracellular microenvironment, as a result, affect cell migration, cell proliferation, and cell differentiation. Electrical stimulation is using in tissue engineering as a novel type of tool in regeneration medicine. Besides, with the advantages of biocompatible conductive materials coming into view, the combination of electrical stimulation with suitable tissue engineered scaffolds can well combine the benefits of both and is ideal for the field of regenerative medicine. In this review, we summarize the various materials and latest technologies to deliver electrical stimulation. The influences of electrical stimulation on cell alignment, migration and its underlying mechanisms are discussed. Then the effect of electrical stimulation on cell proliferation and differentiation are also discussed.
近年来,电刺激作为一种物理刺激备受关注。由于其显著的实验表现,它在疾病治疗、伤口愈合和机制研究方面展现出巨大潜力。电刺激可激活许多细胞内信号通路,影响细胞内微环境,进而影响细胞迁移、细胞增殖和细胞分化。电刺激作为再生医学中的一种新型工具正应用于组织工程。此外,随着生物相容性导电材料优势的显现,电刺激与合适的组织工程支架相结合能够充分融合两者的优点,是再生医学领域的理想选择。在本综述中,我们总结了用于传递电刺激的各种材料和最新技术。讨论了电刺激对细胞排列、迁移及其潜在机制的影响。随后也讨论了电刺激对细胞增殖和分化的作用。