Tai Guangping, Tai Michael, Zhao Min
1Centre of Advanced Biofabrication, Department of Bioengineering and Environmental Sciences, Hefei University, Hefei City, China.
2St Catherine's College, Medical Sciences Division, University of Oxford, Oxford, OX1 3UJ UK.
Burns Trauma. 2018 Jul 9;6:20. doi: 10.1186/s41038-018-0123-2. eCollection 2018.
Naturally occurring electric fields are known to be morphogenetic cues and associated with growth and healing throughout mammalian and amphibian animals and the plant kingdom. Electricity in animals was discovered in the eighteenth century. Electric fields activate multiple cellular signaling pathways such as PI3K/PTEN, the membrane channel of KCNJ15/Kir4.2 and intracellular polyamines. These pathways are involved in the sensing of physiological electric fields, directional cell migration (galvanotaxis, also known as electrotaxis), and possibly other cellular responses. Importantly, electric fields provide a dominant and over-riding signal that directs cell migration. Electrical stimulation could be a promising therapeutic method in promoting wound healing and activating regeneration of chronic and non-healing wounds. This review provides an update of the physiological role of electric fields, its cellular and molecular mechanisms, its potential therapeutic value, and questions that still await answers.
已知自然产生的电场是形态发生线索,与整个哺乳动物、两栖动物以及植物界的生长和愈合相关。动物体内的电是在18世纪被发现的。电场激活多种细胞信号通路,如PI3K/PTEN、KCNJ15/Kir4.2膜通道和细胞内多胺。这些通路参与生理电场的感知、细胞定向迁移(趋电性,也称为电趋性)以及可能的其他细胞反应。重要的是,电场提供了一个主导且首要的信号来引导细胞迁移。电刺激可能是促进伤口愈合以及激活慢性和不愈合伤口再生的一种有前景的治疗方法。本综述提供了关于电场的生理作用、其细胞和分子机制、潜在治疗价值以及仍有待解答问题的最新情况。