Tyler Sheena E B
John Ray Research Field StationCheshire, United Kingdom.
Front Physiol. 2017 Sep 4;8:627. doi: 10.3389/fphys.2017.00627. eCollection 2017.
Natural endogenous voltage gradients not only predict and correlate with growth and development but also drive wound healing and regeneration processes. This review summarizes the existing literature for the nature, sources, and transmission of information-bearing bioelectric signals involved in controlling wound healing and regeneration in animals, humans, and plants. It emerges that some bioelectric characteristics occur ubiquitously in a range of animal and plant species. However, the limits of similarities are probed to give a realistic assessment of future areas to be explored. Major gaps remain in our knowledge of the mechanistic basis for these processes, on which regenerative therapies ultimately depend. In relation to this, it is concluded that the mapping of voltage patterns and the processes generating them is a promising future research focus, to probe three aspects: the role of wound/regeneration currents in relation to morphology; the role of endogenous flux changes in driving wound healing and regeneration; and the mapping of patterns in organisms of extreme longevity, in contrast with the aberrant voltage patterns underlying impaired healing, to inform interventions aimed at restoring them.
自然内源性电压梯度不仅可预测生长发育并与之相关,还能驱动伤口愈合和再生过程。本综述总结了有关动物、人类和植物伤口愈合与再生控制中信息承载生物电信号的性质、来源及传递的现有文献。结果表明,一些生物电特征在一系列动植物物种中普遍存在。然而,对相似性的局限性进行了探究,以便对未来有待探索的领域进行现实评估。在这些过程的机制基础方面,我们的知识仍存在重大空白,而再生疗法最终依赖于此。与此相关,得出的结论是,电压模式及其产生过程的映射是未来一个有前景的研究重点,可从三个方面进行探究:伤口/再生电流在形态学方面的作用;内源性通量变化在驱动伤口愈合和再生方面的作用;与愈合受损所依据的异常电压模式形成对比,绘制极端长寿生物的模式图,为旨在恢复这些模式的干预措施提供信息。