Saliev T, Mustapova Z, Kulsharova G, Bulanin D, Mikhalovsky S
Department of Regenerative Medicine and Artificial Organs, Centre for Life Sciences, Nazarbayev University, Astana, 010000, Kazakhstan; Institute for Medical Sciences and Technology, University of Dundee, Dundee, DD2 1FD, UK.
Cell Prolif. 2014 Dec;47(6):485-93. doi: 10.1111/cpr.12142. Epub 2014 Oct 16.
Ability of electromagnetic fields (EMF) to stimulate cell proliferation and differentiation has attracted the attention of many laboratories specialized in regenerative medicine over the past number of decades. Recent studies have shed light on bio-effects induced by the EMF and how they might be harnessed to help control tissue regeneration and wound healing. Number of recent reports suggests that EMF has a positive impact at different stages of healing. Processes impacted by EMF include, but are not limited to, cell migration and proliferation, expression of growth factors, nitric oxide signalling, cytokine modulation, and more. These effects have been detected even during application of low frequencies (range: 30-300 kHz) and extremely low frequencies (range: 3-30 Hz). In this regard, special emphasis of this review is the applications of extremely low-frequency EMFs due to their bio-safety and therapeutic efficacy. The article also discusses combinatorial effect of EMF and mesenchymal stem cells for treatment of neurodegenerative diseases and bone tissue engineering. In addition, we discuss future perspectives of application of EMF for tissue engineering and use of metal nanoparticles activated by EMF for drug delivery and wound dressing.
在过去几十年中,电磁场(EMF)刺激细胞增殖和分化的能力吸引了许多专注于再生医学的实验室的关注。最近的研究揭示了EMF诱导的生物效应以及如何利用这些效应来帮助控制组织再生和伤口愈合。最近的一些报告表明,EMF在愈合的不同阶段具有积极影响。受EMF影响的过程包括但不限于细胞迁移和增殖、生长因子的表达、一氧化氮信号传导、细胞因子调节等。即使在低频(范围:30 - 300 kHz)和极低频(范围:3 - 30 Hz)应用期间也检测到了这些效应。在这方面,由于其生物安全性和治疗效果,本综述特别强调极低频EMF的应用。文章还讨论了EMF与间充质干细胞联合治疗神经退行性疾病和骨组织工程的效果。此外,我们讨论了EMF在组织工程中的应用前景以及EMF激活的金属纳米颗粒在药物递送和伤口敷料中的应用。