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Trends in wound repair: Cellular and molecular basis of regenerative therapy using electromagnetic fields

机译:伤口修复的趋势:使用电磁场进行再生治疗的细胞和分子基础

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摘要

Chronic ulceration of the leg represents a major, underestimated problem of modern health care, involving physical and cosmetic impairment and social stigma along with high community costs for patients' treatment. The increasing prevalence of chronic ulcers, currently reported to be as much as 0.3% in the general population, should stimulate identification of more efficacious therapeutic approaches to achieve complete healing. The strategies of regenerative medicine based on small molecules, biomimetic scaffolds, gene or cell therapy, and electromagnetic field manipulation represent some of the modern therapeutic alternatives for wound healing. Here we review in an integrated, interdisciplinary approach the modern cellular and molecular mechanistic concepts regarding the involvement of extremely low frequency electromagnetic fields (ELF-EMF) in the complex process of tissue repair, with particular focus on chronic wounds. The data analysis supports three main effects of electromagnetic fields on the wound healing pathways: 1) an antiinflammatory effect, by modulation of cytokine profile that induces the transition of the healing process from a chronic pro-inflammatory to an anti-inflammatory state; 2) a neo-angiogenic effect, by increased endothelial cells proliferation and tubulization and production of fibroblast growth factor (FGF)-2; and 3) a reepithelialization effect, by stimulation of collagen formation. We believe that utilization of ELF-EMF in larger clinical trials designed to optimize these functional parameters would facilitate a better understanding of ELFEMF- induced healing mechanisms and lead to improved therapeutic outcomes for this disabling condition which is often totally resistant to treatment.
机译:腿部慢性溃疡是现代医疗保健中一个严重的,被低估的问题,涉及身体和美容受损,社会污名以及患者治疗的高昂社区费用。慢性溃疡的患病率不断增加,目前据报道在一般人群中的患病率高达0.3%,这应该会刺激人们发现更有效的治疗方法,以实现完全治愈。基于小分子,仿生支架,基因或细胞疗法以及电磁场操纵的再生医学策略代表了一些现代的伤口愈合替代疗法。在这里,我们以一种综合的,跨学科的方法回顾了有关极端低频电磁场(ELF-EMF)参与复杂的组织修复过程的现代细胞和分子力学概念,特别是针对慢性伤口。数据分析支持电磁场对伤口愈合路径的三个主要作用:1)抗炎作用,通过调节细胞因子的分布来诱导愈合过程从慢性促炎状态转变为抗炎状态; 2)通过增加内皮细胞的增殖和小管形成以及成纤维细胞生长因子(FGF)-2的产生的新血管生成作用; 3)通过刺激胶原蛋白形成而具有上皮再形成作用。我们认为,在旨在优化这些功能参数的大型临床试验中利用ELF-EMF可以促进对ELFEMF诱导的愈合机制的更好理解,并改善这种对通常完全抵抗治疗的致残性疾病的治疗效果。

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