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非热电磁场:从第一信使到治疗应用

Nonthermal electromagnetic fields: from first messenger to therapeutic applications.

作者信息

Pilla Arthur A

机构信息

Department of Biomedical Engineering, Columbia University, New York, NY, USA.

出版信息

Electromagn Biol Med. 2013 Jun;32(2):123-36. doi: 10.3109/15368378.2013.776335.

Abstract

Nonthermal pulsed electromagnetic fields, from low frequency to pulse-modulated radio frequency, have been successfully employed as adjunctive therapy for the treatment of delayed and non-union fractures, fresh fractures and chronic wounds. Recent increased understanding of the mechanism of action of electromagnetic fields (EMF) has permitted technologic advances allowing the development of EMF devices which are portable and disposable, can be incorporated into dressings, supports and casts, and can be used over clothing. This broadens the use of non-pharmacological, non-invasive EMF therapy to the treatment of postoperative pain and edema to enhance surgical recovery. EMF therapy is rapidly becoming a standard part of surgical care, and new, more significant, clinical applications for osteoarthritis, brain and cardiac ischemia and traumatic brain injury are in the pipeline. This study reviews recent evidence which suggests that calmodulin (CaM)-dependent nitric oxide signaling is involved in cell and tissue response to weak nonthermal EMF signals. There is abundant evidence that EMF signals can be configured a priori to increase the rate of CaM activation, which, in turn, can modulate the biochemical cascades living cells and tissues employ in response to external insult. Successful applications in pilot clinical trials, coupled with evidence at the cellular and animal levels, provide support that EMF is a first messenger that can modulate the response of challenged biological systems.

摘要

从低频到脉冲调制射频的非热脉冲电磁场已成功用作辅助疗法,用于治疗延迟愈合和不愈合骨折、新鲜骨折及慢性伤口。最近对电磁场(EMF)作用机制的深入理解推动了技术进步,使得能够开发出便携式、一次性的EMF设备,这些设备可集成到敷料、支撑物和石膏中,并且可以隔着衣物使用。这拓宽了非药物、非侵入性EMF疗法在治疗术后疼痛和水肿以促进手术恢复方面的应用。EMF疗法正迅速成为手术护理的标准组成部分,并且针对骨关节炎、脑和心脏缺血以及创伤性脑损伤的新的、更重要的临床应用也正在筹备中。本研究综述了最近的证据,这些证据表明钙调蛋白(CaM)依赖性一氧化氮信号传导参与细胞和组织对弱非热EMF信号的反应。有充分证据表明,EMF信号可以预先配置以提高CaM激活速率,这反过来又可以调节活细胞和组织在应对外部损伤时所采用的生化级联反应。在初步临床试验中的成功应用,再加上细胞和动物水平的证据,支持了EMF是一种能够调节受挑战生物系统反应的第一信使这一观点。

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