Wang Xuelin, Ren Yi, Liu Jing
Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing 100084, China.
Beijing Key Lab of CryoBiomedical Engineering and Key Lab of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Micromachines (Basel). 2018 Jul 21;9(7):360. doi: 10.3390/mi9070360.
In this article, a new conceptual biomedical engineering strategy to tackle modern disease challenges, called liquid metal (LM) enabled electrobiology, is proposed. This generalized and simple method is based on the physiological fact that specially administrated electricity induces a series of subsequent desired biological effects, either shortly, transitionally, or permanently. Due to high compliance within biological tissues, LM would help mold a pervasive method for treating physiological or psychological diseases. As highly conductive and non-toxic multifunctional flexible materials, such LMs can generate any requested electric treating fields (ETFields), which can adapt to various sites inside the human body. The basic mechanisms of electrobiology in delivering electricity to the target tissues and then inducing expected outputs for disease treatment are interpreted. The methods for realizing soft and conformable electronics based on LM are illustrated. Furthermore, a group of typical disease challenges are observed to illustrate the basic strategies for performing LM electrobiology therapy, which include but are not limited to: tissue electronics, brain disorder, immunotherapy, neural functional recovery, muscle stimulation, skin rejuvenation, cosmetology and dieting, artificial organs, cardiac pacing, cancer therapy, etc. Some practical issues regarding electrobiology for future disease therapy are discussed. Perspectives in this direction for incubating a simple biomedical tool for health care are pointed out.
本文提出了一种应对现代疾病挑战的全新概念性生物医学工程策略,即基于液态金属的电生物学。这种通用且简单的方法基于这样一个生理事实:特定施加的电会引发一系列后续期望的生物效应,这些效应可以是短期的、过渡性的或永久性的。由于液态金属在生物组织内具有高度顺应性,它将有助于塑造一种治疗生理或心理疾病的广泛方法。作为具有高导电性和无毒的多功能柔性材料,此类液态金属能够产生任何所需的电治疗场(ETFields),这些电治疗场能够适应人体内部的各种部位。文中解释了电生物学在向目标组织输送电然后诱导预期疾病治疗输出方面的基本机制。阐述了基于液态金属实现柔软且贴合的电子器件的方法。此外,观察了一组典型的疾病挑战,以说明进行液态金属电生物学治疗的基本策略,这些策略包括但不限于:组织电子学、脑部疾病、免疫治疗、神经功能恢复、肌肉刺激、皮肤焕肤、美容与节食、人工器官、心脏起搏、癌症治疗等。讨论了未来疾病治疗中电生物学的一些实际问题。指出了在这个方向上培育一种用于医疗保健的简单生物医学工具的前景。