Department of New Biology, DGIST, Daegu, 42988, Republic of Korea.
CTCELLS Corp., Daegu, 42988, Republic of Korea.
Adv Sci (Weinh). 2022 Nov;9(32):e2201358. doi: 10.1002/advs.202201358. Epub 2022 Aug 17.
Although many efforts are undertaken to treat peripheral demyelinating neuropathies based on biochemical interventions, unfortunately, there is no approved treatment yet. Furthermore, previous studies have not shown improvement of the myelin membrane at the biomolecular level. Here, an electroceutical treatment is introduced as a biophysical intervention to treat Charcot-Marie-Tooth (CMT) disease-the most prevalent peripheral demyelinating neuropathy worldwide-using a mouse model. The specific electrical stimulation (ES) condition (50 mV mm , 20 Hz, 1 h) for optimal myelination is found via an in vitro ES screening system, and its promyelinating effect is validated with ex vivo dorsal root ganglion model. Biomolecular investigation via time-of-flight secondary ion mass spectrometry shows that ES ameliorates distribution abnormalities of peripheral myelin protein 22 and cholesterol in the myelin membrane, revealing the restoration of myelin membrane integrity. ES intervention in vivo via flexible implantable electrodes shows not only gradual rehabilitation of mouse behavioral phenotypes (balance and endurance), but also restored myelin thickness, compactness, and membrane integrity. This study demonstrates, for the first time, that an electroceutical approach with the optimal ES condition has the potential to treat CMT disease and restore impaired myelin membrane integrity, shifting the paradigm toward practical interventions for peripheral demyelinating neuropathies.
尽管人们在基于生化干预的外周脱髓鞘神经病变治疗方面付出了诸多努力,但遗憾的是,目前尚无获批的治疗方法。此外,先前的研究并未显示在生物分子水平上改善髓鞘膜。在这里,我们引入一种电疗治疗方法作为生物物理干预,以治疗最常见的全球外周脱髓鞘神经病——Charcot-Marie-Tooth (CMT) 疾病,使用小鼠模型。通过体外 ES 筛选系统发现了最佳髓鞘化的特定电刺激 (ES) 条件(50 mV mm,20 Hz,1 h),并通过离体背根神经节模型验证了其促髓鞘化作用。通过飞行时间二次离子质谱的生物分子研究表明,ES 改善了髓鞘膜中外周髓鞘蛋白 22 和胆固醇的分布异常,表明髓鞘膜完整性得以恢复。通过柔性植入式电极进行体内 ES 干预不仅显示出小鼠行为表型(平衡和耐力)的逐渐康复,还恢复了髓鞘厚度、致密性和膜完整性。本研究首次表明,具有最佳 ES 条件的电疗方法具有治疗 CMT 疾病和恢复受损髓鞘膜完整性的潜力,为外周脱髓鞘神经病变的实际干预方法开辟了新的思路。