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Stimulation of Sympathetic Nerve Using Ultraflexible Cuff Electrodes Inhibits Inflammation Caused by Tendon Rupture

材料科学 刺激 炎症 袖口 电极 肌腱 生物医学工程 神经刺激 解剖 医学 内科学 外科 化学 物理化学
作者
Kejun Tu,Rong Bao,Longchun Wang,Zhejun Guo,Chunpeng Jiang,Yuezeng Su,Shen Liu,Jingquan Liu
出处
期刊:Advanced Functional Materials [Wiley]
标识
DOI:10.1002/adfm.202306666
摘要

Abstract Inflammation is a serious symptom of tendon rupture, that leads to peritendinous adhesion and damages the recovery of motor function. Although it is commonly treated using medical therapy, side effects occur in the cardiovascular and genitourinary systems. Electrical stimulation (ES) is a novel alternative to neural modulation. However, its inflammatory inhibitory effect around the tendon has rarely been investigated. Here, an ultraflexible cuff electrode with a thickness of only 3.3 µm is constructed to conformally wrap around the sympathetic chain ganglia for both stimulation and recording. The superior pliancy of the electrode causes less damage to the surrounding tissues and enhances the efficiency of stimulation and recording. ES reduces inflammation‐related factors of IL‐6 and IL‐1β by 51.6% and 19.8%, respectively, and increases the sympathetic nerve neurotransmitter of norepinephrine (NE) by almost an order of magnitude in the ruptured tendon. Sympathetic recordings have also demonstrated that more neural activity is evoked after ES. To the best of the knowledge, this study is the first to verify that the ES of the sympathetic nerve can inhibit inflammation around the tendon, bringing new inspiration for the tendon rupture treatment.
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