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Self-curling electroconductive nerve dressing for enhancing peripheral nerve regeneration in diabetic rats

机译:用于增强糖尿病大鼠周围神经再生的自卷曲导电神经敷料

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Conductive sca?olds have been shown to exert a therapeutic effect on patients suffering from peripheral nerve injuries (PNIs). However, conventional conductive conduits are made of rigid structures and have limited applications for impaired diabetic patients due to their mechanical mismatch with neural tissues and poor plasticity. We propose the development of biocompatible electroconductive hydrogels (ECHs) that are identical to a surgical dressing in this study. Based on excellent adhesive and self-healing properties, the thin film-like dressing can be easily attached to the injured nerve fibers, automatically warps a tubular structure without requiring any invasive techniques. The ECH offers an intimate and stable electrical bridge coupling with the electrogenic nerve tissues. The in vitro experiments indicated that the ECH promoted the migration and adhesion of the Schwann cells. Furthermore, the ECH facilitated axonal regeneration and remyelination in vitro and in vivo through the MEK/ERK pathway, thus preventing muscle denervation atrophy while retaining functional recovery. The results of this study are likely to facilitate the development of non-invasive treatment techniques for PNIs in diabetic patients utilizing electroconductive hydrogels.
机译:导电SCA?已被证明旧的对患有周围神经损伤(PNI)的患者发挥治疗效果。然而,传统的导电管道由刚性结构制成,并且由于其机械错配具有神经组织和可塑性差而具有受损的糖尿病患者的应用有限。我们提出了与本研究中的手术敷料相同的生物相容性导电水凝胶(ECH)的发展。基于优异的粘合剂和自我愈合性能,薄膜状敷料可以容易地连接到受伤的神经纤维上,在不需要任何侵入性技术的情况下自动翘曲管状结构。该ZH提供与电动神经组织的贴心稳定的电气桥联接。体外实验表明,ECH促进了Schwann细胞的迁移和粘附。此外,通过MEK / ERK途径在体外和体内进行轴向促进轴心再生和重新髓,从而防止肌肉去除萎缩,同时保持功能恢复。该研究的结果可能促进利用导电水凝胶的糖尿病患者脊柱的非侵入性治疗技术的发展。

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